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首页> 外文期刊>Journal of material cycles and waste management >Impacts of temperature and liquid/solid ratio on anaerobic degradation of municipal solid waste: an emission investigation of landfill simulation reactors
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Impacts of temperature and liquid/solid ratio on anaerobic degradation of municipal solid waste: an emission investigation of landfill simulation reactors

机译:温度和液/固比对城市固体废物厌氧降解的影响:垃圾填埋模拟反应堆的排放调查

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摘要

Management of landfill emissions, i.e., landfill gas (LFG) and landfill leachate, is an important and resource-intensive task. A long-term demonstration pilot, consisting of landfill simulation reactors (LSRs), was used to study the impact of temperature and the applied liquid/solid ratio (L/S ratio) on landfill emissions, characteristics, and trends. This pilot has already run for more than 1000 days since the end of 2004 and will continue to run for some time. The degradation of waste at different temperatures has impacts on the overall degradation degree and on the length of post-closure care required. Higher temperatures accelerated the degradation, but also resulted in higher leachate chemical oxygen demand (COD) and ammonia concentrations, which prolong the aftercare period. Meanwhile, at a given stabilization degree [e.g., 70 1 gas/kg waste (dry)], the total leached nitrogen under psychrophilic conditions was 3.5 times that under mesophilic/thermophilic conditions, which resulted in a higher required effort for leachate treatment. The impact of L/S ratio or simulated annual L/S rates was also evaluated. The results show the significance of efficiently obtaining the targeted L/S ratio in order to achieve low landfill emission potential.
机译:垃圾填埋物的排放,即垃圾填埋气(LFG)和垃圾渗滤液的管理是一项重要且资源密集的任务。由填埋场模拟反应堆(LSR)组成的长期示范飞行员用于研究温度和所应用的液/固比(L / S比)对垃圾填埋场排放,特征和趋势的影响。自2004年底以来,该试运行已经运行了1000多天,并将继续运行一段时间。废物在不同温度下的降解会影响整体降解程度以及所需的封闭后护理时间。较高的温度加速了降解,但同时也导致了较高的渗滤液化学需氧量(COD)和氨浓度,从而延长了后期维护时间。同时,在给定的稳定度[例如70 1气体/ kg废物(干燥)]下,在嗜温条件下的总浸出氮为中温/嗜温条件下的3.5倍,这导致沥滤液处理所需的努力更高。还评估了L / S比率或模拟的年度L / S比率的影响。结果表明有效获得目标L / S比以实现低填埋场排放潜力的重要性。

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