227 results
Industry
PROJECT NUMBER • 2017-190
PROJECT STATUS:
COMPLETED

Assessment of gamma irradiation as a feasible method for treating prawns to inactivate White Spot Syndrome Virus

White spot syndrome virus (WSSV) was detected in diseased farmed prawns by Biosecurity Queensland’s Biological Sciences Laboratory and confirmed by the CSIRO Australian Centre for Diagnostic Preparedness (ACDP) Fish...
ORGANISATION:
Department of Primary Industries (QLD)
SPECIES
Industry
PROJECT NUMBER • 2017-179
PROJECT STATUS:
COMPLETED

Sensory testing of seafood - fresh versus frozen - and development of frozen seafood recipes

There is a strong negative perception of frozen fish amongst consumers, with many considering that frozen product is of inferior quality compared to ‘fresh’ (chilled) fish. The resistance to purchase frozen fish continues, despite modern freezing technology and practices resulting in...
ORGANISATION:
Department of Primary Industries (QLD)

Pilot - Development of Seafood Nutritional Panels

Project number: 2017-145
Project Status:
Completed
Budget expenditure: $149,480.00
Principal Investigator: Andrew J. Forrest
Organisation: Department of Primary Industries (QLD)
Project start/end date: 23 Jan 2018 - 30 Mar 2019
Contact:
FRDC

Need

There is a need for common baseline of information that provides easy accessible compositional profiles in suitable formats about their products to enable them to meet their individual needs.

The information needs to be robust, consistent and cover the minimum needs of a nutritional panel (consumer) and contaminant information.

The project will assist in meeting industry needs for:
- Promoting the public health benefits of seafood consumption more generally.
- Rapid access to credible information to counter negative media claims.
- Assist in addressing current and future technical market challenges.
- Anticipate and quickly respond to market access threats.

Additionally there is a need to ensure that nutritional information on the key species (those covered in the Status of Australian Fish Stocks Reports) and profiled on the FRDC consumer site Fishfiles is available.

It is important to note that FRDC funded two studies that undertook oil analysis for 250+ Australian species. See the Seafood the Good Food volume 1 and 2 for the results. This means the need is on broadening this analysis to include other nutritional elements.

Objectives

1. Create nutrition panels for a minimum of 25 seafood species where none exist.

Final report

ISBN: 978-0-7345-0462-3
Authors: Carl Paulo Andrew Forrest Paul Exley and Sue Poole
Final Report • 2019-12-16 • 891.90 KB
2017-145-DLD.pdf

Summary

Understanding the nutritional composition of seafood products is both a regulatory requirement and a consumer demand. Although a considerable body of data exists that covers key fish species, the majority of commercially important species within the wild catch sector still lack a basic nutritional profile. This knowledge gap impacts heavily on industry by providing hurdles for operators to meet their regulatory responsibilities and leaving consumers somewhat in the dark when it comes to understanding the seafood products they consume. To address this, extensive work was undertaken to develop nutrition panels for a minimum of 25 commercially important wild catch seafood species where none currently exist.

Project products

Data • 2019-12-16 • 33.64 KB
2017-145-DLD.xlsx

Summary

Excel data file of nutrition data derived from this project
Final Report • 2019-12-16 • 891.90 KB
2017-145-DLD.pdf

Summary

Understanding the nutritional composition of seafood products is both a regulatory requirement and a consumer demand. Although a considerable body of data exists that covers key fish species, the majority of commercially important species within the wild catch sector still lack a basic nutritional profile. This knowledge gap impacts heavily on industry by providing hurdles for operators to meet their regulatory responsibilities and leaving consumers somewhat in the dark when it comes to understanding the seafood products they consume. To address this, extensive work was undertaken to develop nutrition panels for a minimum of 25 commercially important wild catch seafood species where none currently exist.
Data • 2019-12-16 • 33.64 KB
2017-145-DLD.xlsx

Summary

Excel data file of nutrition data derived from this project
Final Report • 2019-12-16 • 891.90 KB
2017-145-DLD.pdf

