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Methanogenesis acceleration, of fresh landfilled* waste by micro-aeration

机译:通过微曝气加速新鲜填埋*废物的甲烷生成

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When municipal solid waste(MSW) with high content of food waste is landfilled, the rapid hydrolysis of food waste results in the imbalance of anaerobic metabolism in the landfill layer, indicated by accumulation of volatile fatty acids(VFA) and decrease of pH value. This occurrence could lead to long lag time before the initiation of methanogenesis and to the production of strong leachate. Simulated landfill columns with forced aeration, with natural ventilation, and with no aeration, were monitored regarding their organics degradation rate with leachate recirculation. Hydrolysis reactions produced strong leachate in the column with no aeration. With forced aeration, the produced VFA could be effectively degraded, leading to the reduction in COD of the leachate effluent since the week 3. The CH_4 in the landfill gas from the column with aeration rate of 0.39 m~3/(m~3-d) and frequency of twice/d, leachate recirculation rate of 12.2 mm/d and frequency of twice/d, could amount to 40 percent (v/v) after only 20 weeks. This amount had increased up to 50 percent afterward even with no aeration. Most of COD in the recirculated leachate was removed. Using natural ventilation, CH4 could also be produced and the COD of the leachate effluent be reduced after 10 weeks of operation. However, the persistent existence of oxygen in the landfill layer yielded instability in methanogenesis process.
机译:当食物垃圾含量高的城市生活垃圾(MSW)被填埋时,食物垃圾的快速水解导致垃圾填埋层中厌氧代谢的不平衡,这表现为挥发性脂肪酸(VFA)的积累和pH值的降低。这种情况可能会导致甲烷生成开始之前的滞后时间延长,并导致产生强渗滤液。通过渗滤液再循环,监测了带有强制通风,自然通风和无通风的模拟垃圾填埋场的有机物降解率。水解反应在没有通气的情况下在塔中产生了强烈的渗滤液。通过强制曝气,可以有效降解产生的VFA,从而从第3周开始降低渗滤液的COD。曝气速率为0.39 m〜3 /(m〜3- d)频率为2次/ d,渗滤液再循环率为12.2 mm / d,频率为2次/ d,仅20周即可达到40%(v / v)。此后即使没有充气也增加了50%。去除了循环渗滤液中的大部分COD。使用自然通风,也可以产生CH4,并在运行10周后降低渗滤液的COD。但是,垃圾填埋层中氧气的持续存在导致甲烷生成过程的不稳定。

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