Grinding as a slaughter method for farmed black soldier fly (Hermetia illucens) larvae: Empirical recommendations to achieve instantaneous killing.

IF 1.4 4区 农林科学 Q2 VETERINARY SCIENCES
Animal Welfare Pub Date : 2024-03-12 eCollection Date: 2024-01-01 DOI:10.1017/awf.2024.10
Meghan Barrett, Chelsea Miranda, I Theresse Veloso, Casey Flint, Craig D Perl, Austin Martinez, Bob Fischer, Jeffery K Tomberlin
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引用次数: 0

Abstract

At least 200 billion black soldier fly (Hermetia illucens) larvae (BSFL) are reared each year as food and feed, and the insect farming industry is projected to grow rapidly. Despite interest by consumers, producers, and legislators, no empirical evidence exists to guide producers in practicing humane - or instantaneous - slaughter for these novel mini-livestock. BSFL may be slaughtered via freezing, boiling, grinding, or other methods; however standard operating procedures (SOPs) and equipment design may affect the likelihood of instantaneous death using these methods. We tested how larval body size and particle size plate hole diameter affect the likelihood of instantaneous death for black soldier fly larvae that are slaughtered using a standard meat grinder. Larval body size did not affect the likelihood of instantaneous death for larvae that are 106-175 mg in mass. However, particle size plate hole diameter had a significant effect on the likelihood of instantaneous death, with only 54% of larvae experiencing an instant death when using the largest particle size plate (12-mm hole diameter) compared to 84% using the smallest particle size plate (2.55 mm). However, a higher percentage of instantaneous death (up to 99%) could be achieved by reducing the proportion of larvae that become stuck in the machine. We conclude by outlining specific recommendations to support producers in achieving a 99% instantaneous death rate through specific SOPs to be used with similarly designed machines. We also develop a protocol for producers that wish to test their own grinding SOPs.

磨碎作为屠宰养殖黑翅大实蝇(Hermetia illucens)幼虫的方法:实现瞬间灭杀的经验性建议。
每年至少有 2,000 亿只黑兵蝇(Hermetia illucens)幼虫(BSFL)被作为食物和饲料饲养,预计昆虫养殖业将迅速发展。尽管消费者、生产商和立法者都很感兴趣,但目前还没有经验证据来指导生产商对这些新型小型家畜进行人道屠宰或即时屠宰。BSFL 可以通过冷冻、煮沸、研磨或其他方法进行屠宰;但是,标准操作程序(SOP)和设备设计可能会影响使用这些方法瞬间死亡的可能性。我们测试了幼虫体型和粒径板孔直径如何影响使用标准绞肉机屠宰的黑实蝇幼虫瞬时死亡的可能性。幼虫体型不会影响质量为 106-175 毫克的幼虫瞬时死亡的可能性。然而,粒度板孔直径对瞬时死亡的可能性有显著影响,使用最大粒度板(孔直径为 12 毫米)时,只有 54% 的幼虫瞬时死亡,而使用最小粒度板(2.55 毫米)时,则有 84% 的幼虫瞬时死亡。然而,通过减少卡在机器中的幼虫比例,可以实现更高的瞬时死亡比例(高达 99%)。最后,我们概述了一些具体建议,以支持生产商通过与类似设计的机器配套使用的具体标准操作程序来实现 99% 的瞬时死亡率。我们还为希望测试自己研磨 SOP 的生产商制定了一份协议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Animal Welfare
Animal Welfare 农林科学-动物学
CiteScore
2.30
自引率
8.30%
发文量
43
审稿时长
18-36 weeks
期刊介绍: Animal Welfare is an international scientific and technical journal. It publishes the results of peer-reviewed scientific research, technical studies and reviews relating to the welfare of kept animals (eg on farms, in laboratories, zoos and as companions) and of those in the wild whose welfare is compromised by human activities. Papers on related ethical, social, and legal issues and interdisciplinary papers will also be considered for publication. Studies that are derivative or which replicate existing publications will only be considered if they are adequately justified. Papers will only be considered if they bring new knowledge (for research papers), new perspectives (for reviews) or develop new techniques. Papers must have the potential to improve animal welfare, and the way in which they achieve this, or are likely to do so, must be clearly specified in the section on Animal welfare implications.
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