首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >High rate biomethanation technology for solid waste management and rapid biogas production: An emphasis on reactor design parameters
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High rate biomethanation technology for solid waste management and rapid biogas production: An emphasis on reactor design parameters

机译:用于固体废物管理和快速沼气生产的高速率生物甲烷化技术:强调反应器设计参数

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A high rate biomethanation digester was designed and fabricated to study its real field treatment efficiency and simultaneous biogas generation. The major design parameters like self mixing, delinking hydraulic retention time and solid retention time etc. were considered for efficient performance. It was operated with an organic loading rate (OLR) of 1.5 kg/m(3) d (1) with composite food waste for about one year. The maximum treatment efficiency achieved with respect to total solid (TS) reduction and volatile solids (VS) reduction was 94.5% and 89.7%, respectively. Annual mean biogas of about 0.16 m(3)/kg VS d (1) was observed with methane content varying from 56% to 60% (v/v). The high competence of high rate digester is attributed to its specific design features and intermittent mixing of the digester contents and also due to the hydrodynamic principles involved in its operation. (C) 2015 Elsevier Ltd. All rights reserved.
机译:设计并制造了一个高速率的生物甲烷化消化器,以研究其实际处理效率和同时产生沼气。为了提高性能,考虑了主要的设计参数,例如自混合,解链水力停留时间和固体停留时间等。它以1.5 kg / m(3)d(1)的有机负荷率(OLR)与复合食物垃圾一起运行约一年。相对于总固体(TS)减少和挥发性固体(VS)减少,获得的最大处理效率分别为94.5%和89.7%。观察到的年平均沼气约为0.16 m(3)/ kg V​​S d(1),甲烷含量从56%到60%(v / v)不等。高速率沼气池的高能力归因于其特定的设计特征和沼气池内容物的间歇性混合,还归因于其运行所涉及的流体力学原理。 (C)2015 Elsevier Ltd.保留所有权利。

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