2011한국지반신소재학회 학술발표회Requires access

Field Test on Self Recovering Sustainable Layer as Landfill Final Cover System

O. J. Kwon, Minah Oh, J. B. Park

Open publisher page 9 citations

Abstract

This study investigates the field applicability of Self Recovering Sustainable Liner (SRSL) as an alternative for the landfill final cover. The SRSL adopts the precipitation reaction of two chemical materials, to form precipitates that fill the pores, and lower the overall permeability of the liner. For the applicability of SRSL system, laboratory and field tests are performed. Based on the extensive laboratory and field tests results, the SRSL final cover system fulfills the strength and hydraulic conductivity requirement even in the harsh field conditions.

About this research paper

What this paper is about

This study investigates the field applicability of Self Recovering Sustainable Liner (SRSL) as an alternative for the landfill final cover. The SRSL adopts the precipitation reaction of two chemical materials, to form precipitates that fill the pores, and lower the overall permeability of the liner. For the applicability of SRSL system, laboratory and field tests are performed. Based on the extensive laboratory and field tests results, the SRSL final cover system fulfills the strength and hydraulic conductivity requirement even in the harsh field conditions.

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OpenAlex reports 9 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This study investigates the field applicability of Self Recovering Sustainable Liner (SRSL) as an alternative for the landfill final cover. The SRSL adopts the precipitation reaction of two chemical materials, to form precipitates that fill the pores, and lower the overall permeability of the liner. For the applicability of SRSL system, laboratory and field tests are performed. Based on the extensive laboratory and field tests results, the SRSL final cover system fulfills the strength and hydraulic conductivity requirement even in the harsh field conditions.

Key concepts: Hydraulic conductivity, Cover (algebra), Permeability (electromagnetism), Field (mathematics), Environmental science, Geotechnical engineering, Engineering, Environmental engineering

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