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Performance of a Waste Cell in Cold Climate Operated as an Anaerobic Landfill Bioreactor

机译:冷气候中的废细胞的性能作为厌氧垃圾填埋场生物反应器

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A bioreactor landfill was constructed by the city of Calgary, Canada to sustainably manage solid waste. It includes initial operation of bioreactor landfill under anaerobic conditions to recover biogas, then under aerobic condition to convert waste into compost and finally mining compost for reuse. The bioreactor landfill is equipped with leachate recirculation systems to accelerate the decomposition of organic waste. Rapid decomposition leads to large quantities of landfill gas, which in turn results in rapid settlement. The landfill gas produced is collected and used for energy recovery. The methane present in landfill gas is a potent greenhouse gas and the use of landfill gas in energy recovery reduces the environmental impact of this gas. The gas extraction and leachate recirculation systems are quite expensive. Hence the bioreactor landfill requires efficient operation to maximize gas generation while having excessive settlement. This manuscript presents details of a full scale landfill bioreactor performance during the anaerobic phase of the sustainable landfill, including leachate generation and recirculation, and gas generation and monitoring of performance date including temperature and settlement.
机译:生物反应器垃圾填埋场由加拿大卡尔加里市建造,可持续管理固体垃圾。它包括生物反应器垃圾填埋场的初始运作,在厌氧条件下恢复沼气,然后在有氧条件下将废物转化为堆肥,最后挖掘堆肥进行重用。生物反应器垃圾填埋场配备渗滤液再循环系统,以加速有机废物的分解。快速分解导致大量的垃圾填埋气体,从而导致快速结算。产生的垃圾填埋气体被收集并用于能量回收。填埋气体中存在的甲烷是有效的温室气体,利用垃圾填埋气体在能量回收中降低了这种气体的环境影响。气体提取和渗滤液再循环系统非常昂贵。因此,生物反应器垃圾填埋场需要有效的操作来最大化气体产生,同时具有过度沉降。该稿件在可持续垃圾填埋场的厌氧阶段提供全面垃圾填埋生物反应器性能的细节,包括渗滤液产生和再循环,以及燃气产生和监测性能日,包括温度和沉降。

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