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首页> 外文期刊>Geosciences >Suitability of Boulder Marl and Marsh Clay as Sealing Substrates for Landfill Capping Systems—A Practical Comparison
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Suitability of Boulder Marl and Marsh Clay as Sealing Substrates for Landfill Capping Systems—A Practical Comparison

机译:Boulder Marl和Marsh Clay作为填埋场封顶系统的密封基材的适用性-实用比较

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The effects of compaction on soil shrinkage behavior need to be considered for engineering long-term durable mineral liners of landfill capping systems. For this purpose, a new three-dimensional laser scanning device was coupled with a mathematical-empirical model to simultaneously determine the shrinkage behavior of a boulder marl (bm) and a marsh clay (mc). Therefore, both materials were precompacted in 200 soil cores (100 cm 3 ) on the basis of the Proctor test results with five different degrees of compaction (bm1-bm5; mc1-mc5). Thus, the shrinkage behavior, intensity, and tendency were determined during a standardized drying experiment. The volume shrinkage index was used to describe the pore size dependent shrinkage tendency and was classified as high to very high (11.3–17.7%) for the marsh clay and medium (5.3–9.2%) for the boulder marl. Additionally, only the boulder marl (bm2), compacted up to 88% of Proctor density, could be installed as landfill bottom liner in drier locations if the local matric potentials did not exceed the previously highest observed drying range (i.e. values below ?300 hPa), to avoid crack formation and generation.
机译:对于填埋场封顶系统的工程长期耐久矿物衬里,需要考虑压实对土壤收缩行为的影响。为此,将新型的三维激光扫描设备与数学-经验模型相结合,以同时确定巨石灰泥(bm)和沼泽粘土(mc)的收缩行为。因此,根据Proctor测试结果,两种材料都在200个土芯(100 cm 3)中进行了预压实,压实度为5种不同(bm1-bm5; mc1-mc5)。因此,在标准化干燥实验中确定了收缩行为,强度和趋势。体积收缩指数用来描述孔隙尺寸随收缩的趋势,对沼泽黏土分类为高到非常高(11.3–17.7%),对于巨石灰泥被分类为中(5.3–9.2%)。此外,如果局部基质电势未超过先前观察到的最高干燥范围(即低于300hPa的值),则只有压实达Proctor密度88%的巨石灰泥(bm2)才能作为填埋场底部衬里。 ),以避免裂纹的形成和产生。

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