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タイトル: Effects of water content distribution on hydraulic conductivity of prehydrated GCLS against calcium chloride solutions
著者: Katsumi, Takeshi  kyouindb  KAKEN_id  orcid https://orcid.org/0000-0003-1936-275X (unconfirmed)
Ishimori, Hiroyuki
Ogawa, Atsushi
Maruyama, Satoshi
Fukagawa, Ryoichi
著者名の別形: 勝見, 武
キーワード: Chemical resistance
Geosynthetic clay liner
Hydraulic conductivity
Prehydration (IGC: D4)
発行日: Jun-2008
出版者: The Japanese Geotechnical Society(地盤工学会)
誌名: Soils and Foundations
巻: 48
号: 3
開始ページ: 407
終了ページ: 417
抄録: When geosynthetic clay liners (GCLs) are applied as bottom liners at waste containment facilities, they are naturally prehydrated by absorbing moisture in the underlying base layers. In order to evaluate the effects of cations contained in waste leachates, this study investigated the effects of the water content distribution of the GCLs prehydrated with actual soils on their hydraulic conductivities against CaCl2 solutions. The "prehydration tests", which were conducted prior to the hydraulic conductivity tests, showed that the water content distribution of the prehydrated GCLs depends on the properties of the GCLs and the base layers. In particular, drastic differences between GCLs with powdered ben-tonite and GCLs with granular bentonite were observed in the prehydration water content and its distribution. Prehydrated GCLs with powdered bentonite had a higher water content and a more homogenous distribution than those with granular bentonite. The hydraulic conductivity tests showed that most of the prehydrated GCLs exhibit a low hydraulic conductivity of k ≈1.0 x 10-8cm/s against CaCl2 solutions with 0.1-0.5 M. However, GCLs with granular bentonite may be difficult to homogeneously prehydrate and exhibit an unstable hydraulic conductivity, which varies from A: = 2.9x 10-9cm/s to k= 1.5 x 10-6 cm/s. The homogeneity of the water content distribution has been consi-dered an important factor to obtain a required barrier performance under prehydration conditions, which are naturally generated in actual sites.
著作権等: Copyright The Japanese Geotechnical Society (地盤工学会). 本文データは地盤工学会の許諾に基づきCiNiiから複製したものである.
URI: http://hdl.handle.net/2433/89725
DOI(出版社版): 10.3208/sandf.48.407
出現コレクション:学術雑誌掲載論文等

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