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SCRC: SCRC RTG Implementation of PhD research to industry partner Simplot Australia (Student:  Sam He)

Project number: 2011-753
Project Status:
Completed
Budget expenditure: $0.00
Principal Investigator: Wei Zhang
Organisation: Flinders University
Project start/end date: 30 Sep 2011 - 31 Oct 2011
Contact:
FRDC

Final report

ISBN: 978-1-925982-15-2
Author: Shan He
Final Report • 2011-11-01 • 229.61 KB
2011-753-DLD-RTG.pdf

Summary

The objective of this research travel grant was to develop Australian Seafood CRC PhD student Shan He's professional knowledge of transferring laboratory-scale results to a pre-commercial food model for industry benefit, and also build his professional skills and industry experience.

After one and half year's research, Shan He has achieved outstanding scientific outcomes. However, these results have not been applied to an industrial application because of the limitations of the biotechnology laboratory at Flinders University in formulating food products, and in the knowledge of the industry partner's food process and formulas. This research travel grant supported Shan to apply these results to commercial food formulations in a one month industry visit to Simplot Australia, the project's industry partner. The trial activity and industry interaction will train Shan He to be an industry-ready PhD graduate in the near future, so as to be able to better serve the Australia seafood industry.

Shan He was able to conduct experiments talk to managers of different divisions in Simplot Australia related to science, such as the New Products Process & Portfolio Manager, Science & Technology Manager, Group R&D Manager etc. Through these talks Shan He was familiarised with a key decision making system of Simplot Australia called the Stage Gate System. The information that Shan He gained from the communications developed his understanding of the role of science and technology in industry. The outcomes of this project assisted in developing Shan He's professional knowledge of transferring laboratory-scale results to industry products, built his professional skills and industry experience, and thus successfully prepared him to be an industry-ready PhD graduate in the near future.

Final Report • 2011-11-01 • 229.61 KB
2011-753-DLD-RTG.pdf

Summary

The objective of this research travel grant was to develop Australian Seafood CRC PhD student Shan He's professional knowledge of transferring laboratory-scale results to a pre-commercial food model for industry benefit, and also build his professional skills and industry experience.

After one and half year's research, Shan He has achieved outstanding scientific outcomes. However, these results have not been applied to an industrial application because of the limitations of the biotechnology laboratory at Flinders University in formulating food products, and in the knowledge of the industry partner's food process and formulas. This research travel grant supported Shan to apply these results to commercial food formulations in a one month industry visit to Simplot Australia, the project's industry partner. The trial activity and industry interaction will train Shan He to be an industry-ready PhD graduate in the near future, so as to be able to better serve the Australia seafood industry.

Shan He was able to conduct experiments talk to managers of different divisions in Simplot Australia related to science, such as the New Products Process & Portfolio Manager, Science & Technology Manager, Group R&D Manager etc. Through these talks Shan He was familiarised with a key decision making system of Simplot Australia called the Stage Gate System. The information that Shan He gained from the communications developed his understanding of the role of science and technology in industry. The outcomes of this project assisted in developing Shan He's professional knowledge of transferring laboratory-scale results to industry products, built his professional skills and industry experience, and thus successfully prepared him to be an industry-ready PhD graduate in the near future.

Final Report • 2011-11-01 • 229.61 KB
2011-753-DLD-RTG.pdf

Summary

The objective of this research travel grant was to develop Australian Seafood CRC PhD student Shan He's professional knowledge of transferring laboratory-scale results to a pre-commercial food model for industry benefit, and also build his professional skills and industry experience.

After one and half year's research, Shan He has achieved outstanding scientific outcomes. However, these results have not been applied to an industrial application because of the limitations of the biotechnology laboratory at Flinders University in formulating food products, and in the knowledge of the industry partner's food process and formulas. This research travel grant supported Shan to apply these results to commercial food formulations in a one month industry visit to Simplot Australia, the project's industry partner. The trial activity and industry interaction will train Shan He to be an industry-ready PhD graduate in the near future, so as to be able to better serve the Australia seafood industry.

Shan He was able to conduct experiments talk to managers of different divisions in Simplot Australia related to science, such as the New Products Process & Portfolio Manager, Science & Technology Manager, Group R&D Manager etc. Through these talks Shan He was familiarised with a key decision making system of Simplot Australia called the Stage Gate System. The information that Shan He gained from the communications developed his understanding of the role of science and technology in industry. The outcomes of this project assisted in developing Shan He's professional knowledge of transferring laboratory-scale results to industry products, built his professional skills and industry experience, and thus successfully prepared him to be an industry-ready PhD graduate in the near future.

Final Report • 2011-11-01 • 229.61 KB
2011-753-DLD-RTG.pdf

Summary

The objective of this research travel grant was to develop Australian Seafood CRC PhD student Shan He's professional knowledge of transferring laboratory-scale results to a pre-commercial food model for industry benefit, and also build his professional skills and industry experience.

After one and half year's research, Shan He has achieved outstanding scientific outcomes. However, these results have not been applied to an industrial application because of the limitations of the biotechnology laboratory at Flinders University in formulating food products, and in the knowledge of the industry partner's food process and formulas. This research travel grant supported Shan to apply these results to commercial food formulations in a one month industry visit to Simplot Australia, the project's industry partner. The trial activity and industry interaction will train Shan He to be an industry-ready PhD graduate in the near future, so as to be able to better serve the Australia seafood industry.

Shan He was able to conduct experiments talk to managers of different divisions in Simplot Australia related to science, such as the New Products Process & Portfolio Manager, Science & Technology Manager, Group R&D Manager etc. Through these talks Shan He was familiarised with a key decision making system of Simplot Australia called the Stage Gate System. The information that Shan He gained from the communications developed his understanding of the role of science and technology in industry. The outcomes of this project assisted in developing Shan He's professional knowledge of transferring laboratory-scale results to industry products, built his professional skills and industry experience, and thus successfully prepared him to be an industry-ready PhD graduate in the near future.

Final Report • 2011-11-01 • 229.61 KB
2011-753-DLD-RTG.pdf

Summary

The objective of this research travel grant was to develop Australian Seafood CRC PhD student Shan He's professional knowledge of transferring laboratory-scale results to a pre-commercial food model for industry benefit, and also build his professional skills and industry experience.

