不同来源的生物炭的特性以及在批处理条件下以不同剂量厌氧消化城市固体废物中经来源选择的有机部分的应用

Marta García-Prats, D. González, Antoni Sánchez
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引用次数: 0

摘要

厌氧消化(AD)是一种管理有机废物和回收有价值产品的广泛策略,但也面临着一些限制,而生物炭(BC)等添加剂可以克服这些限制。生物炭的生产决定了其特性,而特性又决定了其对厌氧消化性能和甲烷产量的影响。本研究采用多种技术(扫描电镜成像、BET、气相色谱、ICP 和傅立叶变换红外光谱)对三种生物炭(BC1、BC2 和 BC3)进行了表征。研究发现,生物炭的特性由原料和生产工艺决定。然后,使用三种剂量(1%、5% 和 10% w/w TS)将 BC 应用于城市固体废物(OFMSW)有机部分的厌氧消化(AD)。与对照组相比,BC3 的甲烷产量在剂量为 1%和 5%时有所增加(分别为 +15% 和 +30%),而 BC1 和 BC2 的甲烷产量在剂量为 1%时有所减少(分别为 -33% 和 -19%)。沼气产量的减少往往与甲烷含量的增加相伴。双向方差分析显示,生物炭剂量和类型的交互作用对甲烷产量有显著影响,这意味着不能仅凭剂量或类型来预测 BC 对厌氧消化(AD)的影响。在进行第二次基质饲喂时,没有观察到不同实验条件下甲烷产量的显著差异。此外,还讨论了正确评估该工艺经济可行性的关键方面。进一步的实验将有助于填补知识空白,并阐明生物碱特性和剂量对厌氧消化(AD)性能的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of biochars of different origin and application to the anaerobic digestion of source-selected organic fraction of municipal solid waste under batch conditions and at different dosages
Anaerobic digestion (AD) is a wide-spread strategy to manage organic waste and recover valuable products but faces some limitations that could be overcome with additives like biochar (BC). The production of BC defines its properties, which in turn determine its effect on AD performance and methane yield. In this study, three biochars (BC1, BC2 and BC3) were characterized using several techniques (SEM imaging, BET, GC, ICP and FTIR). The properties of BC were found to be defined both by the feedstock and the production process. The BC were then applied to the AD of the organic fraction of municipal solid waste (OFMSW) using three doses (1, 5% and 10% w/w TS). Compared to the control, there was an increase in methane production in BC3 at doses 1% and 5% (+15 and +30%, respectively) and a decrease in BC1 and BC2 at 1% (−33% and −19%, respectively). The decrease in biogas production was often paired with an increased methane content. A two-way ANOVA analysis showed that the interaction of biochar dose and type had a significant effect on methane yield, meaning that the effect of BC on AD cannot be predicted with the dose or the type alone. When a second substrate feeding was performed, no significant differences on methane production were observed among the experimental conditions. Key aspects to properly assess the economic viability of the process have been also discussed. Further experiments could help to fill knowledge gaps and clarify the roles of BC characteristics and dose on AD performance.
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