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Cited 6 time in webofscience Cited 7 time in scopus
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A two-stage eco-efficiency evaluation of China's industrial sectors: A dynamic network data envelopment analysis (DNDEA) approach

Authors
Wang, QunweiTang, JiexinChoi, Gyunghyun
Issue Date
Apr-2021
Publisher
Institution of Chemical Engineers
Keywords
Production stage; Pollution treatment; Production investment; Treatment investment; Slacks-based measure; Data envelopment analysis
Citation
Process Safety and Environmental Protection, v.148, pp.879 - 892
Indexed
SCIE
SCOPUS
Journal Title
Process Safety and Environmental Protection
Volume
148
Start Page
879
End Page
892
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/142136
DOI
10.1016/j.psep.2021.02.005
ISSN
0957-5820
Abstract
Past studies used the network data envelopment analysis approach from a two-stage perspective (the production stage and waste/pollutant treatment stage) to evaluate industrial eco-efficiency and assess internal ineffective sources. However, these studies did not consider the dynamic features, i.e., capital investments in the current period are used to establish fixed assets for two stages, which can also be used in the later period, thus affecting its two-stage eco-efficiency. A dynamic network data envelopment analysis approach is adopted to fill this research gap and evaluate Chinese industrial two-stage eco-efficiency during 2010?2015, reflecting the practical production context and achieving comparable efficiencies among different periods. The major results of our study are: Firstly, not considering the dynamic features leads to an underestimation of the two-stage eco-efficiency. Secondly, the production efficiency was higher than the treatment efficiency, and the two-stage eco-efficiency was between the two during the study period. Furthermore, eastern China performed best with respect to the two-stage eco-efficiency, including production and treatment efficiencies, followed by the central and the western areas. Finally, a fifth of the 30 regions had a relatively low value of the input and output efficiencies of both production and treatment stages based on the clustering analysis.
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CHOI, GYUNG HYUN
GRADUATE SCHOOL OF TECHNOLOGY & INNOVATION MANAGEMENT (DEPARTMENT OF TECHNOLOGY MANAGEMENT)
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