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Mesophilic and thermophilic anaerobic digestion of the liquid fraction of pressed biowaste for high energy yields recovery

机译:中压和高温厌氧消化压榨生物废物的液体部分,可回收高能量

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Deep separate collection of the organic fraction of municipal solid waste generates streams with relatively low content of inert material and high biodegradability. This material can be conveniently treated to recovery both energy and material by means of simplified technologies like screw-press and extruder: in this study, the liquid fraction generated from pressed biowaste from kerbside and door-to-door collection was anaerobically digested in both mesophilic and thermophilic conditions while for the solid fraction composting is suggested. Continuous operation results obtained both in mesophilic and thermophilic conditions indicated that the anaerobic digestion of pressed biowaste was viable at all operating conditions tested, with the greatest specific gas production of 0.92 m~3/kgVS_(fed) at an organic loading rate of 4.7 kgVS/m~3 d in thermophilic conditions. Based on calculations the authors found that the expected energy recovery is highly positive. The contents of heavy metals and pathogens of fed substrate and effluent digestates were analyzed, and results showed low levels (below End-of-Waste 2014 criteria limits) for both the parameters thus indicating the good quality of digestate and its possible use for agronomic purposes. Therefore, both energy and material were effectively recovered.
机译:对城市固体废物中的有机部分进行深度分离收集,会产生惰性物质含量相对较低且生物降解性较高的物流。可通过诸如螺旋压榨和挤出机之类的简化技术方便地处理该材料,以回收能量和材料:在这项研究中,将来自路边和门到门收集的压榨生物废物产生的液体馏分在中温厌氧条件下进行厌氧消化。建议使用高温条件进行固相堆肥。在中温和高温条件下获得的连续操作结果表明,在所有测试的操作条件下,压榨生物废物的厌氧消化都是可行的,在有机负载率为4.7 kgVS时,最大比气产生量为0.92 m〜3 / kgVS_(fed)。 / m〜3 d在高温条件下。根据计算,作者发现预期的能量回收率非常高。分析了进料底物和废水消化物中重金属和病原体的含量,结果显示两个参数均处于较低水平(低于2014年废物终止标准限值),因此表明消化物质量良好,可用于农艺用途。因此,能量和材料均得到有效回收。

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