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Proposal of Environmental Impact Assessment Method for Concrete in South Korea: An Application in LCA (Life Cycle Assessment)

Authors
Kim, Tae HyoungTae, Sung Ho
Issue Date
Nov-2016
Publisher
Multidisciplinary Digital Publishing Institute (MDPI)
Keywords
concrete; life cycle assessment; environmental impact; South Korea
Citation
International Journal of Environmental Research and Public Health, v.13, no.11, pp 1 - 16
Pages
16
Indexed
SCIE
SCOPUS
Journal Title
International Journal of Environmental Research and Public Health
Volume
13
Number
11
Start Page
1
End Page
16
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/12570
DOI
10.3390/ijerph13111074
ISSN
1661-7827
1660-4601
Abstract
This study aims to develop a system for assessing the impact of the substances discharged from concrete production process on six environmental impact categories, i.e., global warming (GWP), acidification (AP), eutrophication (EP), abiotic depletion (ADP), ozone depletion (ODP), and photochemical oxidant creation (POCP), using the life a cycle assessment (LCA) method. To achieve this, this study proposed an LCA method specifically applicable to the Korean concrete industry by adapting the ISO standards to suit the Korean situations. The proposed LCA method involves a system that performs environmental impact assessment on the basis of input information on concrete mix design, transport distance, and energy consumption in a batch plant. The Concrete Lifecycle Assessment System (CLAS) thus developed provides user-friendly support for environmental impact assessment with specialized database for concrete mix materials and energy sources. In the case analysis using the CLAS, among the substances discharged from the production of 24 MPa concrete, those contributing to GWP, AP, EP, ADP, ODP, and POCP were assessed to amount to 309 kg-CO2 eq/m(3), 28.7 kg-SO2 eq/m(3), 5.21 kg-PO43- eq/m(3), 0.000049 kg-CFC11 eq/m(3), 34 kg/m(3), and 21 kg-Ethylene eq/m(3), respectively. Of these six environmental impact categories selected for the LCA in this study, ordinary Portland cement (OPC) was found to contribute most intensely to GWP and POCP, and aggregates, to AP, EP, ODP, and ADP. It was also found that the mix design with increased prop proportion of recycled aggregate was found to contribute to reducing the impact in all other categories.
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ERICA 공학대학 (MAJOR IN ARCHITECTURAL ENGINEERING)
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