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Solid-state anaerobic co-digestion of food waste and cardboard in a pilot-scale auto-fed continuous stirred tank reactor system

机译:固态的厌氧共同消化食品废物和纸板在试验规模的自动送搅拌罐式反应器系统中

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Increasing volume of Food waste (FW) and cardboard (CB) which are the two major fractions of municipal solid waste increases environmental concerns. This study evaluated the performance of a pilot-scale auto-fed continuous stirred tank reactor (CSTR) system for the solid-state anaerobic co digestion (ACoD) of acetic acid rich food waste (FW) and cardboard (CB). The objective to co-digest acids rich FW and CB originates from the fact that acetic acid can act as a pre-treatment agent. Can the frequency of feeding and feeding pattern assists the system to withstand an organic loading rate 4 g volatile solids (VS)/(L.d) without addition of any pH boosting chemicals? Four mixing ratios of 100:0, 80:20, 60:40, 50:50 (v/v %) of FW and CB on biogas yield and process stability at an OLR 4 g VS/(L.d) at a hydraulic residence time (HRT) of 40 d was investigated. Results revealed that the reactor R1 operated with FW:CB in the ratio of 100:0 achieved 76% biodegradability (the ratio of experimental to theoretical methane yield) while it was 39%, 32% and 22% for FW:CB ratios of 80:20, 60:40 and 50:50, respectively. This study concludes that exposing the CB to acetic acid-rich FW assisted the disintegration and depolymerization of CB without any pre-treatment step. Micro-feeding the reactor on an hourly basis assisted to overcome the susceptible failure of the system. The outcomes of this study provides new insight into the potential of implementing decentralized AD units for the treatment of FW and CB at source, which not only diverts waste from landfills but creates a revenue model through bioenergy generation and digestate sales.(c) 2021 Elsevier Ltd. All rights reserved.
机译:增加食物垃圾量(FW)和纸板(CB),这是市政固体废物的两个主要部分增加了环境问题。该研究评估了用于富含醋酸富含食物废物(FW)和纸板(CB)的固态厌氧CO消化(ACOD)的试验尺度自动送连续搅拌釜反应器(CSTR)系统的性能。富含酸富酸的目的来自乙酸可以作为预处理剂的事实起源。进料和进料模式的频率可以帮助系统承受有机加载速率> 4g挥发性固体(Vs)/(L.D),而无需添加任何pH升压化学品?四种混合比为100:0,80:20,60:40,50:50,50:50(v / v%)FW和Cb对液压住宅的OLR> 4g Vs /(LD)的沼气产量和过程稳定性调查了40 D的时间(HRT)。结果表明,用FW的反应器R1为达到100:0的比率,实现了76%的生物降解性(实验与理论甲烷产率的比率),而FW为39%,32%和22%:CB比例为80 :20,60:40和50:50分别。该研究得出结论,将CB暴露于富含醋酸的FW,辅助Cb的崩解和解聚,而无需任何预处理步骤。每小时微送反应器,辅助克服系统的敏感失效。本研究的结果提供了新的洞察力,进入用于处理FW和CB的分散的广告单位的潜力,这不仅将废物从垃圾填埋场转移,而且通过生物能源的生物生成和消化销售产生收入模型。(c)2021 Elsevier 2021有限公司保留所有权利。

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