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首页> 外文期刊>Journal of Sandwich Structures and Materials >Improving hydraulic performance and durability of sandwich clay liner using super-absorbent polymer
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Improving hydraulic performance and durability of sandwich clay liner using super-absorbent polymer

机译:使用超吸收聚合物提高夹心粘土衬里的液压性能和耐久性

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摘要

The hydraulic performance and durability of geosynthetic clay liner containing various amounts of sodium polyacrylate polymer are experimentally studied. Sodium polyacrylate, generally known as a super-absorbent polymer, is a polymeric material with a potential of high water absorbance due to its chemical structure. In this study, sodium polyacrylate powder is used as a partial replacement of bentonite as much as 3%, 5% and 7% by the weight of bentonite. For comparison, the hydraulic performance of geosynthetic clay liner without super-absorbent polymer is also experimented. Atterberg limits, free swell index, hydraulic conductivity, self-healing capacity and wet/dry cycle tests are conducted in order to assess how super-absorbent polymer can affect the performance of geosynthetic clay liners as landfill liners and covers. The results show that the hydraulic conductivity and self-healing capacity of geosynthetic clay liner are relatively enhanced by super-absorbent polymer inclusion. The results of wet/dry cycle test show that using super-absorbent polymer as a partial replacement of bentonite considerably improves the durability of geosynthetic clay liner against wet/dry cycles. Geosynthetic clay liner containing super-absorbent polymer shows a negligible increase in hydraulic conductivity while there is a noticeable increase in hydraulic conductivity of specimen without super-absorbent polymer after 10 cycles of wetting and drying.
机译:实验研究了含有各种量的聚丙烯酸钠聚合物的地质合成粘土衬里的液压性能和耐久性。通常称为超吸收性聚合物的聚丙烯酸钠是聚合物材料,其由于其化学结构而具有高吸水性的潜力。在该研究中,聚丙烯酸钠粉末用作膨润土重量的膨润土的部分替代为膨润土,5%和7%。为了比较,没有超吸收性聚合物的地质合成粘土衬里的水力性能也是实验的。采食剂限制,自由膨胀指数,液压导电,自愈能力和湿润/干循环试验,以评估超吸收性的聚合物如何影响土工合成粘土衬垫作为垃圾填埋场和盖子的性能。结果表明,通过超吸收性聚合物夹杂物相对增强了地质合成粘土衬里的液压导电性和自愈合能力。湿润/干循环试验结果表明,使用超吸收性聚合物作为膨润土的部分替代的结果显着提高了土工合成粘土衬里对湿/干循环的耐久性。含有超吸收性聚合物的地质合成粘土衬里显示出液压导电性的可忽略不计的液压导电率,而在10次润湿和干燥后没有超吸收性聚合物的样品的液压导电性显着增加。

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