首页> 外文期刊>Environmental Technology >ESTIMATION ON THE SELF RECOVERY BEHAVIOR OF LOW-CONDUCTIVITY LAYER IN LANDFILL FINAL COVER BY LABORATORY CONDUCTIVITY TESTS
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ESTIMATION ON THE SELF RECOVERY BEHAVIOR OF LOW-CONDUCTIVITY LAYER IN LANDFILL FINAL COVER BY LABORATORY CONDUCTIVITY TESTS

机译:实验室电导率测试估算填埋场最终覆盖层低电导率层的自恢复行为

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This study examined the application of a Self Recovering Sustainable Layer (SRSL) as a landfill final cover. Low-conductivity layers in landfill covers are known to have problems associated with cracking as a result of the differential settlement or climatic changes. A SRSL is defined as a layer with chemical properties that reduces the increased hydraulic conductivity resulting from cracking by forming low-conductivity precipitates of chemicals contained in the layer. In this study, the formation of precipitates was confirmed using a batch test, spectroscopic analysis and mineralogical speciation tests. The possibility of secondary contamination due to the chemicals used for recovery was evaluated using a leaching test. A laboratory conductivity test was performed on a single layer composed of each chemical as well as on a 2-layer system. The recovery performance of the SRSL was estimated by developing artificial cracks in the specimens and observing the change in hydraulic conductivity as a function of time. In the laboratory conductivity test, the hydraulic conductivity of a 2-layer system as well as those of the individual layers that comprise the 2-layer system was estimated. In addition sodium ash was found to enhance the reduction in conductivity. A significant increase in conductivity was observed after the cracks developed but this was reduced with time, which indicated that the SRSL has a proper recovering performance. In conclusion, a SRSL can be used as a landfill final cover that could maintain low-conductivity even after the serious damages due to settlement.
机译:这项研究检查了自恢复可持续层(SRSL)作为垃圾掩埋场最终覆盖层的应用。已知填埋场覆盖物中的低电导率层会由于差异沉降或气候变化而产生与裂纹相关的问题。 SRSL被定义为具有化学性质的层,该层通过形成包含在该层中的化学物质的低电导性沉淀物来降低由裂缝导致的增加的水力传导性。在这项研究中,使用分批测试,光谱分析和矿物形态学测试确认了沉淀物的形成。使用浸出试验评估了由于用于回收的化学物质而造成二次污染的可能性。在由每种化学物质组成的单层以及2层系统上进行了实验室电导率测试。 SRSL的恢复性能是通过在试样中形成人工裂缝并观察水力传导率随时间的变化来估算的。在实验室电导率测试中,估算了2层系统以及构成2层系统的各层的水力传导率。另外,发现钠灰分提高了电导率的降低。出现裂纹后,电导率显着增加,但随时间降低,这表明SRSL具有适当的恢复性能。总之,SRSL可用作填埋场的最终覆盖物,即使在由于沉降而造成的严重破坏后,也可以保持低电导率。

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