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Simultaneous pretreatment and acidogenesis of solid food wastes by a rotational drum fermentation system with methanogenic leachate recirculation and andesite porphyry addition

机译:通过产甲烷浸出液再循环和安山岩斑岩添加的转鼓发酵系统同时对固体食物废物进行预处理和产酸

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摘要

A simultaneous pretreatment and acidogenesis process was developed by recirculating methanogenic leachate and adding andesite porphyry (WRS) powder to a rotational drum fermentation system to enhance the anaerobic digestion of solid food wastes. In the continuous operations, methanogenic leachate recirculation significantly increased hydrolysis rates and volatile solids (VS) degradation. The VS degradation ratio and the hydrolysis rate constant at a higher leachate recirculation ratio (2:1 weight ratio of methanogenic leachate to substrate) were increased by 2.1- and 1.4-fold, respectively, compared to those of the lower ratio (1:1 leachate recirculation ratio). A 10% (weight ratio of WRS to substrate solid content) WRS addition assisted the biochemical reactions in the process at the higher leachate recirculation ratio was employed. The hydrolysis rate constant and VS degradation were elevated by 54.7% and 63.9%, respectively, with the WRS addition. Besides, the WRS addition enhanced the VA formation and its conversion to biogas.
机译:通过循环产甲烷渗滤液并将安山岩斑岩(WRS)粉末添加到旋转鼓式发酵系统中以增强固体食物垃圾的厌氧消化,开发了一种同时预处理和产酸过程。在连续操作中,产甲烷渗滤液的再循环显着提高了水解速率和挥发性固体(VS)的降解。与较低比率(1:1)相比,在较高的渗滤液再循环比(产甲烷渗滤液与底物的重量比为2:1的比率)下,VS降解率和水解速率常数分别提高了2.1倍和1.4倍。渗滤液再循环率)。采用10%(WRS与底物固含量的重量比)的WRS添加以较高的沥出液再循环比辅助了该过程中的生化反应。加入WRS后,水解速率常数和VS降解分别提高了54.7%和63.9%。此外,加入WRS增强了VA的形成及其向沼气的转化。

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