Chemical Compatibility of Model Soil-Bentonite Backfill Containing Multiswellable Bentonite

被引:92
|
作者
Malusis, Michael A. [1 ]
McKeehan, Matthew D. [1 ,2 ]
机构
[1] Bucknell Univ, Dept Civil & Environm Engn, Lewisburg, PA 17837 USA
[2] USA, Corps Engineers, Ft Carson, CO 80913 USA
关键词
Backfill; Bentonite; Chemical Compatibility; Cutoff wall; Hydraulic Conductivity; Vertical barrier; HYDRAULIC CONDUCTIVITY; CLAY; COMPRESSIBILITY; PERFORMANCE;
D O I
10.1061/(ASCE)GT.1943-5606.0000729
中图分类号
P5 [地质学];
学科分类号
0709 ; 081803 ;
摘要
The objective of this study was to evaluate the chemical compatibility of model soil-bentonite backfills containing multiswellable bentonite (MSB) relative to that of similar backfills containing untreated sodium (Na) bentonite or a commercially available, contaminant-resistant bentonite (SW101). Flexible-wall tests were conducted on consolidated backfill specimens (effective stress = 34.5 kPa) containing clean sand and 4.5-5.7% bentonite (by dry weight) using tap water and calcium chloride (CaCl2) solutions (10-1,000 mM) as the permeant liquids. Final values of hydraulic conductivity (k) and intrinsic permeability (K) to the CaCl2 solutions were determined after achieving both short-term termination criteria as defined by ASTM D5084 and long-term termination criteria for chemical equilibrium between the influent and effluent. Specimens containing MSB exhibited the smallest increases in k and K upon permeation with a given CaCl2 solution relative to specimens containing untreated Na bentonite or SW101. However, none of the specimens exhibited more than a fivefold increase in k or K, regardless of CaCl2 concentration or bentonite type. Final k values for specimens permeated with a given CaCl2 solution after permeation with tap water were similar to those for specimens of the same backfill permeated with only the CaCl2 solution, indicating that the order of permeation had no significant effect on k. Also, final k values for all specimens were within a factor of two of the k measured after achieving the ASTM D5084 termination criteria. Thus, use of only the ASTM D5084 criteria would have been sufficient to obtain reasonable estimates of long-term hydraulic conductivity for the specimens in this study. DOI: 10.1061/(ASCE)GT.1943-5606.0000729. (C) 2013 American Society of Civil Engineers.
引用
收藏
页码:189 / 198
页数:10
相关论文
共 50 条
  • [21] SOIL-BENTONITE SLURRY TRENCH CUTOFFS
    DAPPOLONIA, DJ
    JOURNAL OF THE GEOTECHNICAL ENGINEERING DIVISION-ASCE, 1980, 106 (04): : 399 - 417
  • [22] Hydraulic conductivity of soil-bentonite backfill comprised of SHMP-amended Ca-bentonite to Cr(VI)-impacted groundwater
    Yang, Yuling
    Reddy, Krishna R.
    Zhan, Hongbin
    Fan, Ridong
    Liu, Songyu
    Xue, Qiang
    Du, Yanjun
    JOURNAL OF CONTAMINANT HYDROLOGY, 2021, 242
  • [23] Assessment of membrane and diffusion behavior of soil-bentonite slurry trench wall backfill consisted of sand and Xanthan gum amended bentonite
    Ni, Hao
    Shen, Sheng-Qiang
    Fu, Xian-Lei
    Wang, Chang-Ming
    Du, Yan-Jun
    JOURNAL OF CLEANER PRODUCTION, 2022, 365
  • [24] Consolidation and hydraulic conductivity of nine model soil-bentonite backfills
    Yeo, SS
    Shackelford, CD
    Evans, JC
    JOURNAL OF GEOTECHNICAL AND GEOENVIRONMENTAL ENGINEERING, 2005, 131 (10) : 1189 - 1198
  • [25] HYDRAULIC CHARACTERISTICS OF MODEL SOIL-BENTONITE SLURRY CUTOFF WALLS
    MCCANDLESS, RM
    BODOCSI, A
    PROCEEDINGS OS THE 5TH NATIONAL CONFERENCE ON HAZARDOUS WASTES AND HAZARDOUS MATERIALS - HWHM 88, 1988, : 198 - 201
  • [26] Determination of bentonite content in soil-bentonite liners by X-ray diffraction
    Chapuis, RP
    Pouliot, G
    CANADIAN GEOTECHNICAL JOURNAL, 1996, 33 (05) : 760 - 769
  • [27] Hydraulic Conductivity of Soil-Bentonite Slurry Walls
    Evans, J. C.
    Huang, H.
    GEO-CHICAGO 2016: SUSTAINABLE GEOENVIRONMENTAL SYSTEMS, 2016, (271): : 548 - 557
  • [28] STABILIZATION POND SEALING WITH SOIL-BENTONITE MIXTURE
    CHEVALIER, C
    SCIENCES ET TECHNIQUES DE L EAU, 1983, 16 (04): : 381 - 382
  • [29] Prediction of hydraulic conductivity for soil-bentonite mixture
    Mishra, A. K.
    Kumar, B.
    Vadlamudi, S.
    INTERNATIONAL JOURNAL OF ENVIRONMENTAL SCIENCE AND TECHNOLOGY, 2017, 14 (08) : 1625 - 1634
  • [30] Shear strength evaluation method for soil-bentonite cutoff wall backfill based on CPTU test
    Tong X.
    Ke H.
    Li Y.
    Cai G.
    Wen Y.
    1600, Southeast University (46): : 36 - 39