After one and half year's research, Shan He has achieved outstanding scientific outcomes. However, these results have not been applied to an industrial application because of the limitations of the biotechnology laboratory at Flinders University in formulating food products, and in the knowledge of the industry partner's food process and formulas. This research travel grant supported Shan to apply these results to commercial food formulations in a one month industry visit to Simplot Australia, the project's industry partner. The trial activity and industry interaction will train Shan He to be an industry-ready PhD graduate in the near future, so as to be able to better serve the Australia seafood industry.

Shan He was able to conduct experiments talk to managers of different divisions in Simplot Australia related to science, such as the New Products Process & Portfolio Manager, Science & Technology Manager, Group R&D Manager etc. Through these talks Shan He was familiarised with a key decision making system of Simplot Australia called the Stage Gate System. The information that Shan He gained from the communications developed his understanding of the role of science and technology in industry. The outcomes of this project assisted in developing Shan He's professional knowledge of transferring laboratory-scale results to industry products, built his professional skills and industry experience, and thus successfully prepared him to be an industry-ready PhD graduate in the near future.

Final Report • 2011-11-01 • 229.61 KB
2011-753-DLD-RTG.pdf

Summary

The objective of this research travel grant was to develop Australian Seafood CRC PhD student Shan He's professional knowledge of transferring laboratory-scale results to a pre-commercial food model for industry benefit, and also build his professional skills and industry experience.

After one and half year's research, Shan He has achieved outstanding scientific outcomes. However, these results have not been applied to an industrial application because of the limitations of the biotechnology laboratory at Flinders University in formulating food products, and in the knowledge of the industry partner's food process and formulas. This research travel grant supported Shan to apply these results to commercial food formulations in a one month industry visit to Simplot Australia, the project's industry partner. The trial activity and industry interaction will train Shan He to be an industry-ready PhD graduate in the near future, so as to be able to better serve the Australia seafood industry.

Shan He was able to conduct experiments talk to managers of different divisions in Simplot Australia related to science, such as the New Products Process & Portfolio Manager, Science & Technology Manager, Group R&D Manager etc. Through these talks Shan He was familiarised with a key decision making system of Simplot Australia called the Stage Gate System. The information that Shan He gained from the communications developed his understanding of the role of science and technology in industry. The outcomes of this project assisted in developing Shan He's professional knowledge of transferring laboratory-scale results to industry products, built his professional skills and industry experience, and thus successfully prepared him to be an industry-ready PhD graduate in the near future.

Final Report • 2011-11-01 • 229.61 KB
2011-753-DLD-RTG.pdf

Summary

The objective of this research travel grant was to develop Australian Seafood CRC PhD student Shan He's professional knowledge of transferring laboratory-scale results to a pre-commercial food model for industry benefit, and also build his professional skills and industry experience.

After one and half year's research, Shan He has achieved outstanding scientific outcomes. However, these results have not been applied to an industrial application because of the limitations of the biotechnology laboratory at Flinders University in formulating food products, and in the knowledge of the industry partner's food process and formulas. This research travel grant supported Shan to apply these results to commercial food formulations in a one month industry visit to Simplot Australia, the project's industry partner. The trial activity and industry interaction will train Shan He to be an industry-ready PhD graduate in the near future, so as to be able to better serve the Australia seafood industry.

Shan He was able to conduct experiments talk to managers of different divisions in Simplot Australia related to science, such as the New Products Process & Portfolio Manager, Science & Technology Manager, Group R&D Manager etc. Through these talks Shan He was familiarised with a key decision making system of Simplot Australia called the Stage Gate System. The information that Shan He gained from the communications developed his understanding of the role of science and technology in industry. The outcomes of this project assisted in developing Shan He's professional knowledge of transferring laboratory-scale results to industry products, built his professional skills and industry experience, and thus successfully prepared him to be an industry-ready PhD graduate in the near future.

Final Report • 2011-11-01 • 229.61 KB
2011-753-DLD-RTG.pdf

Summary

The objective of this research travel grant was to develop Australian Seafood CRC PhD student Shan He's professional knowledge of transferring laboratory-scale results to a pre-commercial food model for industry benefit, and also build his professional skills and industry experience.

After one and half year's research, Shan He has achieved outstanding scientific outcomes. However, these results have not been applied to an industrial application because of the limitations of the biotechnology laboratory at Flinders University in formulating food products, and in the knowledge of the industry partner's food process and formulas. This research travel grant supported Shan to apply these results to commercial food formulations in a one month industry visit to Simplot Australia, the project's industry partner. The trial activity and industry interaction will train Shan He to be an industry-ready PhD graduate in the near future, so as to be able to better serve the Australia seafood industry.

Shan He was able to conduct experiments talk to managers of different divisions in Simplot Australia related to science, such as the New Products Process & Portfolio Manager, Science & Technology Manager, Group R&D Manager etc. Through these talks Shan He was familiarised with a key decision making system of Simplot Australia called the Stage Gate System. The information that Shan He gained from the communications developed his understanding of the role of science and technology in industry. The outcomes of this project assisted in developing Shan He's professional knowledge of transferring laboratory-scale results to industry products, built his professional skills and industry experience, and thus successfully prepared him to be an industry-ready PhD graduate in the near future.

Final Report • 2011-11-01 • 229.61 KB
2011-753-DLD-RTG.pdf

Summary

The objective of this research travel grant was to develop Australian Seafood CRC PhD student Shan He's professional knowledge of transferring laboratory-scale results to a pre-commercial food model for industry benefit, and also build his professional skills and industry experience.

After one and half year's research, Shan He has achieved outstanding scientific outcomes. However, these results have not been applied to an industrial application because of the limitations of the biotechnology laboratory at Flinders University in formulating food products, and in the knowledge of the industry partner's food process and formulas. This research travel grant supported Shan to apply these results to commercial food formulations in a one month industry visit to Simplot Australia, the project's industry partner. The trial activity and industry interaction will train Shan He to be an industry-ready PhD graduate in the near future, so as to be able to better serve the Australia seafood industry.

Shan He was able to conduct experiments talk to managers of different divisions in Simplot Australia related to science, such as the New Products Process & Portfolio Manager, Science & Technology Manager, Group R&D Manager etc. Through these talks Shan He was familiarised with a key decision making system of Simplot Australia called the Stage Gate System. The information that Shan He gained from the communications developed his understanding of the role of science and technology in industry. The outcomes of this project assisted in developing Shan He's professional knowledge of transferring laboratory-scale results to industry products, built his professional skills and industry experience, and thus successfully prepared him to be an industry-ready PhD graduate in the near future.

