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Exploring the spatial spillover effects of low-grade coal consumption and influencing factors in China

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  • Wang, Shaobin
  • Zhao, Chao
  • Liu, Hanbin
  • Tian, Xinglei

Abstract

The residential consumption of low-grade coal (LGC) is a serious threat to the environment and human health in China. In this study, spatial patterns and spatial spillover effects of LGC consumption in China were investigated. The LGC consumption data, economic, household expenditure, income, and energy consumption data at the provincial-level in mainland China were collected. Global/local spatial autocorrelation and spatial regression models were employed. The results presented a significant positive spatial autocorrelation and an obvious spatial clustering feature of LGC consumption in China. Furthermore, the spatial spillover effect of LGC consumption wan detected based on spatial lag modeling. Our result further revealed that LGC consumption is significantly related to energy consumption factors rather than economic and income factors, which is contrary to conventional assumptions about the energy transition but fits well with the fuel stacking model. Additionally, this study provides several implications for residential energy improvement in China, which calls for further policies, e.g., building a specific and strict management system to prohibit of LGC for residential consumption and improving the energy consumption structure, especially in the provinces with a high value of LGC consumption in the middle, southwestern, and northeastern parts of China.

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  • Wang, Shaobin & Zhao, Chao & Liu, Hanbin & Tian, Xinglei, 2021. "Exploring the spatial spillover effects of low-grade coal consumption and influencing factors in China," Resources Policy, Elsevier, vol. 70(C).
  • Handle: RePEc:eee:jrpoli:v:70:y:2021:i:c:s0301420720309375
    DOI: 10.1016/j.resourpol.2020.101906
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    2. Shiwen Liu & Zhen Zhang & Junhua Yang & Wei Hu, 2022. "Exploring Increasing Urban Resident Electricity Consumption: The Spatial Spillover Effect of Resident Income," Energies, MDPI, vol. 15(12), pages 1-17, June.

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