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首页> 外文期刊>Journal of the Science of Food and Agriculture >Cultivation of black soldier fly larvae on almond byproducts: impacts of aeration and moisture on larvae growth and composition
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Cultivation of black soldier fly larvae on almond byproducts: impacts of aeration and moisture on larvae growth and composition

机译:耕作杏仁副产品的黑士兵飞幼虫的耕作:曝气与水分对幼虫生长和组成的影响

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BACKGROUND The increasing production of almonds worldwide has resulted in the significant generation of byproduct streams that require end uses. One potential use for byproducts is for cultivation of additional food sources including insects. Studies were performed to determine if black soldier fly larvae (Hermetia illucens L.) could be cultivated on almond byproducts (hulls and shells) and to examine the effect of aeration and moisture on larvae growth and hull composition. RESULTS CONCLUSIONS Increasing aeration from 0.04 to 0.36 mL min(-1) g dry weight(-1) tripled the harvest weight of larvae and increased larvae yield by a factor of five. Larvae calcium content increased by 18% with an increase in aeration from 0.04 to 0.95 mL min(-1) g dry weight(-1). Moisture content also affected harvest dry weight and yield; increasing moisture content from 480 g kg(-1)(wet basis) to 680 g kg(-1) increased harvest weight by 56% and yield by a factor of 2. Variables did not affect larvae methionine and cysteine content. Low moisture content and aeration rate yielded an environment that supported microbial consumption of hulls over larvae consumption and growth. The results demonstrate that almond hulls are a suitable feedstock for larvae production under controlled management of moisture content and aeration. (c) 2018 The Authors. Journal of The Science of Food and Agriculture published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.
机译:背景技术在全球范围内的宏伟生产导致了需要最终用途的大量副产品流。对副产品的一个潜在用途是用于培养包括昆虫的其他食物来源。进行研究以确定是否可以在杏仁副产品(船体和壳)上培养黑士兵飞幼虫(Hermetia Illucens L.),并检查幼虫生长和船体组合物对曝气和水分的影响。结果结论将曝气量增加0.04至0.36mL min(-1)克干重(-1)三倍的幼虫收获重量,并增加幼虫产量五倍。幼虫钙含量增加18%,曝气量增加0.04至0.95mL min(-1)g干重(-1)。水分含量也影响收获干重和产量;将水分含量从480g kg(-1)(湿的基础)增加到680g kg(-1)增加56%,并产量为2.变量不会影响幼虫和半胱氨酸含量。低水分含量和曝气速率产生了一种环保消耗幼虫消费和生长的环境。结果表明,血栓船体是幼虫生产的合适原料,用于在水分含量和通气的受控管理下生产。 (c)2018作者。 John Wiley&Sons Ltd在化学工业社会发表的粮食与农业科学学报。

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