• Title/Summary/Keyword: composite landfill liner

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Performance-based Evaluation for Efficiency of Landfill Liner Systems

  • Nguyen, The Bao;Lee, Chul-Ho;Lee, Jong-Sun;Choi, Hang-Seok
    • Proceedings of the Korean Geotechical Society Conference
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    • 2009.03a
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    • pp.245-254
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    • 2009
  • Efficiency of landfill liners system is usually evaluated based on leakage rate and mass flux. In this study, composite liner systems including the GCL(geosynthetic clay liner) composite liner, the Subtitle D liner, the Wisconsin NR500 liner, and the recently utilized double composite liner, which is a combination of the GCL composite liner and Subtitle D-type liner, have been examined. The leakage rate through circular and long defects in the geomembrane (GM) of the liner system was analyzed with the aids of analytical and numerical methods. For the mass flux criterion, contaminant transport through defects in the GM of landfill liners can be evaluated based on the calculated leakage rates. The diffusion rate of volatile organic compounds through intact landfill liners was evaluated by performing a one-dimensional numerical model. Cadmium and toluene were adoptted in the analyses as typical inorganic and organic substances, respectively, which will be chemical species encountered during landfill operation. The performance-based evaluation indicates that the double composite liner systems are superior to the other types of liner.

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Performance of Double Composite Landfill Liner considering Leakage Rate and Mass Flux

  • Nguyen, The Bao;Lee, Chul-Ho;Choi, Hang-Seok
    • Proceedings of the Korean Geotechical Society Conference
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    • 2010.03a
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    • pp.295-304
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    • 2010
  • Performance of a landfill liner is evaluated based on leakage rate and mass flux. In this study, the recently utilized double composite liner system, which consists of a geomembrane (GM), a geosynthetic clay liner (GCL), a GM, and a compacted clay layer (61 or 91.5 cm) is compared with other popular composite liners including the single GCL system, the Subtitle D liner system, and the Wisconsin NR500 liner system. The leakage rate through circular and long defects in the GM of the landfill liners is analyzed using numerical models. For the mass flux criterion, the analyses of inorganic contaminant transport through defects in the GM component of liner systems and diffusion of organic compounds through intact landfill liners are conducted using three- and one-dimensional numerical models, respectively. Cadmium and toluene are used in the analyses as a typical inorganic and organic substance, respectively, which will be chemical species encountered during landfill operation. The comparison shows that the double composite liner systems are superior to the other liner systems according to the performance-based evaluation.

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Development of a Computer Program to Estimate Landfill Liner Thickness (매립지 차수재 두께 산정을 위한 컴퓨터 프로그램 개발)

  • Do, Nam-Young;Lee, Seung-Rae;Jeong, Kwang-Young
    • Journal of the Korean GEO-environmental Society
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    • v.6 no.4
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    • pp.13-26
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    • 2005
  • In this study, research results on organic and inorganic pollutant migration through single and composite liner were summarized. On the basis of these summarized research results, a design program for landfill liner, which can be used to optimize the liner thickness based on the allowable ground water criteria around the landfill subsurface, was developed. A reasonable liner thickness was obtained from the program output results, in the case of the migration of $Cl^-$ ion through a single clay liner. Therefore, the developed program could be used to carry out a preliminary design for landfill liners with respect to organic and inorganic pollutants.

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Development of Bentonite Composite Liners for Landfill Sites (폐기물매립지 침출수 누출방지용 벤토나이트 복합라이너 개발)

  • 최우진;이원영;진성기;하헌중;김두영
    • Proceedings of the Korean Society of Soil and Groundwater Environment Conference
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    • 1999.10a
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    • pp.73-76
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    • 1999
  • Soil-bentonite mixtures are frequently used as impervious for waste disposal sites. In the present work, bentonite composite liner systems(BCL) have been developed by utilizing Korean zeolitic bentonites. The geomechanical properties of the liner systems, such as strength, hydraulic conductivity, etc. have been studied. The laboratory and field test results are also be presented.

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A Case Study of Bottom Liner Construction Using Composite Liner Technology in a Solid Waste Landfill (복합차수층 조성기술을 이용한 폐기물매립지 바닥차수층 시공사례)

  • Lee, Kyu-Jung;Lee, Nam-Hoon;Park, Soo-Young;Jeon, Won-Pyo;Lee, Chae-Young
    • Journal of the Korea Organic Resources Recycling Association
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    • v.15 no.3
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    • pp.90-96
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    • 2007
  • Modern waste management units, so-called "landfills" protect human health and environment from hazardous leachate and gas. Accordingly, it must be constructed with a bottom liner system that includes a gas collection layer. Leachate is the contaminated liquid that drains from the waste material pollutes ground water. For this reason. bottom liner system must have durability and low hydraulic conductivity (in case of compacted clay liner, no more than $1{\times}10^{-7}cm/sec$ ). P county in Kangwon province constructed a solid waste landfill with bottom liner system. In this study. it is mainly introduced that the test results on construction and quality control of bottom liner system by "Multiple composite liner construction technology", which is selected for bottom liner system in P solid waste landfill.