Final Report • 2011-11-01 • 229.61 KB
2011-753-DLD-RTG.pdf

Summary

The objective of this research travel grant was to develop Australian Seafood CRC PhD student Shan He's professional knowledge of transferring laboratory-scale results to a pre-commercial food model for industry benefit, and also build his professional skills and industry experience.

After one and half year's research, Shan He has achieved outstanding scientific outcomes. However, these results have not been applied to an industrial application because of the limitations of the biotechnology laboratory at Flinders University in formulating food products, and in the knowledge of the industry partner's food process and formulas. This research travel grant supported Shan to apply these results to commercial food formulations in a one month industry visit to Simplot Australia, the project's industry partner. The trial activity and industry interaction will train Shan He to be an industry-ready PhD graduate in the near future, so as to be able to better serve the Australia seafood industry.

Shan He was able to conduct experiments talk to managers of different divisions in Simplot Australia related to science, such as the New Products Process & Portfolio Manager, Science & Technology Manager, Group R&D Manager etc. Through these talks Shan He was familiarised with a key decision making system of Simplot Australia called the Stage Gate System. The information that Shan He gained from the communications developed his understanding of the role of science and technology in industry. The outcomes of this project assisted in developing Shan He's professional knowledge of transferring laboratory-scale results to industry products, built his professional skills and industry experience, and thus successfully prepared him to be an industry-ready PhD graduate in the near future.

Final Report • 2011-11-01 • 229.61 KB
2011-753-DLD-RTG.pdf

Summary

The objective of this research travel grant was to develop Australian Seafood CRC PhD student Shan He's professional knowledge of transferring laboratory-scale results to a pre-commercial food model for industry benefit, and also build his professional skills and industry experience.

After one and half year's research, Shan He has achieved outstanding scientific outcomes. However, these results have not been applied to an industrial application because of the limitations of the biotechnology laboratory at Flinders University in formulating food products, and in the knowledge of the industry partner's food process and formulas. This research travel grant supported Shan to apply these results to commercial food formulations in a one month industry visit to Simplot Australia, the project's industry partner. The trial activity and industry interaction will train Shan He to be an industry-ready PhD graduate in the near future, so as to be able to better serve the Australia seafood industry.

Shan He was able to conduct experiments talk to managers of different divisions in Simplot Australia related to science, such as the New Products Process & Portfolio Manager, Science & Technology Manager, Group R&D Manager etc. Through these talks Shan He was familiarised with a key decision making system of Simplot Australia called the Stage Gate System. The information that Shan He gained from the communications developed his understanding of the role of science and technology in industry. The outcomes of this project assisted in developing Shan He's professional knowledge of transferring laboratory-scale results to industry products, built his professional skills and industry experience, and thus successfully prepared him to be an industry-ready PhD graduate in the near future.

Final Report • 2011-11-01 • 229.61 KB
2011-753-DLD-RTG.pdf

Summary

The objective of this research travel grant was to develop Australian Seafood CRC PhD student Shan He's professional knowledge of transferring laboratory-scale results to a pre-commercial food model for industry benefit, and also build his professional skills and industry experience.

After one and half year's research, Shan He has achieved outstanding scientific outcomes. However, these results have not been applied to an industrial application because of the limitations of the biotechnology laboratory at Flinders University in formulating food products, and in the knowledge of the industry partner's food process and formulas. This research travel grant supported Shan to apply these results to commercial food formulations in a one month industry visit to Simplot Australia, the project's industry partner. The trial activity and industry interaction will train Shan He to be an industry-ready PhD graduate in the near future, so as to be able to better serve the Australia seafood industry.

Shan He was able to conduct experiments talk to managers of different divisions in Simplot Australia related to science, such as the New Products Process & Portfolio Manager, Science & Technology Manager, Group R&D Manager etc. Through these talks Shan He was familiarised with a key decision making system of Simplot Australia called the Stage Gate System. The information that Shan He gained from the communications developed his understanding of the role of science and technology in industry. The outcomes of this project assisted in developing Shan He's professional knowledge of transferring laboratory-scale results to industry products, built his professional skills and industry experience, and thus successfully prepared him to be an industry-ready PhD graduate in the near future.

Final Report • 2011-11-01 • 229.61 KB
2011-753-DLD-RTG.pdf

Summary

The objective of this research travel grant was to develop Australian Seafood CRC PhD student Shan He's professional knowledge of transferring laboratory-scale results to a pre-commercial food model for industry benefit, and also build his professional skills and industry experience.

After one and half year's research, Shan He has achieved outstanding scientific outcomes. However, these results have not been applied to an industrial application because of the limitations of the biotechnology laboratory at Flinders University in formulating food products, and in the knowledge of the industry partner's food process and formulas. This research travel grant supported Shan to apply these results to commercial food formulations in a one month industry visit to Simplot Australia, the project's industry partner. The trial activity and industry interaction will train Shan He to be an industry-ready PhD graduate in the near future, so as to be able to better serve the Australia seafood industry.

Shan He was able to conduct experiments talk to managers of different divisions in Simplot Australia related to science, such as the New Products Process & Portfolio Manager, Science & Technology Manager, Group R&D Manager etc. Through these talks Shan He was familiarised with a key decision making system of Simplot Australia called the Stage Gate System. The information that Shan He gained from the communications developed his understanding of the role of science and technology in industry. The outcomes of this project assisted in developing Shan He's professional knowledge of transferring laboratory-scale results to industry products, built his professional skills and industry experience, and thus successfully prepared him to be an industry-ready PhD graduate in the near future.

Final Report • 2011-11-01 • 229.61 KB
2011-753-DLD-RTG.pdf

Summary

The objective of this research travel grant was to develop Australian Seafood CRC PhD student Shan He's professional knowledge of transferring laboratory-scale results to a pre-commercial food model for industry benefit, and also build his professional skills and industry experience.

