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渗滤液再循环:通过地球物理技术进行含水量评估。

Leachate recirculation: moisture content assessment by means of a geophysical technique.

作者信息

Guérin Roger, Munoz Marie Laure, Aran Christophe, Laperrelle Claire, Hidra Mustapha, Drouart Eric, Grellier Solenne

机构信息

UMR 7619 Sisyphe, Pierre et Marie Curie (Paris 6) University, case 105, 4 place Jussieu, 75252 Paris Cedex 05, France.

出版信息

Waste Manag. 2004;24(8):785-94. doi: 10.1016/j.wasman.2004.03.010.

Abstract

Bioreactor technology is a waste treatment concept consisting in speeding up the biodegradation of landfilled waste by optimizing its moisture content through leachate recirculation. The measurement of variations in waste moisture content is critical in the design and control of bioreactors. Conventional methods such as direct physical sampling of waste reach their limits due to the interference with the waste matrix. This paper reviews geophysical measurements such as electrical direct current and electromagnetic slingram methods for measuring the electrical conductivity. Electrical conductivity is a property, which is linked to both moisture and temperature and can provide useful indications on the biodegradation environment in the waste mass. The study reviews three site experiments: a first experimentation shows the advantages (correlation between conductive anomaly and water seepage) but also the limits of geophysical interpretation; the two other sites allow the leachate recirculation to be tracked by studying the relative resistivity variation versus time from electrical 2D imaging. Even if some improvements are necessary to consider geophysical measurements as a real bioreactor monitoring tool, results are promising and could lead to the use of electrical 2D imaging in bioreactor designing.

摘要

生物反应器技术是一种废物处理概念,其通过渗滤液再循环优化填埋废物的水分含量,从而加速填埋废物的生物降解。测量废物水分含量的变化对于生物反应器的设计和控制至关重要。诸如对废物进行直接物理采样的传统方法,由于会干扰废物基质,因而存在局限性。本文综述了用于测量电导率的地球物理测量方法,如直流电法和电磁地质雷达法。电导率是一种与水分和温度都相关的特性,它可以为废物堆体中的生物降解环境提供有用的指示。该研究回顾了三个现场实验:第一个实验展示了地球物理解释的优势(导电异常与渗水之间的相关性)以及局限性;另外两个现场通过研究二维电成像中相对电阻率随时间的变化来追踪渗滤液再循环情况。尽管要将地球物理测量视为一种真正的生物反应器监测工具还需要一些改进,但结果很有前景,可能会促使二维电成像在生物反应器设计中得到应用。

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