Summary

Understanding the nutritional composition of seafood products is both a regulatory requirement and a consumer demand. Although a considerable body of data exists that covers key fish species, the majority of commercially important species within the wild catch sector still lack a basic nutritional profile. This knowledge gap impacts heavily on industry by providing hurdles for operators to meet their regulatory responsibilities and leaving consumers somewhat in the dark when it comes to understanding the seafood products they consume. To address this, extensive work was undertaken to develop nutrition panels for a minimum of 25 commercially important wild catch seafood species where none currently exist.
Data • 2019-12-16 • 33.64 KB
2017-145-DLD.xlsx

Summary

Excel data file of nutrition data derived from this project
Final Report • 2019-12-16 • 891.90 KB
2017-145-DLD.pdf

Summary

Understanding the nutritional composition of seafood products is both a regulatory requirement and a consumer demand. Although a considerable body of data exists that covers key fish species, the majority of commercially important species within the wild catch sector still lack a basic nutritional profile. This knowledge gap impacts heavily on industry by providing hurdles for operators to meet their regulatory responsibilities and leaving consumers somewhat in the dark when it comes to understanding the seafood products they consume. To address this, extensive work was undertaken to develop nutrition panels for a minimum of 25 commercially important wild catch seafood species where none currently exist.
Data • 2019-12-16 • 33.64 KB
2017-145-DLD.xlsx

Summary

Excel data file of nutrition data derived from this project
Final Report • 2019-12-16 • 891.90 KB
2017-145-DLD.pdf

Summary

Understanding the nutritional composition of seafood products is both a regulatory requirement and a consumer demand. Although a considerable body of data exists that covers key fish species, the majority of commercially important species within the wild catch sector still lack a basic nutritional profile. This knowledge gap impacts heavily on industry by providing hurdles for operators to meet their regulatory responsibilities and leaving consumers somewhat in the dark when it comes to understanding the seafood products they consume. To address this, extensive work was undertaken to develop nutrition panels for a minimum of 25 commercially important wild catch seafood species where none currently exist.
Data • 2019-12-16 • 33.64 KB
2017-145-DLD.xlsx

Summary

Excel data file of nutrition data derived from this project
Final Report • 2019-12-16 • 891.90 KB
2017-145-DLD.pdf

Summary

Understanding the nutritional composition of seafood products is both a regulatory requirement and a consumer demand. Although a considerable body of data exists that covers key fish species, the majority of commercially important species within the wild catch sector still lack a basic nutritional profile. This knowledge gap impacts heavily on industry by providing hurdles for operators to meet their regulatory responsibilities and leaving consumers somewhat in the dark when it comes to understanding the seafood products they consume. To address this, extensive work was undertaken to develop nutrition panels for a minimum of 25 commercially important wild catch seafood species where none currently exist.
Data • 2019-12-16 • 33.64 KB
2017-145-DLD.xlsx

Summary

Excel data file of nutrition data derived from this project
Final Report • 2019-12-16 • 891.90 KB
2017-145-DLD.pdf

Summary

Understanding the nutritional composition of seafood products is both a regulatory requirement and a consumer demand. Although a considerable body of data exists that covers key fish species, the majority of commercially important species within the wild catch sector still lack a basic nutritional profile. This knowledge gap impacts heavily on industry by providing hurdles for operators to meet their regulatory responsibilities and leaving consumers somewhat in the dark when it comes to understanding the seafood products they consume. To address this, extensive work was undertaken to develop nutrition panels for a minimum of 25 commercially important wild catch seafood species where none currently exist.
Data • 2019-12-16 • 33.64 KB
2017-145-DLD.xlsx

Summary

Excel data file of nutrition data derived from this project
Final Report • 2019-12-16 • 891.90 KB
2017-145-DLD.pdf

Summary

Understanding the nutritional composition of seafood products is both a regulatory requirement and a consumer demand. Although a considerable body of data exists that covers key fish species, the majority of commercially important species within the wild catch sector still lack a basic nutritional profile. This knowledge gap impacts heavily on industry by providing hurdles for operators to meet their regulatory responsibilities and leaving consumers somewhat in the dark when it comes to understanding the seafood products they consume. To address this, extensive work was undertaken to develop nutrition panels for a minimum of 25 commercially important wild catch seafood species where none currently exist.
Data • 2019-12-16 • 33.64 KB
2017-145-DLD.xlsx