After one and half year's research, Shan He has achieved outstanding scientific outcomes. However, these results have not been applied to an industrial application because of the limitations of the biotechnology laboratory at Flinders University in formulating food products, and in the knowledge of the industry partner's food process and formulas. This research travel grant supported Shan to apply these results to commercial food formulations in a one month industry visit to Simplot Australia, the project's industry partner. The trial activity and industry interaction will train Shan He to be an industry-ready PhD graduate in the near future, so as to be able to better serve the Australia seafood industry.

Shan He was able to conduct experiments talk to managers of different divisions in Simplot Australia related to science, such as the New Products Process & Portfolio Manager, Science & Technology Manager, Group R&D Manager etc. Through these talks Shan He was familiarised with a key decision making system of Simplot Australia called the Stage Gate System. The information that Shan He gained from the communications developed his understanding of the role of science and technology in industry. The outcomes of this project assisted in developing Shan He's professional knowledge of transferring laboratory-scale results to industry products, built his professional skills and industry experience, and thus successfully prepared him to be an industry-ready PhD graduate in the near future.

Final Report • 2011-11-01 • 229.61 KB
2011-753-DLD-RTG.pdf

Summary

The objective of this research travel grant was to develop Australian Seafood CRC PhD student Shan He's professional knowledge of transferring laboratory-scale results to a pre-commercial food model for industry benefit, and also build his professional skills and industry experience.

After one and half year's research, Shan He has achieved outstanding scientific outcomes. However, these results have not been applied to an industrial application because of the limitations of the biotechnology laboratory at Flinders University in formulating food products, and in the knowledge of the industry partner's food process and formulas. This research travel grant supported Shan to apply these results to commercial food formulations in a one month industry visit to Simplot Australia, the project's industry partner. The trial activity and industry interaction will train Shan He to be an industry-ready PhD graduate in the near future, so as to be able to better serve the Australia seafood industry.

Shan He was able to conduct experiments talk to managers of different divisions in Simplot Australia related to science, such as the New Products Process & Portfolio Manager, Science & Technology Manager, Group R&D Manager etc. Through these talks Shan He was familiarised with a key decision making system of Simplot Australia called the Stage Gate System. The information that Shan He gained from the communications developed his understanding of the role of science and technology in industry. The outcomes of this project assisted in developing Shan He's professional knowledge of transferring laboratory-scale results to industry products, built his professional skills and industry experience, and thus successfully prepared him to be an industry-ready PhD graduate in the near future.

Final Report • 2011-11-01 • 229.61 KB
2011-753-DLD-RTG.pdf

Summary

The objective of this research travel grant was to develop Australian Seafood CRC PhD student Shan He's professional knowledge of transferring laboratory-scale results to a pre-commercial food model for industry benefit, and also build his professional skills and industry experience.

After one and half year's research, Shan He has achieved outstanding scientific outcomes. However, these results have not been applied to an industrial application because of the limitations of the biotechnology laboratory at Flinders University in formulating food products, and in the knowledge of the industry partner's food process and formulas. This research travel grant supported Shan to apply these results to commercial food formulations in a one month industry visit to Simplot Australia, the project's industry partner. The trial activity and industry interaction will train Shan He to be an industry-ready PhD graduate in the near future, so as to be able to better serve the Australia seafood industry.

Shan He was able to conduct experiments talk to managers of different divisions in Simplot Australia related to science, such as the New Products Process & Portfolio Manager, Science & Technology Manager, Group R&D Manager etc. Through these talks Shan He was familiarised with a key decision making system of Simplot Australia called the Stage Gate System. The information that Shan He gained from the communications developed his understanding of the role of science and technology in industry. The outcomes of this project assisted in developing Shan He's professional knowledge of transferring laboratory-scale results to industry products, built his professional skills and industry experience, and thus successfully prepared him to be an industry-ready PhD graduate in the near future.

Final Report • 2011-11-01 • 229.61 KB
2011-753-DLD-RTG.pdf

Summary

The objective of this research travel grant was to develop Australian Seafood CRC PhD student Shan He's professional knowledge of transferring laboratory-scale results to a pre-commercial food model for industry benefit, and also build his professional skills and industry experience.

After one and half year's research, Shan He has achieved outstanding scientific outcomes. However, these results have not been applied to an industrial application because of the limitations of the biotechnology laboratory at Flinders University in formulating food products, and in the knowledge of the industry partner's food process and formulas. This research travel grant supported Shan to apply these results to commercial food formulations in a one month industry visit to Simplot Australia, the project's industry partner. The trial activity and industry interaction will train Shan He to be an industry-ready PhD graduate in the near future, so as to be able to better serve the Australia seafood industry.

Shan He was able to conduct experiments talk to managers of different divisions in Simplot Australia related to science, such as the New Products Process & Portfolio Manager, Science & Technology Manager, Group R&D Manager etc. Through these talks Shan He was familiarised with a key decision making system of Simplot Australia called the Stage Gate System. The information that Shan He gained from the communications developed his understanding of the role of science and technology in industry. The outcomes of this project assisted in developing Shan He's professional knowledge of transferring laboratory-scale results to industry products, built his professional skills and industry experience, and thus successfully prepared him to be an industry-ready PhD graduate in the near future.

Final Report • 2011-11-01 • 229.61 KB
2011-753-DLD-RTG.pdf

Summary

The objective of this research travel grant was to develop Australian Seafood CRC PhD student Shan He's professional knowledge of transferring laboratory-scale results to a pre-commercial food model for industry benefit, and also build his professional skills and industry experience.

After one and half year's research, Shan He has achieved outstanding scientific outcomes. However, these results have not been applied to an industrial application because of the limitations of the biotechnology laboratory at Flinders University in formulating food products, and in the knowledge of the industry partner's food process and formulas. This research travel grant supported Shan to apply these results to commercial food formulations in a one month industry visit to Simplot Australia, the project's industry partner. The trial activity and industry interaction will train Shan He to be an industry-ready PhD graduate in the near future, so as to be able to better serve the Australia seafood industry.

Shan He was able to conduct experiments talk to managers of different divisions in Simplot Australia related to science, such as the New Products Process & Portfolio Manager, Science & Technology Manager, Group R&D Manager etc. Through these talks Shan He was familiarised with a key decision making system of Simplot Australia called the Stage Gate System. The information that Shan He gained from the communications developed his understanding of the role of science and technology in industry. The outcomes of this project assisted in developing Shan He's professional knowledge of transferring laboratory-scale results to industry products, built his professional skills and industry experience, and thus successfully prepared him to be an industry-ready PhD graduate in the near future.

