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高厨余垃圾含量 MSW 填埋场的生化、水文和力学行为:一项大规模实验的初步发现。

Biochemical, hydrological and mechanical behaviors of high food waste content MSW landfill: Preliminary findings from a large-scale experiment.

机构信息

MOE Key Laboratory of Soft Soils and Geoenvironmental Engineering, Zhejiang University, Yuhangtang Road 866#, Hangzhou 310058, China.

MOE Key Laboratory of Soft Soils and Geoenvironmental Engineering, Zhejiang University, Yuhangtang Road 866#, Hangzhou 310058, China; School of Civil Engineering and Architecture, Zhejiang Sci-Tech University, 2nd Street 928#, Hangzhou 310018, China.

出版信息

Waste Manag. 2017 May;63:27-40. doi: 10.1016/j.wasman.2017.03.008. Epub 2017 Mar 18.

Abstract

A large-scale bioreactor experiment lasting for 2years was presented in this paper to investigate the biochemical, hydrological and mechanical behaviors of high food waste content (HFWC) MSW. The experimental cell was 5m in length, 5m in width and 7.5m in depth, filled with unprocessed HFWC-MSWs of 91.3 tons. In the experiment, a surcharge loading of 33.4kPa was applied on waste surface, mature leachate refilling and warm leachate recirculation were performed to improve the degradation process. In this paper, the measurements of leachate quantity, leachate level, leachate biochemistry, gas composition, waste temperature, earth pressure and waste settlement were presented, and the following observations were made: (1) 26.8m leachate collected from the 91.3 tons HFWC-MSW within the first two months, being 96% of the total amount collected in one year. (2) The leachate level was 88% of the waste thickness after waste filling in a close system, and reached to over 100% after a surcharge loading of 33.4kPa. (3) The self-weight effective stress of waste was observed to be close to zero under the condition of high leachate mound. Leachate drawdown led to a gain of self-weight effective stress. (4) A rapid development of waste settlement took place within the first two months, with compression strains of 0.38-0.47, being over 95% of the strain recorded in one year. The compression strain tended to increase linearly with an increase of leachate draining rate during that two months.

摘要

本文介绍了一项为期 2 年的大规模生物反应器实验,旨在研究高食物垃圾含量(HFWC)MSW 的生化、水文和力学行为。实验单元长 5m、宽 5m、深 7.5m,填充了未处理的 91.3 吨 HFWC-MSW。在实验中,对废物表面施加了 33.4kPa 的超载,进行了成熟渗滤液的回灌和温暖渗滤液的再循环,以改善降解过程。本文介绍了渗滤液量、渗滤液水平、渗滤液生物化学、气体组成、废物温度、土压力和废物沉降的测量结果,并得出以下观察结果:(1)在头两个月内,从 91.3 吨 HFWC-MSW 中收集了 26.8m 的渗滤液,占一年内收集总量的 96%。(2)在封闭系统中废物填充后,渗滤液水平达到废物厚度的 88%,施加 33.4kPa 的超载后达到 100%以上。(3)在高渗滤液丘的情况下,废物的自重有效应力被观察到接近于零。渗滤液下降导致自重有效应力增加。(4)在头两个月内,废物沉降迅速发展,压缩应变 0.38-0.47,超过一年内记录的应变的 95%。在这两个月内,随着渗滤液排水率的增加,压缩应变趋于线性增加。

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