Summary

Excel data file of nutrition data derived from this project
Final Report • 2019-12-16 • 891.90 KB
2017-145-DLD.pdf

Summary

Understanding the nutritional composition of seafood products is both a regulatory requirement and a consumer demand. Although a considerable body of data exists that covers key fish species, the majority of commercially important species within the wild catch sector still lack a basic nutritional profile. This knowledge gap impacts heavily on industry by providing hurdles for operators to meet their regulatory responsibilities and leaving consumers somewhat in the dark when it comes to understanding the seafood products they consume. To address this, extensive work was undertaken to develop nutrition panels for a minimum of 25 commercially important wild catch seafood species where none currently exist.
Data • 2019-12-16 • 33.64 KB
2017-145-DLD.xlsx

Summary

Excel data file of nutrition data derived from this project
Final Report • 2019-12-16 • 891.90 KB
2017-145-DLD.pdf

Summary

Understanding the nutritional composition of seafood products is both a regulatory requirement and a consumer demand. Although a considerable body of data exists that covers key fish species, the majority of commercially important species within the wild catch sector still lack a basic nutritional profile. This knowledge gap impacts heavily on industry by providing hurdles for operators to meet their regulatory responsibilities and leaving consumers somewhat in the dark when it comes to understanding the seafood products they consume. To address this, extensive work was undertaken to develop nutrition panels for a minimum of 25 commercially important wild catch seafood species where none currently exist.
Data • 2019-12-16 • 33.64 KB
2017-145-DLD.xlsx

Summary

Excel data file of nutrition data derived from this project
Final Report • 2019-12-16 • 891.90 KB
2017-145-DLD.pdf

Summary

Understanding the nutritional composition of seafood products is both a regulatory requirement and a consumer demand. Although a considerable body of data exists that covers key fish species, the majority of commercially important species within the wild catch sector still lack a basic nutritional profile. This knowledge gap impacts heavily on industry by providing hurdles for operators to meet their regulatory responsibilities and leaving consumers somewhat in the dark when it comes to understanding the seafood products they consume. To address this, extensive work was undertaken to develop nutrition panels for a minimum of 25 commercially important wild catch seafood species where none currently exist.
Data • 2019-12-16 • 33.64 KB
2017-145-DLD.xlsx

Summary

Excel data file of nutrition data derived from this project
Final Report • 2019-12-16 • 891.90 KB
2017-145-DLD.pdf

Summary

Understanding the nutritional composition of seafood products is both a regulatory requirement and a consumer demand. Although a considerable body of data exists that covers key fish species, the majority of commercially important species within the wild catch sector still lack a basic nutritional profile. This knowledge gap impacts heavily on industry by providing hurdles for operators to meet their regulatory responsibilities and leaving consumers somewhat in the dark when it comes to understanding the seafood products they consume. To address this, extensive work was undertaken to develop nutrition panels for a minimum of 25 commercially important wild catch seafood species where none currently exist.
Data • 2019-12-16 • 33.64 KB
2017-145-DLD.xlsx

Summary

Excel data file of nutrition data derived from this project
Final Report • 2019-12-16 • 891.90 KB
2017-145-DLD.pdf

Summary

Understanding the nutritional composition of seafood products is both a regulatory requirement and a consumer demand. Although a considerable body of data exists that covers key fish species, the majority of commercially important species within the wild catch sector still lack a basic nutritional profile. This knowledge gap impacts heavily on industry by providing hurdles for operators to meet their regulatory responsibilities and leaving consumers somewhat in the dark when it comes to understanding the seafood products they consume. To address this, extensive work was undertaken to develop nutrition panels for a minimum of 25 commercially important wild catch seafood species where none currently exist.
Data • 2019-12-16 • 33.64 KB
2017-145-DLD.xlsx

Summary

Excel data file of nutrition data derived from this project
Final Report • 2019-12-16 • 891.90 KB
2017-145-DLD.pdf

Summary

Understanding the nutritional composition of seafood products is both a regulatory requirement and a consumer demand. Although a considerable body of data exists that covers key fish species, the majority of commercially important species within the wild catch sector still lack a basic nutritional profile. This knowledge gap impacts heavily on industry by providing hurdles for operators to meet their regulatory responsibilities and leaving consumers somewhat in the dark when it comes to understanding the seafood products they consume. To address this, extensive work was undertaken to develop nutrition panels for a minimum of 25 commercially important wild catch seafood species where none currently exist.
Data • 2019-12-16 • 33.64 KB
2017-145-DLD.xlsx

