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Effect of carbon-rich-waste addition as co-substrate on the performance and stability of anaerobic digestion of abattoir wastewater without agitation

机译:富含碳含量废料作为共衬底对厌氧废水无搅动的厌氧废水的性能和稳定性

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Multiple wastes' co-digestion is one of the alternatives for improved anaerobic digestion (AD) process of industrial and municipal wastes. The present work investigated the influence of fruit-vegetable solid waste (FVW) addition as a co-substrate on the performance of AD of abattoir wastewater (AWW). The co-digestion was done at a lab-scale-based experiment under mesophilic condition using a two-phase anaerobic sequencing batch reactor without agitation. It was tested at different mixing ratios (100%AWW; 75%AWW:25%FVW; 50%AWW:50%FVW; 25%AWW:75%FVW; 100%FVW) with the intention of looking for the best mixing ratio with the best performance. It was fed on a semi-continuous basis and operated for 18 days (d) total retention time (HRT): 3 days for the acidogenesis reactor and 15 days for methanogenesis reactor. The addition of FVW enhanced biogas yield and VS removal by 70.26% and 57.11%, respectively, at optimum mixing ratio. Moreover, to some extent improvement of AD process stability verified by the decreased TVFA:TAlk ratio and free ammonia nitrogen was observed upon progressive addition of FVW. Finally, this co-digestion process should further be studied for its performance at different HRTs with agitation.
机译:多次废物的共消化是改善工业和市政废物的厌氧消化(AD)过程的替代方案之一。目前的作品研究了水果植物固体废物(FVW)的影响作为对Abattoir废水的AD的性能(AWW)的同源底物的影响。使用两相厌氧测序批量反应器在不含搅拌的基于嗜合性条件下的基于Lab-Scal的实验中进行共消化。它以不同的混合比(100%AWW; 75%AWW:25%FVW; 50%AWW:50%FVW; 25%AWW:75%FVW; 100%FVW),目的是寻找最佳混合比率具有最佳性能。它以半连续喂养,并运行18天(d)总保留时间(HRT):酸性发生反应器的3天和甲烷化反应器15天。添加FVW增强的沼气产量,vs分别以最佳的混合比分别去除70.26%和57.11%。此外,在某种程度上,通过降低的TVFA验证的广告过程稳定性:在逐步添加FVW时观察到谈判比和游离氨氮。最后,将进一步研究这种共消化过程,以搅拌在不同的HRT下的性能。

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