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首页> 外文期刊>Advances in civil engineering >Hydraulic Conductivity of Polymer-Amended Sand-Bentonite Backfills Permeated with Lead Nitrate Solutions
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Hydraulic Conductivity of Polymer-Amended Sand-Bentonite Backfills Permeated with Lead Nitrate Solutions

机译:硝酸铅溶液渗透的聚合物改性的砂土膨润土回填液的水力传导率

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摘要

Hydraulic conductivity of sand-bentonite (SB) backfills amended with polyanionic cellulose (PAC) to lead nitrate (Pb(NO3)2) solutions was evaluated experimentally in this study. PAC-amended sand-bentonite (PSB) backfills were synthesized by mixing sand-bentonite mixture with 0.3 to 1.2% dry PAC (by total dry mixture mass) and mixed with a certain weight of conventional bentonite (CB) slurry. The rheology properties including the filtrate loss, viscosity, density, and pH testes of slurry with various bentonite dosages were measured to determine the reasonable CB dosage of slurry. The slump tests on PSB backfills with various mass slurries were conducted to determine the corresponding water content of backfills with slump 125 ± 5?mm. Under the applied pressure 100?kPa, the hydraulic conductivity to Pb(NO3)2 solutions (kc) of PSB backfills with various PAC contents was evaluated based on the modified filter press (MFP) tests, to ascertain the optimum PAC content of PSB backfills when permeated with Pb(NO3)2 solutions. Index properties, including the specific gravity (Gs) and liquid limit () of PSB backfills, were measured after MFP tests. The MFP tests for PSB backfills were then conducted under various applied pressures to obtain the relationship between void ratio (e) and hydraulic conductivity of backfills. Finally, the flexible-wall permeability test (FWP test) under osmotic pressure 100?kPa was conducted to verify the effectiveness of the MFP test. The results indicate that slurry with 8% bentonite dosage is the reasonable choice in slurry wall construction. PSB has lower GS and higher compared to SB; increasing Pb concentration leads to GS of PSB increased and of PSB decreased. PSB with 0.6% PAC content is supposed as the optimum proportion of backfills when permeated with concentrated Pb(NO3)2 solution. PAC adsorbs large amount of bound water, which leads to higher water content () and e of PSB backfills, while lead ions (Pb) cause the diffuse double layer (DDL) of bentonite compressed and e of PSB backfills reduced. The kc of PSB-0.6 remains lower than 10?9?m/s and increases less than 10 times though the Pb concentration was up to 500?mM, demonstrating that the hydraulic performance of backfills can be improved effectively in Pb(NO3)2 solution by the additive PAC. The comparison results between k from MFP tests and FWP tests show that the MFP test is an effective and easy evaluation of hydraulic conductivity of backfills.
机译:在本研究中,通过实验评估了用聚阴离子纤维素(PAC)改性的硝酸钙(Pb(NO3)2)溶液对砂-膨润土(SB)回填的水力传导性。通过将膨润土混合物与0.3%至1.2%干燥PAC(按总干燥混合物质量计)混合,并与一定重量的常规膨润土(CB)浆液混合,可以合成PAC改性的膨润土(PSB)回填土。测量了各种膨润土用量的浆液的流变性,包括滤液的损失,粘度,密度和pH值,以确定合理的CB浆液剂量。对具有各种质量浆料的PSB回填进行坍落度测试,以确定坍落度为125±5?mm的回填的相应含水量。在施加的压力100?kPa下,基于改进的压滤机(MFP)测试,评估了具有各种PAC含量的PSB回填料对Pb(NO3)2溶液(kc)的水力传导率,以确定PSB回填料的最佳PAC含量当渗透到Pb(NO3)2溶液中时。在MFP测试之后,对PSB回填的比重(包括比重(Gs)和液体极限())进行了测量。然后在各种施加的压力下对PSB回填进行MFP测试,以获得空隙率(e)与回填的水力传导率之间的关系。最后,在渗透压100?kPa下进行了柔性壁渗透性测试(FWP测试),以验证MFP测试的有效性。结果表明,膨润土用量为8%的泥浆是泥浆墙施工的合理选择。 PSB的GS较低,而SB则较高。 Pb浓度的增加导致PSB的GS增加而PSB的GS减少。 PAC含量为0.6%的PSB被渗透到浓Pb(NO3)2溶液中时是最佳的回填比例。 PAC吸收大量的结合水,从而导致PSB回填中的水含量和e更高,而铅离子(Pb)导致膨润土的扩散双层(DDL)被压缩,而PSB回填中的e减少。 PSB-0.6的kc保持低于10?9?m / s,并且尽管Pb浓度高达500?mM却增加了不到10倍,表明在Pb(NO3)2中可以有效地改善回填物的水力性能。由添加剂PAC解决。 MFP测试与FWP测试的k值比较结果表明,MFP测试是对回填土的水力传导率的有效且简便的评估。

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