Factor analysis on the industrial environmental efficiency and energy utilization efficiency of China by DEA method

被引:1
|
作者
Lei, Hong-jun [1 ]
Zhang, Qiao-li [1 ]
Li, Chang-jia [1 ]
Xi, Bei-dou
Xia, Xun-feng
机构
[1] North China Univ Water Conservancy & Elect Power, Taiyuan, Henan Province, Peoples R China
关键词
China's industrial pollutants; Data Envelopment Analysis (DEA) method; Energy utilization efficiency; Environmental efficiency; DATA ENVELOPMENT ANALYSIS; DECISION-MAKING UNITS; SYSTEM;
D O I
10.4028/www.scientific.net/AMM.209-211.1620
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Faced with two big stresses of energy shortage and environmental pollutants, China should improve its energy utilization efficiency. Based on the data of China Statistical Yearbook and China Environmental Statistics Yearbook, the pollutants discharge and energy utilization efficiency, including technical efficiency (TE), pure technical efficiency (PTE), scale efficiency (SE) and returns to scale (RTS) of China's industry and its sub-sectors were analyzed by constant returns to scale model (CRS) and variable returns to scale model (VRS) of non-parametric data envelopment analysis (DEA) method. Results showed that: (1) The RTS of China's total industrial environmental efficiency and energy utilization efficiency were all in "irs" state, indicating that it was beneficial to expand the entire industrial scale. (2) The TE of total industrial energy utilization efficiency was about 0.80, the minimum TE was 0.018 of production and distribution of gas sector. (3) The total industrial environmental efficiency was about 0.77, the two sectors with high pollutants discharges were mining of other ores and manufacture of paper and paper products, and TE were 0.065 and 0.067, respectively. Mostly industrial sub-sectors should improve their technologies and adjust its scales except for extraction of petroleum and natural gas, manufacture of tobacco, printing, reproduction of recording media and so on. (4) Mining of other ores, manufacture of tobacco, manufacture of communication equipment, computers and other electronic equipment, manufacture of measuring, instruments and machinery for cultural activity and office work and production and distribution of water were in high energy utilization efficiency while in low environmental efficiency and steady RTS. So these sectors should improve the technologies to achieve DEA effective. (5) Scale expanding, technology advancement, energy use pattern improvement and industry structure adjustment were suggested for energy-saving industry according to the TE, PTE, SE and RTS.
引用
收藏
页码:1620 / 1626
页数:7
相关论文
共 50 条
  • [31] Research on the Energy Efficiency Optimization in Guizhou Industrial Sector of China Based on the Combination of DEA and MPI
    Jiang, Lanxiang
    Wang, Honglei
    2014 FIFTH INTERNATIONAL CONFERENCE ON INTELLIGENT SYSTEMS DESIGN AND ENGINEERING APPLICATIONS (ISDEA), 2014, : 857 - 860
  • [32] Analysis of Zhuzhou Energy Efficiency based on DEA
    Guo Yudong
    ENERGY AND POWER TECHNOLOGY, PTS 1 AND 2, 2013, 805-806 : 1472 - 1477
  • [33] ENVIRONMENTAL EFFICIENCY ASSESSMENT AND DIFFERENCE ANALYSIS OF INDUSTRIAL CLUSTER DISTRICTS IN CHINA
    Li, X.
    Cai, Q.
    Yang, X. Y.
    APPLIED ECOLOGY AND ENVIRONMENTAL RESEARCH, 2019, 17 (04): : 9035 - 9049
  • [34] Energy efficiency evaluation based on DEA integrated factor analysis in ethylene production
    Gong, Shixin
    Shao, Cheng
    Zhu, Li
    CHINESE JOURNAL OF CHEMICAL ENGINEERING, 2017, 25 (06) : 793 - 799
  • [35] Analysis of Total Factor Efficiency of Water Resource and Energy in China: A Study Based on DEA-SBM Model
    Yang, Weixin
    Li, Lingguang
    SUSTAINABILITY, 2017, 9 (08):
  • [36] Total factor energy efficiency in regions of China: An empirical analysis on SBM-DEA model with undesired generation
    Shang, Yu
    Liu, Haibin
    Lv, Yue
    JOURNAL OF KING SAUD UNIVERSITY SCIENCE, 2020, 32 (03) : 1925 - 1931
  • [37] Effects of Factor Price Distortion on Industrial Environmental Efficiency: Evidence from Environmental Pollution in China
    Sun, Xiangxiang
    Chen, Zhangwang
    Huang, Liangxiong
    POLISH JOURNAL OF ENVIRONMENTAL STUDIES, 2020, 29 (05): : 3803 - 3812
  • [38] Energy efficiency evaluation based on DEA integrated factor analysis in ethylene production
    Shixin Gong
    Cheng Shao
    Li Zhu
    Chinese Journal of Chemical Engineering, 2017, 25 (06) : 793 - 799
  • [39] The Impact of Environmental Regulation on Total Factor Energy Efficiency: A Cross-Region Analysis in China
    Lin, Jianting
    Xu, Changxin
    ENERGIES, 2017, 10 (10)
  • [40] Efficiency of household energy utilization in rural China
    An, Qier
    An, Haizhong
    Wang, Lang
    Huang, Xuan
    INTERNATIONAL JOURNAL OF LOW-CARBON TECHNOLOGIES, 2014, 9 (02) : 135 - 143