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Improved Design of Anaerobic Digesters for Household Biogas Production in Indonesia: One Cow One Digester and One Hour of Cooking per Day

机译:印度尼西亚用于家庭沼气生产的厌氧消化器的改进设计:一头母牛一台消化器和每天一小时的烹饪时间

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摘要

A government-sponsored initiative in Indonesia to design and implement low-cost anaerobic digestion systems resulted in 21 full-scale systems with the aim to satisfy the cooking fuel demands of rural households owning at least one cow. The full-scale design consisted of a 0.3 m diameter PVC pipe, which was operated as a conventional plug-flow system. The system generated enough methane to power a cooking stove for ∼1 h. However, eventual clogging from solids accumulation inside the bioreactor proved to be a major drawback. Here, we improved the digester configuration to remedy clogging while maintaining system performance. Controlled experiments were performed using four 9-L laboratory-scale digesters operated at a temperature of 27 ± 1°C, a volatile solids loading rate of 2.0 g VS·L−1 ·day−1, and a 21-day hydraulic retention time. Two of the digesters were replicates of the original design (control digesters), while the other two digesters included internal mixing or effluent recycle (experimental digesters). The performance of each digester was compared based on methane yields, VS removal efficiencies, and steady-state solids concentrations during an operating period of 311 days. Statistical analyses revealed that internal mixing and effluent recycling resulted in reduced solids accumulation compared to the controls without diminishing methane yields or solids removal efficiencies.
机译:印度尼西亚政府资助的一项旨在设计和实施低成本厌氧消化系统的计划产生了21套全规模系统,旨在满足拥有至少一头奶牛的农村家庭的烹饪燃料需求。全面设计由直径为0.3μm的PVC管组成,该管作为常规的活塞流系统运行。该系统产生的甲烷足以为炊具供能约1 h。然而,事实证明,最终由于生物反应器内部的固体堆积而造成的堵塞是一个主要缺点。在这里,我们改进了摘要器的配置,以解决堵塞问题,同时保持系统性能。使用四个9L实验室规模的蒸煮器进行受控实验,其温度为27±1°C,挥发性固体负载率为2.0μgVS·L -1 ·day - 1 ,以及21天的水力停留时间。其中两个消化池是原始设计的复制品(对照消化池),而其他两个消化池包括内部混合或废水再循环(实验性消化池)。根据沼气产量,VS去除效率和311天操作期内的稳态固体浓度比较了每个消化池的性能。统计分析表明,与对照相比,内部混合和废水再循环可减少固体积聚,而不会降低甲烷产率或固体去除效率。

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