4.3 Article

Feasible Distributed Energy Supply Options for Household Energy Use in China from a Carbon Neutral Perspective

出版社

MDPI
DOI: 10.3390/ijerph182412992

关键词

household energy consumption; carbon neutrality; distributed energy system; high-efficiency; human development index

资金

  1. Capacity Building of Science and Technology Innovation Services Basic Research Operation Fund [PXM2020_014213_000017]
  2. Research Foundation for Youth Scholars of Beijing Technology and Business University [QNJJ2020-150]

向作者/读者索取更多资源

This study compared energy consumption, carbon emissions, and human development index from a macro perspective, and household electricity consumption from a micro perspective, revealing China's regional imbalance between household electricity consumption and renewable energy distribution. Therefore, a distributed energy supply system is proposed as a solution.
This contribution firstly proposed the concept of annual average power generation hours and analyzed per capita energy consumption, carbon emission, and the human development index from a macro perspective. On this basis, we compared the average household electrical energy consumption of urban and rural residents based on the data from CGSS-2015 from a micro perspective. The results show the positive correlation between carbon emissions per capita and the human development index and China's regional imbalance characteristics between household electricity consumption and renewable energy distribution. Therefore, the distributed energy supply system is proposed as an effective complement to centralized power generation systems and is the key to synergizing human development and carbon emissions in China. Moreover, we analyzed the characteristics of distributed energy supply systems in the context of existing energy supply systems, pointing out the need to fully use solar energy and natural gas. Finally, two types of typical distributed energy supply systems are proposed for satisfying the household energy requirements in remote or rural areas of western and the eastern or coastal areas of China, respectively. Two typical distributed energy systems integrate high-efficiency energy conversion, storage, and transfer devices such as electric heat pumps, photovoltaic thermal, heat and electricity storage, and fuel cells.

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