冯敬轩. 基于净能源视角的中国能源产业投入产出研究[J]. 中国矿业, 2021, 30(10): 18-23. DOI: 10.12075/j.issn.1004-4051.2021.10.007
    引用本文: 冯敬轩. 基于净能源视角的中国能源产业投入产出研究[J]. 中国矿业, 2021, 30(10): 18-23. DOI: 10.12075/j.issn.1004-4051.2021.10.007
    FENG Jingxuan. Research on input and output of China’s energy industry from the perspective of net energy[J]. CHINA MINING MAGAZINE, 2021, 30(10): 18-23. DOI: 10.12075/j.issn.1004-4051.2021.10.007
    Citation: FENG Jingxuan. Research on input and output of China’s energy industry from the perspective of net energy[J]. CHINA MINING MAGAZINE, 2021, 30(10): 18-23. DOI: 10.12075/j.issn.1004-4051.2021.10.007

    基于净能源视角的中国能源产业投入产出研究

    Research on input and output of China’s energy industry from the perspective of net energy

    • 摘要: 能源生产的意义在于剩余能源的产出,即总产出扣除各种投入后剩余的能源,这部分能源又称为净能源,只有净能源才是被经济社会真正使用的能源。本文基于1987年到2017年间发布的全国投入产出正式表以及延长表,结合隐含能的计算模型,得出中国能源产业的直接能源投入和间接能源投入,由此进一步分析中国能源生产过程中能源投入产出情况。研究结果显示,1987年中国能源系统消耗1 tce能源投入可以为经济系统供应4.62 tce净能源;而到了2017年1 tce能源投入只能供应2.14 tce净能源,说明从长期来看中国能源产业的投入产出效率不断下降。为了减缓这种下降趋势,建议对未来拟规划实施的能源生产项目进行综合评价,优先选择净能源产出较多的项目,同时积极提高目前能源生产的投入产出比,降低能源部门生产成本。

       

      Abstract: The surplus value created by the energy industry is called net energy.Net energy is the remaining energy after total energy output excludes the various input, the net energy is the real energy used by the economy and society.Based on the official national input-output table and the extended input-output table released from 1987 to 2017, this paper obtains all kinds of direct energy inputs and indirect energy inputs of China’s energy industry through the model of embodied energy, to further analyze the energy input-output situation in the process of energy production in China.The results show that in 1987, the 1 tce energy consumed by China’s energy industry could supply 4.62 tce of net energy output for the economic system; in 2017, this ratio drops to 2.14 tce, indicating that energy production efficiency of China’s energy industry continues to decline.Based on this result, it is suggested to comprehensive evaluation when planning energy projects, give priority to projects with large net energy output and high production efficiency, and improve the input-output ratio of energy production and reduce the production cost of energy sectors.

       

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