Summary

Excel data file of nutrition data derived from this project
Final Report • 2019-12-16 • 891.90 KB
2017-145-DLD.pdf

Summary

Understanding the nutritional composition of seafood products is both a regulatory requirement and a consumer demand. Although a considerable body of data exists that covers key fish species, the majority of commercially important species within the wild catch sector still lack a basic nutritional profile. This knowledge gap impacts heavily on industry by providing hurdles for operators to meet their regulatory responsibilities and leaving consumers somewhat in the dark when it comes to understanding the seafood products they consume. To address this, extensive work was undertaken to develop nutrition panels for a minimum of 25 commercially important wild catch seafood species where none currently exist.
Data • 2019-12-16 • 33.64 KB
2017-145-DLD.xlsx

Summary

Excel data file of nutrition data derived from this project
Final Report • 2019-12-16 • 891.90 KB
2017-145-DLD.pdf

Summary

Understanding the nutritional composition of seafood products is both a regulatory requirement and a consumer demand. Although a considerable body of data exists that covers key fish species, the majority of commercially important species within the wild catch sector still lack a basic nutritional profile. This knowledge gap impacts heavily on industry by providing hurdles for operators to meet their regulatory responsibilities and leaving consumers somewhat in the dark when it comes to understanding the seafood products they consume. To address this, extensive work was undertaken to develop nutrition panels for a minimum of 25 commercially important wild catch seafood species where none currently exist.
Data • 2019-12-16 • 33.64 KB
2017-145-DLD.xlsx

Summary

Excel data file of nutrition data derived from this project
Final Report • 2019-12-16 • 891.90 KB
2017-145-DLD.pdf

Summary

Understanding the nutritional composition of seafood products is both a regulatory requirement and a consumer demand. Although a considerable body of data exists that covers key fish species, the majority of commercially important species within the wild catch sector still lack a basic nutritional profile. This knowledge gap impacts heavily on industry by providing hurdles for operators to meet their regulatory responsibilities and leaving consumers somewhat in the dark when it comes to understanding the seafood products they consume. To address this, extensive work was undertaken to develop nutrition panels for a minimum of 25 commercially important wild catch seafood species where none currently exist.
Data • 2019-12-16 • 33.64 KB
2017-145-DLD.xlsx

Summary

Excel data file of nutrition data derived from this project
Final Report • 2019-12-16 • 891.90 KB
2017-145-DLD.pdf

Summary

Understanding the nutritional composition of seafood products is both a regulatory requirement and a consumer demand. Although a considerable body of data exists that covers key fish species, the majority of commercially important species within the wild catch sector still lack a basic nutritional profile. This knowledge gap impacts heavily on industry by providing hurdles for operators to meet their regulatory responsibilities and leaving consumers somewhat in the dark when it comes to understanding the seafood products they consume. To address this, extensive work was undertaken to develop nutrition panels for a minimum of 25 commercially important wild catch seafood species where none currently exist.
Data • 2019-12-16 • 33.64 KB
2017-145-DLD.xlsx

Summary

Excel data file of nutrition data derived from this project
Final Report • 2019-12-16 • 891.90 KB
2017-145-DLD.pdf

Summary

Understanding the nutritional composition of seafood products is both a regulatory requirement and a consumer demand. Although a considerable body of data exists that covers key fish species, the majority of commercially important species within the wild catch sector still lack a basic nutritional profile. This knowledge gap impacts heavily on industry by providing hurdles for operators to meet their regulatory responsibilities and leaving consumers somewhat in the dark when it comes to understanding the seafood products they consume. To address this, extensive work was undertaken to develop nutrition panels for a minimum of 25 commercially important wild catch seafood species where none currently exist.
Data • 2019-12-16 • 33.64 KB
2017-145-DLD.xlsx

Summary

Excel data file of nutrition data derived from this project
Adoption
PROJECT NUMBER • 2017-143
PROJECT STATUS:
COMPLETED

