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外加热量对中试规模生物反应器填埋场性能的影响。

Influence of supplemental heat addition on performance of pilot-scale bioreactor landfills.

机构信息

Department of Civil Engineering, University of Ottawa, 161 Louis Pasteur, Ottawa, ON, K1N 6N5, Canada,

出版信息

Bioprocess Biosyst Eng. 2014 Feb;37(2):301-10. doi: 10.1007/s00449-013-0997-0. Epub 2013 Jun 19.

Abstract

Implementation of supplemental heat addition as a means of improving bioreactor landfill performance was investigated. The experimental work was conducted with two pilot-scale bioreactor setups (control cell and heated cell) operated for 280 days. Supplemental heat was introduced by recirculating leachate heated up to 35 °C compared to the control which used similar quantities of leachate at room temperature (21 ± 1 °C). The temporal and spatial effects of recirculating heated leachate on the landfill internal temperature were determined, and performance was assessed in terms of leachate parameters and biogas production. Recirculation of heated leachate helped establish balanced anaerobic microbial consortia that led to earlier (70 days) and greater (1.4-fold) organic matter degradation rates, as well as threefold higher methane production compared to the non-heated control. Despite the significant enhancements in performance resulting from supplemental heat addition, heated leachate recirculation did not significantly impact waste temperatures, and the effects were mainly restricted to short periods after recirculation and mostly at the upper layers of the waste. These findings suggest that improvements in bioreactor landfill performance may be achieved without increasing the temperature of the whole in-place waste, but rather more economically by raising the temperature at the leachate/waste interface which is also exposed to the maximum moisture levels within the waste matrix.

摘要

本研究旨在探索添加补充热量以改善生物反应器垃圾填埋场性能的方法。采用两个中试规模的生物反应器装置(对照池和加热池)进行了实验工作,运行时间为 280 天。通过循环利用温度升高至 35°C 的渗滤液(相比之下,对照池使用的是室温下相似数量的渗滤液(21±1°C))来添加补充热量。确定了循环利用加热渗滤液对垃圾填埋场内温度的时空影响,并根据渗滤液参数和沼气产量评估了性能。循环利用加热渗滤液有助于建立平衡的厌氧微生物群落,从而导致更早(70 天)和更大(1.4 倍)的有机物降解率,以及比未加热对照池高出三倍的甲烷产量。尽管添加补充热量可显著提高性能,但加热渗滤液的循环利用并没有显著影响废物温度,其影响主要局限于循环利用后的短时间内,并且主要集中在废物的上层。这些发现表明,改善生物反应器垃圾填埋场的性能可能不需要提高整个原位废物的温度,而是通过提高渗滤液/废物界面的温度来实现,因为该界面也暴露在废物基质中的最大水分水平下。

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