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PROJECT NUMBER • 2011-707
PROJECT STATUS:
COMPLETED

SCRC: SCRC RTG 1.5 – Physiology and aquaculture of pelagic workshop, Panama, Central America (Lindsey Woolley, CRC PhD student, Flinders University)

In South Australia, Clean Seas Tuna Ltd. (CST) is the leading company in Southern Bluefin Tuna (SBT) propagation and they have experienced some success with successful spawning since 2008. However, reliable availability of viable eggs and the larval rearing stages are currently major bottlenecks in...
ORGANISATION:
Flinders University

SCRC: Optimising harvest practices for Yellowtail Kingfish

Project number: 2010-778
Project Status:
Completed
Budget expenditure: $0.00
Principal Investigator: Trent D'Antignana
Organisation: Flinders University
Project start/end date: 30 Jun 2011 - 30 Jun 2013
Contact:
FRDC

Need

Ultimately, the need is to make the production of farmed YTK a profitable enterprise. To this end it is necessary to not only reduce the cost of production by improving harvest efficiencies, it is necessary to improve the consistency and overall quality of the product so as to justify a quality driven increase in the farm gate price of the product. Understanding how harvest husbandry techniques influence flesh quality attributes will allow CST to develop and apply best practice standard operating systems, reduce customer complaints and improve the company’s position in a competitive market.

Final report

ISBN: 978-0-9874281-1-0
Author: Trent D'Antignana
Final Report • 2013-05-01 • 1.72 MB
2010-778-DLD.pdf

Summary

Farmed Yellowtail Kingfish (YTK) is considered to be a premium quality fish, ideal for sashimi and sushi, dishes comprised of raw fish. To be acceptable for such delicacies the flesh has to be oily, firm and slightly translucent, with a fine creamy texture and a delicate flavour. The price received, and the reputation of the supplier, are largely dependent on the quality of the product produced. Therefore it is of great interest to optimise the production of high quality fish, especially in the increasingly competitive white fish market.

This project sought to investigate several issues relating to commercial harvest practices for Yellowtail Kingfish, with the aim of modifying any aspect to improve product quality and/or harvesting efficiency. 

Final Report • 2013-05-01 • 1.72 MB
2010-778-DLD.pdf

Summary

Farmed Yellowtail Kingfish (YTK) is considered to be a premium quality fish, ideal for sashimi and sushi, dishes comprised of raw fish. To be acceptable for such delicacies the flesh has to be oily, firm and slightly translucent, with a fine creamy texture and a delicate flavour. The price received, and the reputation of the supplier, are largely dependent on the quality of the product produced. Therefore it is of great interest to optimise the production of high quality fish, especially in the increasingly competitive white fish market.

This project sought to investigate several issues relating to commercial harvest practices for Yellowtail Kingfish, with the aim of modifying any aspect to improve product quality and/or harvesting efficiency. 

Final Report • 2013-05-01 • 1.72 MB
2010-778-DLD.pdf

Summary

Farmed Yellowtail Kingfish (YTK) is considered to be a premium quality fish, ideal for sashimi and sushi, dishes comprised of raw fish. To be acceptable for such delicacies the flesh has to be oily, firm and slightly translucent, with a fine creamy texture and a delicate flavour. The price received, and the reputation of the supplier, are largely dependent on the quality of the product produced. Therefore it is of great interest to optimise the production of high quality fish, especially in the increasingly competitive white fish market.

This project sought to investigate several issues relating to commercial harvest practices for Yellowtail Kingfish, with the aim of modifying any aspect to improve product quality and/or harvesting efficiency. 

Final Report • 2013-05-01 • 1.72 MB
2010-778-DLD.pdf

Summary

Farmed Yellowtail Kingfish (YTK) is considered to be a premium quality fish, ideal for sashimi and sushi, dishes comprised of raw fish. To be acceptable for such delicacies the flesh has to be oily, firm and slightly translucent, with a fine creamy texture and a delicate flavour. The price received, and the reputation of the supplier, are largely dependent on the quality of the product produced. Therefore it is of great interest to optimise the production of high quality fish, especially in the increasingly competitive white fish market.

This project sought to investigate several issues relating to commercial harvest practices for Yellowtail Kingfish, with the aim of modifying any aspect to improve product quality and/or harvesting efficiency. 

Final Report • 2013-05-01 • 1.72 MB
2010-778-DLD.pdf

Summary

Farmed Yellowtail Kingfish (YTK) is considered to be a premium quality fish, ideal for sashimi and sushi, dishes comprised of raw fish. To be acceptable for such delicacies the flesh has to be oily, firm and slightly translucent, with a fine creamy texture and a delicate flavour. The price received, and the reputation of the supplier, are largely dependent on the quality of the product produced. Therefore it is of great interest to optimise the production of high quality fish, especially in the increasingly competitive white fish market.

This project sought to investigate several issues relating to commercial harvest practices for Yellowtail Kingfish, with the aim of modifying any aspect to improve product quality and/or harvesting efficiency. 

Final Report • 2013-05-01 • 1.72 MB
2010-778-DLD.pdf

Summary

Farmed Yellowtail Kingfish (YTK) is considered to be a premium quality fish, ideal for sashimi and sushi, dishes comprised of raw fish. To be acceptable for such delicacies the flesh has to be oily, firm and slightly translucent, with a fine creamy texture and a delicate flavour. The price received, and the reputation of the supplier, are largely dependent on the quality of the product produced. Therefore it is of great interest to optimise the production of high quality fish, especially in the increasingly competitive white fish market.

This project sought to investigate several issues relating to commercial harvest practices for Yellowtail Kingfish, with the aim of modifying any aspect to improve product quality and/or harvesting efficiency. 

Final Report • 2013-05-01 • 1.72 MB
2010-778-DLD.pdf

Summary

Farmed Yellowtail Kingfish (YTK) is considered to be a premium quality fish, ideal for sashimi and sushi, dishes comprised of raw fish. To be acceptable for such delicacies the flesh has to be oily, firm and slightly translucent, with a fine creamy texture and a delicate flavour. The price received, and the reputation of the supplier, are largely dependent on the quality of the product produced. Therefore it is of great interest to optimise the production of high quality fish, especially in the increasingly competitive white fish market.

