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首页> 外文期刊>Journal of Environmental Engineering >Methane Transport through Simulated Landfill Covers with a PE Geofilm or Ethylene-Vinyl Alcohol, LLDPE, or PVC Geomembrane
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Methane Transport through Simulated Landfill Covers with a PE Geofilm or Ethylene-Vinyl Alcohol, LLDPE, or PVC Geomembrane

机译:通过模拟垃圾填埋场覆盖PE Geofilm或乙烯 - 乙烯醇,LLDPE或PVC土工膜的甲烷运输

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摘要

Methane transport was evaluated using column tests for simulated interim cover profiles composed of soil only or soil over a geomembrane (GM). Tests were conducted with a co-extruded GM of ethylene-vinyl alcohol (EVOH), a linear low-density polyethylene (LLDPE) GM, a polyvinyl chloride (PVC) GM, or a polyethylene (PE) geofilm used in conjunction with one of three soils (clay, silt, or sand). Methane breakthrough from the simulated covers with LLDPE and PVC GMs (6-8days) was approximately three times more rapid relative to the cover with the EVOH GM (22days). Breakthrough from the simulated cover with a geofilm (2days) was ten times more rapid relative to the cover with the EVOH GM. Methane diffusion coefficients for the co-extruded EVOH GM obtained by inversion of the column data were 190-290 times lower than diffusion coefficients for the conventional GMs and the 0.1-mm PE geofilm. Soil type had minimal influence on methane transport through the interim covers relative to GM type. Predictions made with a numerical model parameterized using diffusion coefficients obtained from the column tests indicate that methane fluxes from interim landfill covers with an EVOH GM are approximately two orders of magnitude lower than methane fluxes from an interim cover with a conventional GM and six orders magnitude of lower than with soil alone. (C) 2017 American Society of Civil Engineers.
机译:使用柱试验评估甲烷转运,用于模拟临时覆盖型材,仅由土壤(GM)上的土壤或土壤组成。用共挤出的乙烯 - 乙烯醇(EVOH),线性低密度聚乙烯(LLDPE)GM,聚氯乙烯(PVC)GM,或与其中一个结合使用的聚乙烯(PE)GEOFILM进行试验。三种土壤(粘土,淤泥或沙子)。使用LLDPE和PVC GMS(6-8天)的模拟盖子的甲烷突破与EVOH GM(22天)的盖子相对于盖子大约快三倍。从模拟盖的突破与Geofilm(2天)相对于EVOH GM的盖子的速度快十倍。通过柱数据反转获得的共挤出EVOH GM的甲烷扩散系数比传统GMS和0.1mM PEOofilm的扩散系数低190-290倍。土壤型对甲烷转运的影响最小,相对于GM型通过中期盖。利用从列测试中获得的扩散系数参数化的数值模型进行的预测表明,来自临时垃圾填埋场覆盖物的甲烷通量与EVOH GM的亚甲烷通量大约比来自临时覆盖的甲烷通量低大约两个数量级,其具有传统的GM和六个订单幅度低于土单独的土壤。 (c)2017美国土木工程师协会。

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