Water lock-in within China's economic industry based on the input-output method and social network analysis

被引:4
作者
Li, Yan [1 ]
Wang, Zhicheng [1 ]
Wei, Yigang [2 ,3 ]
机构
[1] Shandong Univ, Business Sch, Weihai, Shandong, Peoples R China
[2] Beihang Univ, Sch Econ & Management, Beijing, Peoples R China
[3] Beijing Key Lab Emergency Support Simulat Technol, Beijing, Peoples R China
基金
中国国家自然科学基金;
关键词
Water lock-in; Input-output analysis method; Social network analysis; Unlock; China; STRUCTURAL DECOMPOSITION ANALYSIS; ENVIRONMENTAL-REGULATION; FOOTPRINT EVALUATION; POLLUTION; CHALLENGES; RESOURCES;
D O I
10.1007/s11356-021-17463-w
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
As one of the countries with the most severe water resource problems, China faces enormous challenges in the intensive use of water resources. Rapid economic development has led to serious waste of water resources in the industry, resulting in path dependence on water-consuming technologies, namely the concept of 'water lock-in'. This study aims to estimate the water lock-in effects in various industries in China from 1997 to 2017. To this end, a novel combination of the input-output analysis and social network analysis methods is used to calculate 'integrated, intra-sectorial and inter-sectorial' water lock-in, identify the complex water resource dependence relationship and explore the dynamic evolution process of the lock-in mechanism. The research results are as follows. (1) From 1997 to 2017, the integrated, intra-sectorial and inter-sectorial water lock-in coefficients decreased by 82.08%, 77.92% and 83.14%, respectively. (2) Non-metallic minerals and other mining products underwent the largest decline in water lock-in within the sectors, whereas coal, oil and gas extraction products underwent the most significant decline in water lock-in between the sectors. (3) Water lock-in conduction is most durable and obvious from S01 (agriculture, forestry, fishery products and services) to S06 (textiles). Policy recommendations are suggested to realise the water-unlocking path.
引用
收藏
页码:22391 / 22403
页数:13
相关论文
共 48 条
  • [1] Sources of output change in China: 1987-1997: application of a structural decomposition analysis
    Andreosso-O'Callaghan, B
    Yue, GQ
    [J]. APPLIED ECONOMICS, 2002, 34 (17) : 2227 - 2237
  • [2] [Anonymous], 2010, Economic Geography, DOI DOI 10.15957/J.CNKI.JJDL.2010.11.001
  • [3] COMPETING TECHNOLOGIES, INCREASING RETURNS, AND LOCK-IN BY HISTORICAL EVENTS
    ARTHUR, WB
    [J]. ECONOMIC JOURNAL, 1989, 99 (394) : 116 - 131
  • [4] Water saving technology and saving water in China
    Blanke, Amelia
    Rozelle, Scott
    Lohmar, Bryan
    Wang, Jinxia
    Huang, Jikun
    [J]. AGRICULTURAL WATER MANAGEMENT, 2007, 87 (02) : 139 - 150
  • [5] Real estate supports rapid development of China's urbanization
    Cai, Zhaoyang
    Liu, Qing
    Cao, Shixiong
    [J]. LAND USE POLICY, 2020, 95
  • [6] Social network analysis of virtual water trade among major countries in the world
    Deng, Guangyao
    Lu, Fengying
    Wu, Lingping
    Xu, Chao
    [J]. SCIENCE OF THE TOTAL ENVIRONMENT, 2021, 753
  • [7] Regional water footprint evaluation and trend analysis of China-based on interregional input- output model
    Deng, Guangyao
    Ma, Yong
    Li, Xia
    [J]. JOURNAL OF CLEANER PRODUCTION, 2016, 112 : 4674 - 4682
  • [8] Managing the water-energy-food nexus in China by adjusting critical final demands and supply chains: An input-output analysis
    Deng, Hong-Mei
    Wang, Can
    Cai, Wen-Jia
    Liu, Yuan
    Zhang, Li-Xiao
    [J]. SCIENCE OF THE TOTAL ENVIRONMENT, 2020, 720
  • [9] Regional water footprint evaluation in China: A case of Liaoning
    Dong, Huijuan
    Geng, Yong
    Sarkis, Joseph
    Fujita, Tsuyoshi
    Okadera, Tomohiro
    Xue, Bing
    [J]. SCIENCE OF THE TOTAL ENVIRONMENT, 2013, 442 : 215 - 224
  • [10] Using social network analysis in community development practice and research: a case study
    Ennis, Gretchen
    West, Deborah
    [J]. COMMUNITY DEVELOPMENT JOURNAL, 2013, 48 (01) : 40 - 57