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台湾地区垃圾填埋场生物反应器中渗滤液再循环和稳定的强化作用。

Enhanced leachate recirculation and stabilization in a pilot landfill bioreactor in Taiwan.

机构信息

Department of Environmental Engineering, National Chung Hsing University, Taichung City, Taiwan.

出版信息

Waste Manag Res. 2012 Aug;30(8):849-58. doi: 10.1177/0734242X12448515. Epub 2012 Jul 5.

Abstract

This study focused on the treatment of municipal solid waste (MSW) by modification and recirculation of leachate from a simulated landfill bioreactor. Hydrogen peroxide was added to recirculated leachate to maintain a constant oxygen concentration as the leachate passed again through the simulated landfill bioreactor. The results showed that leachate recirculation increased the dissolved oxygen concentration in the test landfill bioreactor. Over a period of 405 days, the biochemical oxygen demand (BOD(5)) in the collected leachate reduced by 99.7%, whereas the chemical oxygen demand (COD) reduced by 96%. The BOD(5)/COD ratio at the initial stage of 0.9 improved to 0.09 under aerobic conditions (leachate recirculation with added hydrogen peroxide) compared with the anaerobic test cell 0.11 (leachate recirculation alone without hydrogen peroxide). The pH increased from 5.5 to 7.6, and the degradation rate of organic carbon was 93%. Leachate recirculation brings about the biodegradation of MSW comparatively faster than the conventional landfill operation. The addition of a constant concentration of hydrogen peroxide was found to further increase the biodegradation. This increased biodegradation rate ultimately enables an MSW landfill to reach a stable state sooner and free up the land for further reuse.

摘要

本研究专注于通过修改和再循环模拟垃圾填埋生物反应器中的渗滤液来处理城市固体废物 (MSW)。向再循环的渗滤液中添加过氧化氢,以在渗滤液再次通过模拟垃圾填埋生物反应器时保持恒定的氧气浓度。结果表明,渗滤液再循环增加了测试垃圾填埋生物反应器中的溶解氧浓度。在 405 天的时间里,收集的渗滤液中的生化需氧量 (BOD(5)) 降低了 99.7%,而化学需氧量 (COD) 降低了 96%。在好氧条件下(添加过氧化氢的渗滤液再循环),BOD(5)/COD 比从初始的 0.9 提高到 0.09,而在厌氧测试池(没有添加过氧化氢的渗滤液再循环)中为 0.11。pH 值从 5.5 增加到 7.6,有机碳的降解率为 93%。与传统的垃圾填埋作业相比,渗滤液再循环使 MSW 的生物降解速度更快。发现添加恒定浓度的过氧化氢可进一步提高生物降解率。这种更高的生物降解率最终使 MSW 垃圾填埋场能够更快地达到稳定状态,并释放土地以供进一步再利用。

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