阴离子聚合物增强gcl的导电性控制机制

IF 2.8 2区 工程技术 Q2 ENGINEERING, GEOLOGICAL
A. Norris, Joseph Scalia IV, C. Shackelford
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引用次数: 4

摘要

由阴离子聚合物组成的增强膨润土土工合成粘土衬垫(EB-GCLs)试样的水导率(k),其渗透浓度为500 mM NaCl和167 mM CaCl2,测定了聚合物性质和样品制备方法对k的影响,以及聚合物保留和洗脱在决定测量k时的相关作用。水凝胶形成测试的结果表明,聚丙烯酸水凝胶是在EB-GCL水化过程中测试的溶液中形成的。干喷法制备样品的方法导致多个eb - gcl的低k(≤5.5×10 - 11 m/s),保留的聚合物含量低(≤2.5%)。相比之下,使用干混合方法制备的eb - gcl的聚合物洗脱导致了集束间的渗透和k的增加。湿混合eb - gcl的聚合物保留率更高,但与低k没有直接关系。eb - gcl的长期k取决于几个因素,包括(i)水凝胶的形成,(ii)水凝胶的动员进入并阻塞最导电的孔隙,(iii)渗透力和水凝胶交联键强度的平衡,(iv)水凝胶形成的动力学,(v)聚合物在膨润土颗粒或颗粒聚集体表面的吸附。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanisms controlling the hydraulic conductivity of anionic polymer-enhanced GCLs
The hydraulic conductivity (k) of specimens of enhanced-bentonite geosynthetic clay liners (EB-GCLs) comprising anionic polymers permeated with concentrated salt solutions, i.e., 500 mM NaCl and 167 mM CaCl2, was measured to determine the effects of polymer properties and specimen preparation method on the k and the associated roles of polymer retention and elution in dictating the measured k. The results of hydrogel formation tests illustrated that poly(acrylic acid) hydrogel was formed in solutions tested during EB-GCL hydration. A dry sprinkling method of specimen preparation resulted in low k (≤ 5.5×10−11 m/s) in multiple EB-GCLs, with a low fraction (≤ 2.5 %) of retained polymer. In contrast, polymer elution from EB-GCLs prepared using a dry mixing method resulted in interaggregate seepage and an increase in k. Higher polymer retention occurred for the wet-mixed EB-GCLs, but did not directly correlate to low k. The long-term k of the EB-GCLs is dependent on several factors, including (i) formation of hydrogel, (ii) mobilization of hydrogel into and blocking of the most conductive pores, (iii) balance of seepage forces and hydrogel crosslink bond strength, (iv) kinetics of hydrogel formation, and (v) adsorption of polymer to the surfaces of the bentonite particles or aggregates of particles.
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来源期刊
Geosynthetics International
Geosynthetics International ENGINEERING, GEOLOGICAL-GEOSCIENCES, MULTIDISCIPLINARY
CiteScore
6.90
自引率
20.00%
发文量
91
审稿时长
>12 weeks
期刊介绍: An online only, rapid publication journal, Geosynthetics International – an official journal of the International Geosynthetics Society (IGS) – publishes the best information on current geosynthetics technology in research, design innovation, new materials and construction practice. Topics covered The whole of geosynthetic materials (including natural fibre products) such as research, behaviour, performance analysis, testing, design, construction methods, case histories and field experience. Geosynthetics International is received by all members of the IGS as part of their membership, and is published in e-only format six times a year.
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