33 results
People
Environment
PROJECT NUMBER • 2019-212
PROJECT STATUS:
COMPLETED

Compilation of information for the US Marine Mammal Protection Act Comparability Finding process

Recent changes to legislation in the United States (US) requires that nations importing seafood must demonstrate that they have a regulatory program for reducing marine mammal bycatch that is comparable in effectiveness to the US standards under the ‘Fish and Fish Product Import...
ORGANISATION:
Alice Ilona Mackay
People
Industry

RRD4P: FRDC Contribution: Closing the Loop: Black Soldier Fly technology to convert agricultural waste

Project number: 2019-172
Project Status:
Completed
Budget expenditure: $90,000.00
Principal Investigator: Denise Woods
Organisation: Australian Pork Ltd (APL)
Project start/end date: 31 Jan 2020 - 29 Jun 2022
:

Need

Black soldier fly farming (BSF) is an emerging industry that provides a low-cost waste management solution for converting agricultural waste into high quality fertiliser (BSF castings or frass) and protein (BSF larvae as animal feed). However, the BSF products cannot be developed further in Australia until biosecurity, environmental and food safety risks are addressed. This collaborative project between industry, government and researchers will a) develop frass as a slow-release, granulated fertilizer product that is safe to handle, transport and apply; b) quantify the biosecurity and environmental risks associated with applying frass to cropping and c) overcome the barriers to adoption by involving policy makers and farmers during trials and assisting early adopters through extension activities. Adoption of BSF technology and its products has potential to increase productivity and profitability via reduced input costs and alternative revenue streams on agricultural enterprises.

Primary industries produce large volumes of waste by-products that often contain significant amounts of macro and micro-nutrients that are typically in a dilute, nutritionally unbalanced form for agricultural crops (Abbott et al., 2018). The handling, management and application of wastes are costly and time consuming for producers whilst transportation and reuse off-farm is currently impractical and uneconomical. Poor livestock and waste management practices in the past have led to stable fly (as opposed to the Black Soldier Fly which is not a pest) outbreaks, odour, GHG emissions and nutrient leaching and runoff into waterways. This has resulted in stringent application restrictions being imposed for manure application through Health Regulations 2001 and through the Biosecurity and Agriculture Management Act 2007 (BAM Act). These regulations on manure disposal have led to loss of important marketing options causing significant cost increases (> $4 million annually). Currently, composting to Australian Standards on-site is both costly and lengthy and does not have sufficient scale, capacity or end market to process the entire allotment of manure. Consequently, large quantities of manure (225,000m3 of manure per annum) are transported long distances to broadacre agricultural zones for pasture and crop fertilisation at a significant cost to producers.
Page 15 of 21
BSF technology has potential to improve profitability and sustainability for livestock and cropping industries by significantly reducing waste volumes whilst creating a high value fertiliser product. Once fully commercialised, BSF cultivation could process hundreds of tonnes of waste per day, requiring only a small amount of space. The BSF technology is both suitable for medium to large enterprises and provides more flexibility for smaller enterprises or regional hubs. The BSF reproduces rapidly, have high feed conversion efficiency and produce half a tonne of frass for every tonne of waste processed (Moula et al., 2018). The BSF process has also been shown to significantly reduce the biosecurity and environment risks associated with waste management. The BSF larvae outcompete stable fly, decrease the nutrient content (total N by 55 and P by 45%, respectively) and lower pathogen loading of E. coli and Salmonella levels (Lui et al., 2008; Erickson et al., 2004). In addition, BSF have been shown to reduce antibiotics and antibiotic resistant genomes in waste substrates (Cai et al., 2018). Therefore, the resulting frass fertiliser has potential to mitigate and lower the risk of contamination, GHG emissions, nutrient leaching and runoff. Developing the frass as a high quality fertiliser would open new markets and create new revenues for profit, making BSF more economically viable for the livestock industries. However, the agronomic and economic value of frass fertiliser as well as the environmental and biosecurity risks of their application needs to be evaluated to increase adoption. Also, the frass fertilizer products must be tailored to crop nutrient requirements, machinery and operations. In addition, research is needed to understand the mode and mechanisms of delivery so that the frass can be developed as a slow release fertiliser to minimise the loss of nutrients through runoff, leaching and GHG emissions. Further research on the social license and regulatory

