An Architecture and Design Method of Net Zero Carbon Power Supply System for Industrial Parks

Jinxing Zhong, Kailiang Wang, Liwei Yu, Yi Lei, Haibo Li, Ke Jiang, Xinmiao Wang
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Abstract

Industrial parks are the terminals main power consumption and greenhouse gas emission sources, and the implementation of their zero carbon technology is an important support for achieving the national carbon neutral goal. In response to the need to create a net zero carbon park power supply system and the phenomenon that a large number of distributed power sources in the park are difficult to absorb during local periods, this paper proposes a net zero carbon implementation method that utilizes the surplus electric energy from green distributed power generation in the park to Direct Air Capture(DAC), achieving a dynamic balance between carbon emissions and DAC carbon fixation in the power supply system. The specific architecture and design method are given, and verified by an actual design example.
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工业园区净零碳供电系统的架构与设计方法
工业园区是终端的主要用电量和温室气体排放源,其零碳技术的实施是实现国家碳中和目标的重要支撑。针对创建净零碳园区供电系统的需要和园区内大量分布式电源局部时段难以吸收的现象,本文提出了一种净零碳的实施方法,将园区绿色分布式发电的剩余电能用于直接空气捕集(DAC),实现了供电系统碳排放与DAC固碳之间的动态平衡。给出了具体的体系结构和设计方法,并通过实际设计实例进行了验证。
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