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首页> 外文期刊>Infrastructures >In Situ Characterization of Municipal Solid Waste Using Membrane Interface Probe (MIP) and Hydraulic Profiling Tool (HPT) in an Active and Closed Landfill
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In Situ Characterization of Municipal Solid Waste Using Membrane Interface Probe (MIP) and Hydraulic Profiling Tool (HPT) in an Active and Closed Landfill

机译:使用膜界面探头(MIP)和液压分析工具(HPT)在主动和封闭式垃圾填埋场的原位特征

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摘要

Municipal solid waste (MSW) landfills near a metropolitan area are renewable energy resources to produce heat and methane that can generate electricity. However, it is difficult to use those sources productively because disposed MSW in landfills are spatially and temporally heterogeneous. Regarding the prediction of the sources, the analysis of in situ MSW properties is an alternative way to reduce the uncertainty and to understand complex processes undergoing in the landfill effectively. A hydraulic profiling tool (HPT) and membrane interface probe (MIP) test measures the continuous profile of MSW properties with depth, including hydraulic pressure, temperature, electrical conductivity (EC), and the relative concentration of methane at the field. In this study, we conducted a series of the tests to investigate the MSW characteristics of active and closed landfills. MIP results showed that the methane existed closer to right below the top cover in the active landfill and several peak concentrations at different layers of the closed landfill. As the depth and age of the waste increased, the hydraulic pressure increased for both landfills. The average EC results showed that the electrical conductivity decreased with the landfill age. The results of hydraulic properties, temperature, and EC obtained from active and closed sites could be used to estimate the waste age and help designing energy recovery systems.
机译:附近的大都市区城市固体废弃物(MSW)填埋场是可再生能源以产生热量和甲烷可产生电力。然而,这是难以用这些来源富有成效因为弃置于填埋场MSW是空间和时间上不均匀的。关于源的预测,原位MSW特性的分析是减少不确定性,并了解在填埋有效经历复杂的过程的替代方式。一种液压成形工具(HPT)和膜界面探针(MIP)测试测量MSW特性随深度,包括液压压力,温度,导电率(EC),和甲烷中的场的相对浓度的连续轮廓。在这项研究中,我们进行了一系列的测试,以研究主动和关闭的堆填区的垃圾特性。 MIP结果表明,甲烷在关闭填埋的不同层中存在更靠近右侧的顶盖下面在有源填埋和几个峰值浓度。随着废增加的深度和年龄,液压增加了两个垃圾填埋场。平均EC结果表明,电导率随垃圾填埋年龄增长而下降。液压性能,温度和EC从正在进行和已经完成的网站得到的结果可以用来估计废年龄和帮助设计能量回收系统。

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