碳排放与减排:以能源系统中的薄膜电容器为视角

Y.-X. Zhang, Q. Feng, F.-Y. Chen, Shao-Long Zhong, Junhua Pei, Jiang-Bo Ping, Li-Juan Yin, Weibing Cao, D.-F. Liu, Z. Dang
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引用次数: 7

摘要

气候变化、资源短缺和环境污染警告世界加快实现碳中和的步伐。能源作为碳排放的重要来源,受到了广泛的关注。为了进一步了解能源系统对碳排放的影响,有必要从能源系统关键组成部分的角度来研究碳排放及其减排。首先,我们标记了薄膜电容器对能量系统产生影响的位置。其次,我们计算了薄膜电容器的需求,进一步了解其重要性。第三,我们通过计算薄膜电容器组成材料生产过程中产生的碳排放量来描述薄膜电容器生产过程中产生的碳排放量。第四,对利用薄膜电容器替代铝电解电容器,使更多可再生能源进入能源系统进行了案例研究。结果表明,如果用薄膜电容器代替相同电容(1uF)的铝电解电容器进行风电传输,并用燃煤发电补充所缺的部分能量,每年可减少CO2排放1628.77 kg。最后,从膜电容器的生命周期角度提出了促进膜电容器碳中和的建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Carbon emission and its reduction: from the perspective of film capacitors in the energy system
Climate change, resource scarcity, and environmental pollution warn the world to accelerate its pace toward carbon neutrality. As an important source of carbon emissions, energy has received widespread attention. In order to further understand the impact of energy system on carbon emissions, it is necessary to study carbon emissions and its reduction from the perspective of energy system's key components. First, we marked the position where film capacitor makes an impact on energy system. Second, we calculated the demand for film capacitors to further understand its importance. Third, we described the carbon emissions caused by the film capacitor's production by calculating the carbon emissions generated during the production of film capacitor's constituent materials. Fourth, a case study of using film capacitors to replace aluminium electrolytic capacitors to allow more renewable energy entering energy system was conducted. The result shows that if a film capacitor replaces an aluminium electrolytic capacitor with the same capacitance (1uF) for wind power transmission and the missing part of the energy is supplemented by coal-fired power generation, CO2 emissions will be reduced by 1,628.77 kg per year. Finally, from the perspective of film capacitor's life cycle, suggestions for promoting carbon neutralization by film capacitors were given.
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