Department of Energy and Technology, Swedish University of Agricultural Sciences, Box 7032, 75007 Uppsala, Sweden.
Department of Energy and Technology, Swedish University of Agricultural Sciences, Box 7032, 75007 Uppsala, Sweden.
Waste Manag. 2022 Jan 1;137:121-127. doi: 10.1016/j.wasman.2021.10.033. Epub 2021 Nov 6.
Black soldier fly larvae (BSFL) composting is a treatment in which biodegradable food waste is converted into animal-feed protein and organic fertiliser. BSFL composting has greatest potential for mixed food waste, but under European Union regulations only plant-based waste is permitted as feed for larvae. Biomass conversion efficiency (BCE) in BSFL composting is lower for plant-based waste than for mixed food waste. One way of improving BCE for plant-based waste is to add enzymes to make the waste more available to the larvae, but enzyme pre-treatment is not commonly applied prior to BSFL composting. Therefore this study examined the impact of enzyme pre-treatment duration on process efficiency in BSFL composting of lettuce-cabbage waste pre-treated with enzymes for 0-4 days. The results showed that total solids (TS) in larvae decreased with longer enzyme pre-treatment. Direct addition of enzymes at the start of BSFL treatment (0 day pre-treatment) resulted in 22% higher BCE on a volatile solids (VS) basis compared with the control, while longer pre-treatment did not improve BCE further. Much of the VS was respired in the 0-day pre-treatment, resulting in lower mass of residues at the end of treatment. Longer pre-treatment increased microbial respiration, suggesting that the microbial community consumed more easily available carbohydrates during the pre-treatment step, which counteracted the purpose of enzyme pre-treatment, i.e. increasing BCE during BSFL composting.
黑水虻幼虫(BSFL)堆肥是一种处理方法,可将可生物降解的食物垃圾转化为动物饲料蛋白和有机肥料。BSFL 堆肥最适合混合食物垃圾,但根据欧盟法规,只允许植物性废物作为幼虫的饲料。与混合食物垃圾相比,植物性废物在 BSFL 堆肥中的生物质转化效率(BCE)较低。提高 BCE 用于植物性废物的一种方法是添加酶,使废物更易于幼虫利用,但在 BSFL 堆肥之前,通常不进行酶预处理。因此,本研究考察了酶预处理时间对经酶预处理 0-4 天的生菜-白菜废物进行 BSFL 堆肥过程效率的影响。结果表明,随着酶预处理时间的延长,幼虫中的总固体(TS)减少。与对照相比,在 BSFL 处理开始时(0 天预处理)直接添加酶可使基于挥发性固体(VS)的 BCE 提高 22%,而更长的预处理时间并不能进一步提高 BCE。在 0 天预处理中,大部分 VS 被呼吸,导致处理结束时残留的质量较低。较长的预处理时间增加了微生物呼吸,表明微生物群落在预处理阶段消耗了更多易利用的碳水化合物,这抵消了酶预处理的目的,即在 BSFL 堆肥过程中提高 BCE。