Objectives

1. Investigate the development of Black Soldier Fly Farming (BSF) castings and larvae into high quality, low-cost, slow-release, granulated fertilizer products, that are safe to handle, transport and apply
2. Screening and optimisation of waste streams - Characterise all waste inputs to provide a profile of nutritional value and properties
3. Economic feasibility, socio-economic costs and benefits, and market evaluation
4. Assess the biosecurity risks of Black soldier fly products (frass and larvae)
5. Assess the environmental risks of Black soldier fly products (frass and larvae)
6. Assess the benefits of using BSF frass and/or larvae as a soil improver
7. Develop a granulated and/or pelletised fertiliser product
8. Develop a slow release enhanced efficiency fertiliser product
9. Develop a high quality animal feed product from approved waste materials (horticulture and meeting processing)

Final report

Authors: Dr. Sasha Jenkins and A/Prof. Marit Kragt Dr Matt Redding
Final Report • 2023-02-28 • 5.10 MB
2019-172-DLD.pdf

Summary

This project investigated BSF waste treatment technology to provide a new waste management options that is more sustainable, productive and profitable for the primary industries. It explored the conversion of low-value agricultural waste products into high quality, innovative fertilisers and soil improvers. This will potentially create new markets for primary industries leading to decrease primary production costs. The project also sought to overcome key barriers to adoption of novel fertilizers/soil improvers by engaging with regulatory bodies via project activities.
Final Report

Summary

Black soldier fly farming (BSF) is an emerging industry that provides a low-cost waste management solution for converting agricultural waste into high quality fertiliser (BSF castings or frass) and protein (BSF larvae as animal feed).
Environment
PROJECT NUMBER • 2017-175
PROJECT STATUS:
COMPLETED

Linking ecosystem services to the profitability of prawn fisheries linked to 2017-188

The FRDC Project 2017-175 Linking ecosystem services to the profitability of prawn fisheries delivered new methods, data and indicators to a case study on prawn fisheries in a broader project entitled Lifting farm gate profits: the role of natural capital accounts (RnD4Profit-16-03-003). This FRDC...
ORGANISATION:
CSIRO Land and Water Canberra

Update of AQUAVETPLAN Disease Strategy Manual, White Spot Disease

Project number: 2019-095
Project Status:
Completed
Budget expenditure: $20,125.00
Principal Investigator: Ben Diggles
Organisation: DigsFish Services Pty Ltd
Project start/end date: 31 Aug 2019 - 30 Jan 2020
:

Need

The Department of Agriculture and Water Resources is seeking expressions of interest for the revision of the following AQUAVETPLAN Disease strategy manual:
1. White Spot Disease

The Australian Aquatic Veterinary Emergency Plan (AQUAVETPLAN) is a series of manuals that outline Australia’s approach to national disease preparedness and propose the technical response and control strategies to be activated in a national aquatic animal disease emergency.
To assist potential applicants in preparing their expression of interest:
• Current AQUAVETPLAN manuals, including the current version of the AQUAVETPLAN manuals for White spot disease, is available on the Department’s website at AQUAVETPLAN.
• Author guidelines, including the latest template for AQUAVETPLAN manuals, can be provided electronically on request from the Aquatic Pest and Health Policy section (contact details below).
Terms of Reference
The White spot disease manual was first published in 2005, and the second version was published in 2013. This manual requires revision to reflect new scientific knowledge, and to ensure that strategies used for White Spot disease control purposes reflect current ‘best-practice’ approaches.

Objectives

1. Revision of the AQUAVETPLAN Disease Strategy Manual: White Spot Disease

Final report

Author: Department of Agriculture
Final Report • 2020-01-01 • 1.64 MB
2019-095-DLD.pdf

Summary

This disease strategy for the control and eradication of white spot disease (WSD) is an integral part of the Australian Aquatic Veterinary Emergency Plan (AQUAVETPLAN).
AQUAVETPLAN disease strategy manuals are response manuals and do not include information about preventing the introduction of disease.
This strategy sets out the disease control principles for use in an aquatic veterinary emergency incident caused by the suspicion or confirmation of white spot disease in Australia. The strategy was scientifically reviewed by the Sub Committee for Aquatic Animal Health of the Animal Health Committee, before being endorsed by the Animal Health Committee of the National Biosecurity Committee in February 2020.
White spot disease is listed by the OIE in the Aquatic Animal Health Code. White spot disease is also listed on Australia’s National List of Reportable Diseases of Aquatic Animals (Agriculture 2019).
Industry
Industry
PROJECT NUMBER • 2017-095
PROJECT STATUS:
COMPLETED

Australian Fisheries and Aquaculture Statistics 2016

Since 1991 ABARES has annually published detailed production and trade data in Australian Fisheries Statistics (now Australian fisheries and aquaculture statistics) to meet the needs of the fishing and aquaculture industries, fisheries managers, policy makers and researchers. The research undertaken...
ORGANISATION:
Department of Agriculture Fisheries and Forestry
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