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Advancement in biogas production from the solid waste by optimizing the anaerobic digestion

机译:通过优化厌氧消化,从固体废物生产沼气生产的进步

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摘要

The crisis of fossil fuel and their negative impact on the environment has caused concern among the scientific communities leading them to look around for renewable sources of energy. This review has emphasized the efficient utilization of organic municipal solid waste as well as agriculture waste in an anaerobic digester for the production of biogas as a sustainable renewable energy. Recent advances in biogas production along with previous research work have been discussed to offer a comprehensive synopsis of the accumulated knowledge. This review also elucidates about the design of an anaerobic digester, the prospect of anaerobic digestion and opportunity in new advances in technology. Biogas is one of the most accepted sustainable renewable energy. The characterization, elimination of contaminants, pretreatment, anaerobic digestion in optimum condition and utilization of energy crops enhanced the efficiency of an anaerobic digester. Pretreatment of segregated organic solid waste increased its putrescibility and further biogas production. The optimized parameters in this review were pH, temperature, loading rate, C/N ratio and solid/liquid ratio of the feedstock. The flow rate of the feedstock was optimized according to the available volume of the digester, residence time and the characteristics of the feedstock. The design of an anaerobic digester should be preferably cylindrical in shape, with a diameter ranging from 6 to 40 m, the depth ranging from 7.5 to 15 m and the conical floor having a slope around 15%. A comprehensive reform in technical, economic, and social policies is essential to accomplish a sustainable energy system considering biogas as a future renewable energy. The flowsheet of the biogas and methanol production has been given in Fig. 1.
机译:化石燃料的危机及其对环境的负面影响引起了科学社区的关注,导致他们四处寻找可再生能源的来源。这篇综述强调了有机市政固体废物以及厌氧消化池中农业废物的有效利用,用于生产沼气作为可持续的可再生能源。已经讨论了沼气生产的最新进展以及先前的研究工作,以提供累积知识的全面概要。这篇评论还阐明了厌氧消化酯的设计,这是技术新进步的厌氧消化和机会的前景。沼气是最受欢迎的可持续可再生能源之一。在最佳条件下的特征,消除污染物,预处理,厌氧消化和能量作物的利用增强了厌氧消化酯的效率。隔离的有机固体废物的预处理增加了其腐烂性和进一步的沼气产生。本综述中的优化参数是原料的pH,温度,加载速率,c/n比和固体/液体比。根据消化器的可用体积,停留时间和原料的特性,优化了原料的流速。厌氧消化酯的设计优选为圆柱形,直径为6至40 m,深度范围为7.5至15 m,并且圆锥形地板的斜率约为15%。在技​​术,经济和社会政策方面进行的全面改革对于建立沼气作为未来可再生能源的可持续能源系统至关重要。图1给出了沼气和甲醇生产的流程表。

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