T. Klammsteiner
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Microbes involved in Black Soldier Fly oviposition
Open Date: 2022-04-01
Close Date: 2026-03-31
Grant: Close
Expanding the value chain – biological extraction of chitosan for insect-based waste bioconversion
Open Date: 2022-03-01
Close Date: 2024-06-01
Grant: Close
Frass4Gas: Thailand
Open Date: 2022-01-01
Close Date: 2023-01-01
Grant: Close
Frass for gas: pre-treatment of industrial insect breeding residues for anaerobic digestion
Open Date: 2021-01-01
Close Date: 2021-01-01
Grant: Close
Cooling-liquid microbiome revisited
Open Date: 2020-01-01
Close Date: 2020-01-01
Articles (10)
Life-history traits of black soldier fly reared on agro-industrial by-products subjected to three pre-treatments: a pilot-scale study
Agrarian production generates approximately 190 million tons of agro-industrial by-products (AIBP) per year that are often disposed of without proper treatment, causing health hazards and environmental pollution. The black soldier fly (BSF; Hermetia illucens ) has gained popularity as an organic waste recycler owing to its suitability for large-scale insect farming. Despite their valuable components, AIBPs are rich in fibres with low digestibility and provide a breeding ground for potentially pathogenic microbes, which necessitates proper caretaking. This study focuses on a pilot-scale life-cycle analysis of BSF, comparing three different pre-treatments for agro-industrial wastes. We assessed the effect of the pre-treatments on larval and pupal biomass yield and development time of life stages, pupal and adult body properties, adult emergence and sex ratio, and oviposition and fertilization rates. A mix of residues from pasta production and wheat bran (basis substrate, BS; control treatment) was pre-treated using a chemical (with 0.15% potassium sorbate, BSSORB), an organic (with 10% biochar, BSCHAR), and a microbiological (with a 10-day lactic acid fermentation, BSFERM) approach. We report that the BSSORB treatment had the significantly highest larval and pupal biomass yield as well the significantly largest pupae and adults, and the most successful adult emergence but had low oviposition success. BS and BSFERM were similar in terms of larval and pupal biomass yield, BSF development time, pupal and adult body properties, adult emergence, and oviposition. Nonetheless, BSFERM had the highest share of unfertilized eggs. With BSCHAR, BSF developed faster. This study indicates that all treatments have advantages and disadvantages and that thus their application should be selected based on breeding strategy. By analysing and adapting methods that facilitate the conversion of AIBPs to BSF biomass, the treatment of agricultural wastes and by-products can be made more efficient and sustainable.
Year:
2023
Collaborators (6)
Suzanne Kapelari
Head of Science Education
University of Innsbruck
Heribert Insam
Professor
University of Innsbruck
Aldert Zomer
Utrecht University
Marta B. Lopes
Universidade de Aveiro
Marcus Claesson
University College Cork
Markus Schermer
Professor
University of Innsbruck

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