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Can the Agglomeration of New Energy Industries Improve Environmental Efficiency?—Evidence from China

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  • Yi Liang

    (School of Economics and Management, Xinjiang University, Urumqi 830046, China)

  • Xiaoli Hao

    (School of Economics and Management, Xinjiang University, Urumqi 830046, China
    Center for Innovation Management Research, Xinjiang University, Urumqi 830046, China)

Abstract

Improving environmental efficiency is the key to solving the contradiction between economic development and environmental degradation. In the process of realizing the “dual carbon” goal, the development of the new energy industry is typically characterized by having low carbon and is an important way to improve environmental efficiency. In this study, based on panel data from 2009 to 2018, the agglomeration levels of the new energy industry and the levels of environmental efficiency were measured. Moreover, the linear and nonlinear relationships between the agglomeration of the new energy industry and environmental efficiency were investigated, and the mediation effect model was used to verify the mechanism of action from a two-dimensional perspective. The results showed that (1) the levels of the agglomeration of the new energy industry ( NEA ) and environmental efficiency ( EE ) have generally increased with obvious “regional heterogeneity” and “polar characteristics”; (2) NEA can promote EE , with a marginal effect of 0.0347, but a strong positive driving effect only exists in the eastern region at present, which is higher than the national average level; (3) there is a double threshold effect within the process and the driving trend is “weak negative → weak positive → strong positive"; and (4) the advancement of industrial structures and direct foreign investments are the critical intermedia. Accordingly, this paper puts forward corresponding policy recommendations.

