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Implementation and process analysis of pilot scale multi-phase anaerobic fermentation and digestion of faecal sludge in Ghana

机译:加纳中规模多阶段厌氧发酵和粪便污泥消化的实施及过程分析

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摘要

>Background.  In Ghana, faecal sludge (FS) from on-site sanitation facilities is often discharged untreated into the environment, leading to significant insults to environmental and human health. Anaerobic digestion offers an attractive pathway for FS treatment with the concomitant production of energy in the form of methane. Another innovative option includes separating digestion into acidogenesis (production of volatile fatty acids (VFA)) and methanogenesis (production of methane), which could ultimately facilitate the production of an array of biofuels and biochemicals from the VFA. This work describes the development, implementation and modeling based analysis of a novel multiphase anaerobic fermentation-digestion process aimed at FS treatment in Kumasi, Ghana.  >Methods.  A pilot-scale anaerobic fermentation process was implemented at the Kumasi Metropolitan Assembly’s Oti Sanitary Landfill Site at Adanse Dompoase.  The process consisted of six 10 m 3 reactors in series, which were inoculated with bovine rumen and fed with fecal sludge obtained from public toilets.  The performance of the fermentation process was characterized in terms of both aqueous and gaseous variables representing the conversion of influent organic carbon to VFA as well as CH 4.  Using the operating data, the first-ever process model for FS fermentation and digestion was developed and calibrated, based on the activated sludge model framework. >Results and Conclusions.  This work represents one of the first systematic efforts at integrated FS characterization and process modeling to enable anaerobic fermentation and digestion of FS. It is shown that owing to pre-fermentation of FS in public septage holding tanks, one could employ significantly smaller digesters (lower capital costs) or increased loading capabilities for FS conversion to biogas or VFA. Further, using the first-ever calibrated process model for FS fermentation and digestion presented herein, we expect improved and more mechanistically informed development and application of different process designs and configurations for global FS management practice.
机译:>背景。 在加纳,现场卫生设施产生的粪便污泥(FS)通常未经处理就排放到环境中,从而严重危害环境和人类健康。厌氧消化为FS处理提供了一条有吸引力的途径,并伴随产生甲烷形式的能量。另一个创新的选择包括将消化分为酸生成(挥发性脂肪酸(VFA)的产生)和甲烷生成(甲烷的产生),这最终可以促进从VFA生产一系列生物燃料和生物化学物质。这项工作描述了针对加纳库玛西的FS处理的新型多相厌氧发酵-消化过程的开发,实施和基于模型的分析。 >方法。 在Adanse Dompoase的Kumasi大都会议会Oti卫生垃圾填埋场实施了中试规模的厌氧发酵过程。该过程由六个串联的10 m 3 反应器组成,这些反应器接种牛瘤胃,并喂入从公共厕所获得的粪便污泥。发酵过程的性能通过水和气态变量表征,这些变量代表了进水有机碳向VFA以及CH 4的转化。利用操作数据,开发了有史以来第一个FS发酵和消化过程模型,并且根据活性污泥模型框架进行校准。 >结果和结论。 这项工作代表了为实现FS厌氧发酵和消化而进行的FS集成表征和过程建模的第一个系统性工作。结果表明,由于在公共隔粪池中预先发酵了FS,人们可以使用更小的消化池(降低资本成本)或增加将FS转化为沼气或VFA的装载能力。此外,使用本文介绍的有史以来第一个用于FS发酵和消化的校准过程模型,我们期望针对全球FS管理实践,改进和更加机械化地开发和应用不同过程设计和配置。

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