This project sought to investigate several issues relating to commercial harvest practices for Yellowtail Kingfish, with the aim of modifying any aspect to improve product quality and/or harvesting efficiency. 

Final Report • 2013-05-01 • 1.72 MB
2010-778-DLD.pdf

Summary

Farmed Yellowtail Kingfish (YTK) is considered to be a premium quality fish, ideal for sashimi and sushi, dishes comprised of raw fish. To be acceptable for such delicacies the flesh has to be oily, firm and slightly translucent, with a fine creamy texture and a delicate flavour. The price received, and the reputation of the supplier, are largely dependent on the quality of the product produced. Therefore it is of great interest to optimise the production of high quality fish, especially in the increasingly competitive white fish market.

This project sought to investigate several issues relating to commercial harvest practices for Yellowtail Kingfish, with the aim of modifying any aspect to improve product quality and/or harvesting efficiency. 

Final Report • 2013-05-01 • 1.72 MB
2010-778-DLD.pdf

Summary

Farmed Yellowtail Kingfish (YTK) is considered to be a premium quality fish, ideal for sashimi and sushi, dishes comprised of raw fish. To be acceptable for such delicacies the flesh has to be oily, firm and slightly translucent, with a fine creamy texture and a delicate flavour. The price received, and the reputation of the supplier, are largely dependent on the quality of the product produced. Therefore it is of great interest to optimise the production of high quality fish, especially in the increasingly competitive white fish market.

This project sought to investigate several issues relating to commercial harvest practices for Yellowtail Kingfish, with the aim of modifying any aspect to improve product quality and/or harvesting efficiency. 

Final Report • 2013-05-01 • 1.72 MB
2010-778-DLD.pdf

Summary

Farmed Yellowtail Kingfish (YTK) is considered to be a premium quality fish, ideal for sashimi and sushi, dishes comprised of raw fish. To be acceptable for such delicacies the flesh has to be oily, firm and slightly translucent, with a fine creamy texture and a delicate flavour. The price received, and the reputation of the supplier, are largely dependent on the quality of the product produced. Therefore it is of great interest to optimise the production of high quality fish, especially in the increasingly competitive white fish market.

This project sought to investigate several issues relating to commercial harvest practices for Yellowtail Kingfish, with the aim of modifying any aspect to improve product quality and/or harvesting efficiency. 

Final Report • 2013-05-01 • 1.72 MB
2010-778-DLD.pdf

Summary

Farmed Yellowtail Kingfish (YTK) is considered to be a premium quality fish, ideal for sashimi and sushi, dishes comprised of raw fish. To be acceptable for such delicacies the flesh has to be oily, firm and slightly translucent, with a fine creamy texture and a delicate flavour. The price received, and the reputation of the supplier, are largely dependent on the quality of the product produced. Therefore it is of great interest to optimise the production of high quality fish, especially in the increasingly competitive white fish market.

This project sought to investigate several issues relating to commercial harvest practices for Yellowtail Kingfish, with the aim of modifying any aspect to improve product quality and/or harvesting efficiency. 

Final Report • 2013-05-01 • 1.72 MB
2010-778-DLD.pdf

Summary

Farmed Yellowtail Kingfish (YTK) is considered to be a premium quality fish, ideal for sashimi and sushi, dishes comprised of raw fish. To be acceptable for such delicacies the flesh has to be oily, firm and slightly translucent, with a fine creamy texture and a delicate flavour. The price received, and the reputation of the supplier, are largely dependent on the quality of the product produced. Therefore it is of great interest to optimise the production of high quality fish, especially in the increasingly competitive white fish market.

This project sought to investigate several issues relating to commercial harvest practices for Yellowtail Kingfish, with the aim of modifying any aspect to improve product quality and/or harvesting efficiency. 

Final Report • 2013-05-01 • 1.72 MB
2010-778-DLD.pdf

Summary

Farmed Yellowtail Kingfish (YTK) is considered to be a premium quality fish, ideal for sashimi and sushi, dishes comprised of raw fish. To be acceptable for such delicacies the flesh has to be oily, firm and slightly translucent, with a fine creamy texture and a delicate flavour. The price received, and the reputation of the supplier, are largely dependent on the quality of the product produced. Therefore it is of great interest to optimise the production of high quality fish, especially in the increasingly competitive white fish market.

This project sought to investigate several issues relating to commercial harvest practices for Yellowtail Kingfish, with the aim of modifying any aspect to improve product quality and/or harvesting efficiency. 

Final Report • 2013-05-01 • 1.72 MB
2010-778-DLD.pdf

Summary

Farmed Yellowtail Kingfish (YTK) is considered to be a premium quality fish, ideal for sashimi and sushi, dishes comprised of raw fish. To be acceptable for such delicacies the flesh has to be oily, firm and slightly translucent, with a fine creamy texture and a delicate flavour. The price received, and the reputation of the supplier, are largely dependent on the quality of the product produced. Therefore it is of great interest to optimise the production of high quality fish, especially in the increasingly competitive white fish market.

This project sought to investigate several issues relating to commercial harvest practices for Yellowtail Kingfish, with the aim of modifying any aspect to improve product quality and/or harvesting efficiency. 

Final Report • 2013-05-01 • 1.72 MB
2010-778-DLD.pdf

Summary

Farmed Yellowtail Kingfish (YTK) is considered to be a premium quality fish, ideal for sashimi and sushi, dishes comprised of raw fish. To be acceptable for such delicacies the flesh has to be oily, firm and slightly translucent, with a fine creamy texture and a delicate flavour. The price received, and the reputation of the supplier, are largely dependent on the quality of the product produced. Therefore it is of great interest to optimise the production of high quality fish, especially in the increasingly competitive white fish market.

This project sought to investigate several issues relating to commercial harvest practices for Yellowtail Kingfish, with the aim of modifying any aspect to improve product quality and/or harvesting efficiency. 

Final Report • 2013-05-01 • 1.72 MB
2010-778-DLD.pdf

Summary

Farmed Yellowtail Kingfish (YTK) is considered to be a premium quality fish, ideal for sashimi and sushi, dishes comprised of raw fish. To be acceptable for such delicacies the flesh has to be oily, firm and slightly translucent, with a fine creamy texture and a delicate flavour. The price received, and the reputation of the supplier, are largely dependent on the quality of the product produced. Therefore it is of great interest to optimise the production of high quality fish, especially in the increasingly competitive white fish market.