Suggested Citation

  • Yi Liang & Xiaoli Hao, 2022. "Can the Agglomeration of New Energy Industries Improve Environmental Efficiency?—Evidence from China," Sustainability, MDPI, vol. 14(14), pages 1-22, July.
  • Handle: RePEc:gam:jsusta:v:14:y:2022:i:14:p:8961-:d:868348
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    as
    1. Tsioliaridou, E. & Bakos, G.C. & Stadler, M., 2006. "A new energy planning methodology for the penetration of renewable energy technologies in electricity sector--application for the island of Crete," Energy Policy, Elsevier, vol. 34(18), pages 3757-3764, December.
    2. Weyant, John P., 2011. "Accelerating the development and diffusion of new energy technologies: Beyond the "valley of death"," Energy Economics, Elsevier, vol. 33(4), pages 674-682, July.
    3. Taskin, Fatma & Zaim, Osman, 2000. "Searching for a Kuznets curve in environmental efficiency using kernel estimation," Economics Letters, Elsevier, vol. 68(2), pages 217-223, August.
    4. Wang, Ke & Lu, Bin & Wei, Yi-Ming, 2013. "China’s regional energy and environmental efficiency: A Range-Adjusted Measure based analysis," Applied Energy, Elsevier, vol. 112(C), pages 1403-1415.
    5. Hanxiao Wei & Huiqin Yao, 2022. "Environmental Regulation, Roundabout Production, and Industrial Structure Transformation and Upgrading: Evidence from China," Sustainability, MDPI, vol. 14(7), pages 1-17, March.
    6. Hansen, Bruce E., 1999. "Threshold effects in non-dynamic panels: Estimation, testing, and inference," Journal of Econometrics, Elsevier, vol. 93(2), pages 345-368, December.
    7. Loiter, Jeffrey M. & Norberg-Bohm, Vicki, 1999. "Technology policy and renewable energy: public roles in the development of new energy technologies," Energy Policy, Elsevier, vol. 27(2), pages 85-97, February.
    8. Kumar Mandal, Sabuj & Madheswaran, S., 2010. "Environmental efficiency of the Indian cement industry: An interstate analysis," Energy Policy, Elsevier, vol. 38(2), pages 1108-1118, February.
    9. Neij, Lena & Heiskanen, Eva & Strupeit, Lars, 2017. "The deployment of new energy technologies and the need for local learning," Energy Policy, Elsevier, vol. 101(C), pages 274-283.
    10. Li, Wenbo & Long, Ruyin & Chen, Hong, 2016. "Consumers’ evaluation of national new energy vehicle policy in China: An analysis based on a four paradigm model," Energy Policy, Elsevier, vol. 99(C), pages 33-41.
    11. Wu, Haitao & Hao, Yu & Ren, Siyu, 2020. "How do environmental regulation and environmental decentralization affect green total factor energy efficiency: Evidence from China," Energy Economics, Elsevier, vol. 91(C).
    12. Liu, Yingqi & Kokko, Ari, 2013. "Who does what in China’s new energy vehicle industry?," Energy Policy, Elsevier, vol. 57(C), pages 21-29.
    13. Miki Malul & Yossi Hadad & Avner Ben‐Yair, 2009. "Measuring and ranking of economic, environmental and social efficiency of countries," International Journal of Social Economics, Emerald Group Publishing Limited, vol. 36(8), pages 832-843, July.
    14. Ren, Siyu & Hao, Yu & Wu, Haitao, 2022. "The role of outward foreign direct investment (OFDI) on green total factor energy efficiency: Does institutional quality matters? Evidence from China," Resources Policy, Elsevier, vol. 76(C).
    15. Zhao, Dan & Ji, Shou-feng & Wang, He-ping & Jiang, Li-wen, 2021. "How do government subsidies promote new energy vehicle diffusion in the complex network context? A three-stage evolutionary game model," Energy, Elsevier, vol. 230(C).
    16. Reinhard, Stijn & Knox Lovell, C. A. & Thijssen, Geert J., 2000. "Environmental efficiency with multiple environmentally detrimental variables; estimated with SFA and DEA," European Journal of Operational Research, Elsevier, vol. 121(2), pages 287-303, March.
    17. Yang, Mian & Yang, Fu-Xia & Chen, Xing-Peng, 2011. "Effects of substituting energy with capital on China's aggregated energy and environmental efficiency," Energy Policy, Elsevier, vol. 39(10), pages 6065-6072, October.
    18. Dong Feng & Jian Li & Xintao Li & Zaisheng Zhang, 2019. "The Effects of Urban Sprawl and Industrial Agglomeration on Environmental Efficiency: Evidence from the Beijing–Tianjin–Hebei Urban Agglomeration," Sustainability, MDPI, vol. 11(11), pages 1-12, May.
    19. Lee, Won-Woo, 2004. "US lessons for energy industry restructuring: based on natural gas and California electricity incidences," Energy Policy, Elsevier, vol. 32(2), pages 237-259, January.
    20. Yongqing Xiong & Shufeng Qin, 2021. "Differences in the effects of China’s new energy vehicle industry policies on market growth from the perspective of policy mix," Energy & Environment, , vol. 32(3), pages 542-561, May.
    21. Wen, Xiaoqian & Guo, Yanfeng & Wei, Yu & Huang, Dengshi, 2014. "How do the stock prices of new energy and fossil fuel companies correlate? Evidence from China," Energy Economics, Elsevier, vol. 41(C), pages 63-75.
    22. Fare, Rolf, et al, 1989. "Multilateral Productivity Comparisons When Some Outputs Are Undesirable: A Nonparametric Approach," The Review of Economics and Statistics, MIT Press, vol. 71(1), pages 90-98, February.
    23. Sajid Anwar & Sizhong Sun, 2019. "Firm heterogeneity and FDI-related productivity spillovers: A theoretical investigation," The Journal of International Trade & Economic Development, Taylor & Francis Journals, vol. 28(1), pages 1-10, January.
    24. Ericsson, Karin & Nilsson, Lars J. & Nilsson, Måns, 2011. "New energy strategies in the Swedish pulp and paper industry--The role of national and EU climate and energy policies," Energy Policy, Elsevier, vol. 39(3), pages 1439-1449, March.
    25. Hao, Yu & Zhang, Zong-Yong & Yang, Chuxiao & Wu, Haitao, 2021. "Does structural labor change affect CO2 emissions? Theoretical and empirical evidence from China," Technological Forecasting and Social Change, Elsevier, vol. 171(C).
    26. Wu, Haitao & Hao, Yu & Ren, Siyu & Yang, Xiaodong & Xie, Guo, 2021. "Does internet development improve green total factor energy efficiency? Evidence from China," Energy Policy, Elsevier, vol. 153(C).
    27. Stijn Reinhard & C. A. Knox Lovell & Geert Thijssen, 2002. "Analysis of Environmental Efficiency Variation," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 84(4), pages 1054-1065.
    28. Franco, Chiara & Sasidharan, Subash, 2010. "MNEs, technological efforts and channels of export spillover: An analysis of Indian manufacturing industries," Economic Systems, Elsevier, vol. 34(3), pages 270-288, September.
    29. Williams, Christopher & Vrabie, Alina, 2018. "Host country R&D determinants of MNE entry strategy: A study of ownership in the automobile industry," Research Policy, Elsevier, vol. 47(2), pages 474-486.
    30. Lund, Peter, 2006. "Market penetration rates of new energy technologies," Energy Policy, Elsevier, vol. 34(17), pages 3317-3326, November.
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    3. Germán Arana-Landín & Naiara Uriarte-Gallastegi & Beñat Landeta-Manzano & Iker Laskurain-Iturbe, 2023. "The Contribution of Lean Management—Industry 4.0 Technologies to Improving Energy Efficiency," Energies, MDPI, vol. 16(5), pages 1-19, February.

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