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Biogas production from anaerobic co-digestion of cow manure with kitchen waste and Water Hyacinth

机译:牛粪与厨房垃圾和水葫芦厌氧共消化产生沼气

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The prime objective of this paper was to analyze and compare biogas production from various sources of waste material. The Renewable Energy Policy envisions that 5% of total energy production needs to be achieved by 2015 and 10% by 2020. This work focuses on the comparative study of the production of biogas through anaerobic co-digestion utilizing abandoned resources of biomass. Materials under study were Cow manure, Sewage Sludge, Kitchen Waste & Water Hyacinth. Experiments were conducted under mesophilic condition (37 degrees C) with 1.5 wt%NaOH to obtain the desirable pH. The loading ratio of each batch was maintained as 1:1 on both experiments. Kitchen Waste and Cow Manure showed promising results till about the 120th hour following plummeting production of biogas. Total production for 1 L batch of Water Hyacinth, Cow Manure & Sewage Sludge was 812 ml with 65%Methane, 14%CO and 21% other gases obtained after 800 h, while Kitchen Waste & Cow Manure provided 335 ml consisting of 60% Methane, 18%CO & 22%other gases within the same time frame. Results indicated that addition of Sewage Sludge with the widely used Cow Manure can lead to accelerated reaction, increased production and an improved methane content. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文的主要目的是分析和比较各种废料来源产生的沼气。 《可再生能源政策》设想到2015年要实现总能源生产的5%,到2020年要达到10%。这项工作的重点是通过利用废弃的生物质资源进行厌氧共消化来比较沼气的生产。研究的材料是牛粪,污水污泥,厨房垃圾和水葫芦。在中温条件下(37摄氏度)用1.5 wt%NaOH进行实验,以获得所需的pH值。在两个实验中,每批的负载率保持为1:1。在沼气产量暴跌后的大约第120小时,厨房垃圾和牛粪肥显示出了可喜的结果。 1批水葫芦,牛粪和污水污泥的总产量为812毫升,含800%的甲烷,65%的甲烷,14%的CO和21%的其他气体,而800小时后获得的厨余和牛粪提供了335毫升的60%甲烷,在同一时间范围内18%CO和22%其他气体。结果表明,向污水污泥中添加广泛使用的牛粪肥可加快反应速度,增加产量并提高甲烷含量。 (C)2017 Elsevier Ltd.保留所有权利。

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