This project sought to investigate several issues relating to commercial harvest practices for Yellowtail Kingfish, with the aim of modifying any aspect to improve product quality and/or harvesting efficiency. 

Final Report • 2013-05-01 • 1.72 MB
2010-778-DLD.pdf

Summary

Farmed Yellowtail Kingfish (YTK) is considered to be a premium quality fish, ideal for sashimi and sushi, dishes comprised of raw fish. To be acceptable for such delicacies the flesh has to be oily, firm and slightly translucent, with a fine creamy texture and a delicate flavour. The price received, and the reputation of the supplier, are largely dependent on the quality of the product produced. Therefore it is of great interest to optimise the production of high quality fish, especially in the increasingly competitive white fish market.

This project sought to investigate several issues relating to commercial harvest practices for Yellowtail Kingfish, with the aim of modifying any aspect to improve product quality and/or harvesting efficiency. 

Final Report • 2013-05-01 • 1.72 MB
2010-778-DLD.pdf

Summary

Farmed Yellowtail Kingfish (YTK) is considered to be a premium quality fish, ideal for sashimi and sushi, dishes comprised of raw fish. To be acceptable for such delicacies the flesh has to be oily, firm and slightly translucent, with a fine creamy texture and a delicate flavour. The price received, and the reputation of the supplier, are largely dependent on the quality of the product produced. Therefore it is of great interest to optimise the production of high quality fish, especially in the increasingly competitive white fish market.

This project sought to investigate several issues relating to commercial harvest practices for Yellowtail Kingfish, with the aim of modifying any aspect to improve product quality and/or harvesting efficiency. 

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PROJECT NUMBER • 2010-763
PROJECT STATUS:
COMPLETED

SCRC: SCRC RTG: Research training at AAHL, Geelong (Vinh Dang)

This project allowed Mr Vinh Dang to carry out two research trips in Australian Animal Health Laboratory (AAHL), Geelong, under the joint supervision of Dr Kirsten Benkendorff, Dr Peter Speck and Dr Mark Crane. Both trips lasted for three weeks, the first one in October 2010 and the second one in...
ORGANISATION:
Flinders University

SCRC: SCRC Honours Scholarship: A novel method for producing sterile male fish and shellfish (Student - Andrew Schofield)

Project number: 2010-759
Project Status:
Completed
Budget expenditure: $0.00
Principal Investigator: Kathy Schuller
Organisation: Flinders University
Project start/end date: 14 Sep 2010 - 30 Nov 2011
Contact:
FRDC

Final report

ISBN: 978-1-925982-93-0
Author: Andrew Scholefield
Final Report • 2011-12-01 • 2.74 MB
2010-759-DLD-Hons.pdf

Summary

This study investigated the distribution of the expression of selected members of the peroxiredoxin (Prx) and glutathione peroxidase (GPx) antioxidant enzyme families in YTK (Seriola lalandi), an important finfish aquaculture species in South Australia.

The purpose of investigating the expression of these enzymes was to determine if they played a role in male fertility in fish, as both these families play a role in male fertility in mammals and individual members of these protein families were shown to be highly conserved between mammals and fish.

Final Report • 2011-12-01 • 2.74 MB
2010-759-DLD-Hons.pdf

Summary

This study investigated the distribution of the expression of selected members of the peroxiredoxin (Prx) and glutathione peroxidase (GPx) antioxidant enzyme families in YTK (Seriola lalandi), an important finfish aquaculture species in South Australia.

The purpose of investigating the expression of these enzymes was to determine if they played a role in male fertility in fish, as both these families play a role in male fertility in mammals and individual members of these protein families were shown to be highly conserved between mammals and fish.

Final Report • 2011-12-01 • 2.74 MB
2010-759-DLD-Hons.pdf

Summary

This study investigated the distribution of the expression of selected members of the peroxiredoxin (Prx) and glutathione peroxidase (GPx) antioxidant enzyme families in YTK (Seriola lalandi), an important finfish aquaculture species in South Australia.

The purpose of investigating the expression of these enzymes was to determine if they played a role in male fertility in fish, as both these families play a role in male fertility in mammals and individual members of these protein families were shown to be highly conserved between mammals and fish.

Final Report • 2011-12-01 • 2.74 MB
2010-759-DLD-Hons.pdf

Summary

This study investigated the distribution of the expression of selected members of the peroxiredoxin (Prx) and glutathione peroxidase (GPx) antioxidant enzyme families in YTK (Seriola lalandi), an important finfish aquaculture species in South Australia.

The purpose of investigating the expression of these enzymes was to determine if they played a role in male fertility in fish, as both these families play a role in male fertility in mammals and individual members of these protein families were shown to be highly conserved between mammals and fish.

Final Report • 2011-12-01 • 2.74 MB
2010-759-DLD-Hons.pdf

Summary

This study investigated the distribution of the expression of selected members of the peroxiredoxin (Prx) and glutathione peroxidase (GPx) antioxidant enzyme families in YTK (Seriola lalandi), an important finfish aquaculture species in South Australia.

The purpose of investigating the expression of these enzymes was to determine if they played a role in male fertility in fish, as both these families play a role in male fertility in mammals and individual members of these protein families were shown to be highly conserved between mammals and fish.

Final Report • 2011-12-01 • 2.74 MB
2010-759-DLD-Hons.pdf

Summary

This study investigated the distribution of the expression of selected members of the peroxiredoxin (Prx) and glutathione peroxidase (GPx) antioxidant enzyme families in YTK (Seriola lalandi), an important finfish aquaculture species in South Australia.

The purpose of investigating the expression of these enzymes was to determine if they played a role in male fertility in fish, as both these families play a role in male fertility in mammals and individual members of these protein families were shown to be highly conserved between mammals and fish.

Final Report • 2011-12-01 • 2.74 MB
2010-759-DLD-Hons.pdf

Summary

This study investigated the distribution of the expression of selected members of the peroxiredoxin (Prx) and glutathione peroxidase (GPx) antioxidant enzyme families in YTK (Seriola lalandi), an important finfish aquaculture species in South Australia.

The purpose of investigating the expression of these enzymes was to determine if they played a role in male fertility in fish, as both these families play a role in male fertility in mammals and individual members of these protein families were shown to be highly conserved between mammals and fish.