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The Evaluation of Geosynthetic Clay Liner as a barrier layer for the Final Cover System in landfill (폐기물 매립지 최종복토 차단층으로서 Geosynthetic Clay Liner 적용성 평가)

  • Lee, Jung-Lan;Moon, Chul-Hwan;Jung, Chan-Kee;Lee, Jai-Young
    • Journal of the Korean Geosynthetics Society
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    • v.3 no.2
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    • pp.23-29
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    • 2004
  • One of the most important concern in the design of barrier layer in to protect the water through the landfill. The barrier layer consists of a single compacted clay liner(CCL) or a composite liner with high density polyethylene(HDPE). The construction of barrier layer at the edge of cover system usually has some problems because of steep slope in the landfill. In this study the authors evaluate the geosynthetic clay liner(GCL) as a barrier layer at the edge of the final cover system in landfill. The GCLs were simulated the stability of slope, the HELP(Hydrologic Evaluation of Landfill Performance) and the durability of environmental situation. As the results, the GCL has more stable than the CCL. Therefore, the authors suggest that the GCL in good for the barrier layer of the final cover system in the landfill.

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Development of Bentonite Composite Liners for Waste Landfill Sites (폐기물매립지 침출수 누출방지용 벤토나이트 복합라이너 개발)

  • Choi, Woo-Zin;Jin, Sung-Ki;Ha, Hun-Jung
    • Journal of the Korean GEO-environmental Society
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    • v.1 no.1
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    • pp.65-70
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    • 2000
  • Recently, soil-bentonite mixtures are frequently used as impervious liners for waste disposal sites. In the present work, bentonite composite liner systems have been developed by utilizing Korean zeolitic bentonites. The geomechanical properties of the liner systems, such as strength hydraulic conductivity, etc. have also been studied. The laboratory and field test results showed that uniaxial strengths of the system were improved by addition of bentonite and CaO-based additive to the upper and lower layer of the liner systems, respectively. Hydraulic conductivity values measured on field liner systems showed less $1{\times}10^{-3}cm/s$, which is considered to be minimum regulation requirement for waste disposal sites.

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Evaluation of Stability of Lining Systems of Landfill Using Discrete Element Method (개별요소법을 사용한 매립지 사면 차수 시스템의 안정성 평가)

  • 박현일;이승래;정구영
    • Journal of the Korean Geotechnical Society
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    • v.19 no.2
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    • pp.87-95
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    • 2003
  • In this paper, the discrete element method was applied to evaluate the stability of composite cover and lining system of landfill. This method is capable of estimating the distribution of tensile force and shear stress mobilized in each liner component and its interfaces, based on a relationship of force and displacement. It was assumed that the cover soil and geomembrane were comprised of slices connected with elastoplastic Winkler springs and tensile spring respectively. Parametric study using this method was performed and compared with other techniques based on limit equilibrium method fur the example analysis.

The Effects of HDPE by Landfill Settlements in the Final Cover System (침하에 의한 폐기물 매립지 최종복토층 HDPE의 영향에 관한 연구)

  • Moon, Chul-Hwan;Lee, Jai-Young;Jeon, Han-Yong
    • Journal of the Korean Geosynthetics Society
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    • v.2 no.3
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    • pp.11-18
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    • 2003
  • The one of the most important concerns in the design of the final cover system is to restrict percolation of water into the waste body. To minimize entering the water, the final cover system has the barrier layer that consists of a single compacted clay liner(CCL) or a composite liner with high density polyethylene(HDPE) overlying CCL. The HDPE as well as CCL can be damaged by landfill settlements. Therefore, this study was conducted to assess the effects of HDPE induced by settlements in the final cover system after closure. The results of the three test that is field test, lysimeter test in laboratory, and prediction of settlement represent that the HDPE in the final cover system is not pretty much affected by settlements and stable on settlements.

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Stability Analysis of Waste Landfill Using Multi-interface Element Numerical Method (복합 경계면요소 수치해석에 의한 매립지 안정성 해석)

  • 장연수;김홍석
    • Journal of the Korean Geotechnical Society
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    • v.20 no.4
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    • pp.29-38
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    • 2004
  • A finite element nonlinear stress-deformation model with multi-interface element is applied to the stability analysis of waste landfill slope. Strength parameters of waste and geosynthetic materials are obtained from the triaxial test of waste and the direct shear test of geosynthetics, respectively. The landfill models used for the numerical models are fit to regulations of the Korean waste management law. The results of the strength tests showed linear behavior for the waste and nonlinear behavior for the eosynthectic materials. The stability analysis with multi-interface element for the geosynthetic materials in the liner system showed large shear stress and slippage at the boundary of the foundation and the slope of the waste fill. This analysis verified the necessity of multi-interface analysis for waste landfills with composite liners.