Transitioning cobia aquaculture research and development in Queensland to industry

This report discusses a collaboration between the Queensland Department of Agriculture and Fisheries (DAF) and Rocky Point Agriculture Pty Ltd (RPA) to transition cobia aquaculture research, development and extension (RD&E) to commercial production. The report outlines the success of RPA in...
ORGANISATION:
Department of Primary Industries (QLD)
SPECIES

Fisheries managers workshop

Project number: 2017-116
Project Status:
Completed
Budget expenditure: $16,000.00
Principal Investigator: Claire Andersen
Organisation: Department of Primary Industries (QLD)
Project start/end date: 17 Sep 2017 - 28 Feb 2018
Contact:
FRDC

Need

Given increasing complexity in fisheries management and additional scrutiny on managers, there is a need for fisheries managers from the different jurisdictions to meet as a group to exchange ideas and initiatives and build networks. The Australian Fisheries Management Forum (AFMF), comprised of the respective heads of Commonwealth and State/Territory management agencies, supports the need for such a forum.

Similar cross-fertilisation forums exist between researchers through the Australian Society for Fish Biology (ASFB) and the National Compliance Committee for compliance officers.

It has been a considerable period since fisheries managers workshops were last held. Previous workshops occurred in the 1980s and early 1990s. In March 2014, a two-day national fisheries management workshop was held in Adelaide at the South Australian Aquatic Sciences Centre. This workshop was overseen by the AFMF’s Fisheries Management Sub-Committee (FMSC), with funding support from the Fisheries Research and Development Corporation (FRDC). Recommendations arising from this workshop included convening a subsequent fisheries managers workshop in 12-24 months and the formation of an Australian Professional Fisheries Management Society.

As an interim arrangement pending the potential formation of a professional fisheries managers society as a chapter of ASFB, the FMSC has agreed to hold another fisheries managers workshop, which Queensland will host in October 2017.

Future workshops will be held to coincide with ASFB annually (starting in 2018).

Objectives

1. Hold workshop to solidify the fisheries management working group as part of AFMF
Industry
PROJECT NUMBER • 2017-057
PROJECT STATUS:
COMPLETED

Stock predictions and spatial population indicators for Australia's east coast saucer scallop fishery

This project undertook analyses to understand the role of overfishing and the environment on saucer scallops. The analyses indicated reduced numbers of spawning scallops. Historical levels of fishing and environmental influences such as from increased sea surface temperatures (SST) have amplified...
ORGANISATION:
Department of Primary Industries (QLD)
Industry
PROJECT NUMBER • 2017-048
PROJECT STATUS:
COMPLETED

Improving mortality rate estimates for management of the Queensland Saucer Scallop fishery

This research was undertaken on the Queensland saucer scallop (Ylistrum balloti) fishery in southeast Queensland, which is an important component of the Queensland East Coast Otter Trawl Fishery (QECOTF). The research was undertaken by a collaborative team from the Queensland Department...
ORGANISATION:
Department of Primary Industries (QLD)
Environment
PROJECT NUMBER • 2017-047
PROJECT STATUS:
COMPLETED

Understanding environmental and fisheries factors causing fluctuations in mud crab and blue swimmer crab fisheries in northern Australia to inform harvest strategies

This project investigated relationships between environmental factors and harvests of crabs in the Gulf of Carpentaria (GoC), northern Australia. Desktop correlative analyses clearly indicated that recent fluctuations in the catches of Giant Mud Crabs in the GoC are most likely driven by...
ORGANISATION:
Department of Primary Industries (QLD)
Industry
PROJECT NUMBER • 2017-020
PROJECT STATUS:
COMPLETED

Identification of muscle parasite in Yellowtail Kingfish (Seriola lalandi) and Mahi Mahi (Coryphaena hippurus), and determination as to the efficacy of non-invasive screening technology for the purpose of identifying infected fish in a commercial fish processing environment

Yellowtail kingfish (Seriola lalandi) and Mahi mahi (Coryphaena hippurus) are actively targeted by fishers in the warmer waters of northern NSW. Both species are becoming increasingly important to local fishers with escalating demand due to increased consumer awareness of the premium eating quality...
ORGANISATION:
Department of Primary Industries (QLD)
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