TY - JOUR
T1 - Performance of water cut-off and remediation promotion techniques at coastal waste landfill sites
AU - Inazumi, Shinya
AU - Kakuda, Toshimitsu
PY - 2014/7
Y1 - 2014/7
N2 - This paper proposes the construction of steel pipe sheet pile (SPSP) cutoff walls for promoting remediation of water-soluble toxic substances and containment of water-soluble toxic substances at landfill sites in order to maintain and ensure the environmental safety of waste landfill sites over time. It investigates environmental safety at coastal waste landfill sites by applying water cut-off and remediation promotion techniques to the joint sections of SPSP water cut-off walls that provide shore protection for waste landfills. Results from the research herein show that the construction of SPSP water cut-off walls with features such as the containment of water-soluble toxic substances and remediation promotion is possible by applying water cut-off and remediation techniques to H-H joints, which are structural joint components of SPSP walls. In addition, they show that the performance of remediation in H-H joints can be controlled by adjusting the water cut-off efficiency of the H-H joint flange.
AB - This paper proposes the construction of steel pipe sheet pile (SPSP) cutoff walls for promoting remediation of water-soluble toxic substances and containment of water-soluble toxic substances at landfill sites in order to maintain and ensure the environmental safety of waste landfill sites over time. It investigates environmental safety at coastal waste landfill sites by applying water cut-off and remediation promotion techniques to the joint sections of SPSP water cut-off walls that provide shore protection for waste landfills. Results from the research herein show that the construction of SPSP water cut-off walls with features such as the containment of water-soluble toxic substances and remediation promotion is possible by applying water cut-off and remediation techniques to H-H joints, which are structural joint components of SPSP walls. In addition, they show that the performance of remediation in H-H joints can be controlled by adjusting the water cut-off efficiency of the H-H joint flange.
KW - Cutoff wall
KW - Steel pipe sheet pile
KW - Waste landfill site
KW - Water-swelling material
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U2 - 10.1007/s10163-013-0207-9
DO - 10.1007/s10163-013-0207-9
M3 - Article
AN - SCOPUS:84904188949
SN - 1438-4957
VL - 16
SP - 533
EP - 545
JO - Journal of Material Cycles and Waste Management
JF - Journal of Material Cycles and Waste Management
IS - 3
ER -