黑兵蝇共处理粪便与厨余:工艺性能评价

Valary Oyoo, J. Riungu, J. Kirimi, Prasanta Dey, Rosemary M. Matheka
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引用次数: 0

摘要

通过黑兵蝇(Hermetia illucens)技术处理有机物提供了有前途的粪便污泥管理(FSM)和可持续的卫生选择。利用黑兵蝇(BSF)技术对粪便进行了固化处理;然而,在基材共处理配给率方面的知识不足,无法扩大现有的BSFL系统,以实现最佳的废物转化。在本研究中,在实验室规模的条件下,对粪便和餐厨垃圾共处理过程中的BSF工艺性能进行了评估。以新鲜粪便与厨余垃圾(FM: KW)的比例配制BSF幼虫取食基质;1:0, 4:1, 2:1, 1:1,和0:1。实验在矩形塑料容器(26*13*11cm)中进行。在每种混合比例下,用5日龄BSF幼虫5g处理1000g饲料基质。每隔三天从每个处理中随机抽取100只幼虫(一式三份),监测整个处理过程中幼虫的体重增加情况。监测幼虫日龄至50%化蛹量、平均蛹产量、废物减减率(WR)、生物转化率(BR)和饲料转化率(FCR)。结果表明:底物以1:1混合效果最佳;WR(90.56%)、减重指数(WRI)(5.66)、BR(14.56)和总蛹前产量(72.78g)均在较短的发育时间(16 d)内达到较高水平。本研究证实了BSFL在与厨余垃圾共处理时充分转化粪便基质,促进循环经济的性能功效。因此,它说明了共同处理战略有潜力促进和加强可持续的粪便废物管理,以供未来应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Co-treatment of fecal matter with kitchen waste using black soldier fly: process performance evaluation
Organic matter processing through Hermetia illucens (black soldier fly) technology offers promising fecal sludge management (FSM) and sustainable sanitation option. Fecal matter has been valorized using black soldier fly (BSF) technology; however, there is insufficient knowledge in substrate co-treatment rationing rates to scale up the extant BSFL systems for optimum waste conversion. In this study, an evaluation of BSF process performance during co-treatment of fecal matter and kitchen waste was carried out under laboratory-scale conditions. BSF larvae feeding substrates were formulated using fresh fecal matter and kitchen waste (FM: KW) in the ratios; 1:0, 4:1, 2:1, 1:1, and 0:1. The experiments were set out in rectangular plastic containers (26*13*11cm). Under each mixing ratio, 1000g of the feed substrate was treated utilizing 5g of 5-day old BSF larvae. One hundred larvae were randomly picked at three-day intervals from each treatment (in triplicate) to monitor the larval weight gain across the treatment process. Larval days to 50% pupation, mean pupal yield, waste reduction rate (WR), bioconversion rates (BR), and feed conversion rates (FCR) were monitored for the process performance. The results showed that substrate mixed 1:1 attained the best measures; WR (90.56%), a high weight reduction index (WRI) (5.66), high BR (14.56), and a high overall pre-pupal yield (72.78g) within a shorter development time (16 days). This study affirms the performance efficacy of BSFL to sufficiently convert fecal substrates when co-treated with kitchen waste, promoting a circular economy. It, therefore, illustrates that a co-treatment strategy has the potential to boost and enhance sustainable fecal waste management for future applications.
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