Final Report • 2011-12-01 • 2.74 MB
2010-759-DLD-Hons.pdf

Summary

This study investigated the distribution of the expression of selected members of the peroxiredoxin (Prx) and glutathione peroxidase (GPx) antioxidant enzyme families in YTK (Seriola lalandi), an important finfish aquaculture species in South Australia.

The purpose of investigating the expression of these enzymes was to determine if they played a role in male fertility in fish, as both these families play a role in male fertility in mammals and individual members of these protein families were shown to be highly conserved between mammals and fish.

Final Report • 2011-12-01 • 2.74 MB
2010-759-DLD-Hons.pdf

Summary

This study investigated the distribution of the expression of selected members of the peroxiredoxin (Prx) and glutathione peroxidase (GPx) antioxidant enzyme families in YTK (Seriola lalandi), an important finfish aquaculture species in South Australia.

The purpose of investigating the expression of these enzymes was to determine if they played a role in male fertility in fish, as both these families play a role in male fertility in mammals and individual members of these protein families were shown to be highly conserved between mammals and fish.

Final Report • 2011-12-01 • 2.74 MB
2010-759-DLD-Hons.pdf

Summary

This study investigated the distribution of the expression of selected members of the peroxiredoxin (Prx) and glutathione peroxidase (GPx) antioxidant enzyme families in YTK (Seriola lalandi), an important finfish aquaculture species in South Australia.

The purpose of investigating the expression of these enzymes was to determine if they played a role in male fertility in fish, as both these families play a role in male fertility in mammals and individual members of these protein families were shown to be highly conserved between mammals and fish.

Final Report • 2011-12-01 • 2.74 MB
2010-759-DLD-Hons.pdf

Summary

This study investigated the distribution of the expression of selected members of the peroxiredoxin (Prx) and glutathione peroxidase (GPx) antioxidant enzyme families in YTK (Seriola lalandi), an important finfish aquaculture species in South Australia.

The purpose of investigating the expression of these enzymes was to determine if they played a role in male fertility in fish, as both these families play a role in male fertility in mammals and individual members of these protein families were shown to be highly conserved between mammals and fish.

Final Report • 2011-12-01 • 2.74 MB
2010-759-DLD-Hons.pdf

Summary

This study investigated the distribution of the expression of selected members of the peroxiredoxin (Prx) and glutathione peroxidase (GPx) antioxidant enzyme families in YTK (Seriola lalandi), an important finfish aquaculture species in South Australia.

The purpose of investigating the expression of these enzymes was to determine if they played a role in male fertility in fish, as both these families play a role in male fertility in mammals and individual members of these protein families were shown to be highly conserved between mammals and fish.

Final Report • 2011-12-01 • 2.74 MB
2010-759-DLD-Hons.pdf

Summary

This study investigated the distribution of the expression of selected members of the peroxiredoxin (Prx) and glutathione peroxidase (GPx) antioxidant enzyme families in YTK (Seriola lalandi), an important finfish aquaculture species in South Australia.

The purpose of investigating the expression of these enzymes was to determine if they played a role in male fertility in fish, as both these families play a role in male fertility in mammals and individual members of these protein families were shown to be highly conserved between mammals and fish.

Final Report • 2011-12-01 • 2.74 MB
2010-759-DLD-Hons.pdf

Summary

This study investigated the distribution of the expression of selected members of the peroxiredoxin (Prx) and glutathione peroxidase (GPx) antioxidant enzyme families in YTK (Seriola lalandi), an important finfish aquaculture species in South Australia.

The purpose of investigating the expression of these enzymes was to determine if they played a role in male fertility in fish, as both these families play a role in male fertility in mammals and individual members of these protein families were shown to be highly conserved between mammals and fish.

Final Report • 2011-12-01 • 2.74 MB
2010-759-DLD-Hons.pdf

Summary

This study investigated the distribution of the expression of selected members of the peroxiredoxin (Prx) and glutathione peroxidase (GPx) antioxidant enzyme families in YTK (Seriola lalandi), an important finfish aquaculture species in South Australia.

The purpose of investigating the expression of these enzymes was to determine if they played a role in male fertility in fish, as both these families play a role in male fertility in mammals and individual members of these protein families were shown to be highly conserved between mammals and fish.

Final Report • 2011-12-01 • 2.74 MB
2010-759-DLD-Hons.pdf

Summary

This study investigated the distribution of the expression of selected members of the peroxiredoxin (Prx) and glutathione peroxidase (GPx) antioxidant enzyme families in YTK (Seriola lalandi), an important finfish aquaculture species in South Australia.

The purpose of investigating the expression of these enzymes was to determine if they played a role in male fertility in fish, as both these families play a role in male fertility in mammals and individual members of these protein families were shown to be highly conserved between mammals and fish.

Final Report • 2011-12-01 • 2.74 MB
2010-759-DLD-Hons.pdf

Summary

This study investigated the distribution of the expression of selected members of the peroxiredoxin (Prx) and glutathione peroxidase (GPx) antioxidant enzyme families in YTK (Seriola lalandi), an important finfish aquaculture species in South Australia.

The purpose of investigating the expression of these enzymes was to determine if they played a role in male fertility in fish, as both these families play a role in male fertility in mammals and individual members of these protein families were shown to be highly conserved between mammals and fish.

Final Report • 2011-12-01 • 2.74 MB
2010-759-DLD-Hons.pdf

Summary

This study investigated the distribution of the expression of selected members of the peroxiredoxin (Prx) and glutathione peroxidase (GPx) antioxidant enzyme families in YTK (Seriola lalandi), an important finfish aquaculture species in South Australia.

The purpose of investigating the expression of these enzymes was to determine if they played a role in male fertility in fish, as both these families play a role in male fertility in mammals and individual members of these protein families were shown to be highly conserved between mammals and fish.

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PROJECT NUMBER • 2010-738
PROJECT STATUS:
COMPLETED

SCRC: Reducing inflammation in the elderly with a high seafood diet

With ageing, the inflammatory process is aggravated and it is becoming increasingly recognised that chronic, low-grade inflammation is associated with increased risk for cardiovascular, and a number of other, chronic diseases. The role of nutrition in the development and resolution of inflammation...
ORGANISATION:
Flinders University
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