Development Status of Advanced Thermal Power Technology and Low-carbon Path of China's Thermal Power Industry

Wang Yueming, Zhang Xuwei, Qi Yongqiang, Wu Jiarong, Yang Yu, Bai Wengang, Yang Pu, Zhang Yifan, L. Hongzhi, Yao Mingyu
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引用次数: 2

Abstract

Climate change is a major global challenge facing mankind today. In order to actively respond to climate change, China has proposed carbon peak and carbon neutral goals. On the one hand, it is China internal requirements for achieving sustainable development. It is an important starting point for strengthening the construction of ecological civilization and achieving the goal of a beautiful China. On the other hand, it is also the responsibility of China as a responsible major country to fulfill its international responsibilities and promote the building of a community with a shared future for mankind. The power industry is a pillar industry of the national economy and a key carbon emission industry. At present, thermal power generation is still the most important method of power generation in China, and the peaking of carbon in the thermal power generation industry plays an important role in achieving the goal of carbon peaking in China. In order to achieve the goal of “30$\cdot$60 carbon peak carbon neutrality” in the thermal power industry, the development status of thermal power generation technology, future development trends and carbon capture are considered, and the high-efficiency and flexible coal-fired power generation technology, efficient and flexible gas-fired power generation technology, and coupling renewable energy thermal power generation technology, coal-biomass blended combustion power generation technology, and carbon capture and application technology have been investigated in the paper, which points out the direction for the low-carbon development of the thermal power industry. Generally speaking, China’s thermal power generation technology has reached the world’s advanced level. However, there is still a need to study high-efficiency and low-carbon thermal power generation technologies. In terms of low-carbon applications and technologies for thermal power, the focus should be on high-efficiency thermal power technology and peak shaving technology. In the future, the thermal power industry will adopt high-efficiency thermal power technologies such as ultra-high-parameter ultra-supercritical coal-fired power generation technology, supercritical CO2 cycle high-efficiency coal-fired power generation technology, low-carbon coal-fired energy-saving integrated technology, and high-efficiency natural gas power generation technology based on advanced gas turbines to greatly improve the efficiency of thermal power plants and reduce the carbon emission level per power generation capacity. In addition, the thermal power plants adopt advanced peak-shaving technology to increase the depth and speed of peak-shaving in order to absorb more low-carbon electricity such as renewable energy. For natural gas power plants, carbon intake can be reduced from the source through hydrogen-blended combustion. Carbon emissions in the thermal power industry are inevitable. The development of low-cost carbon capture technologies should be focused on to achieve near-zero emissions for the thermal power industry.
先进火电技术发展现状与中国火电行业低碳发展道路
气候变化是当今人类面临的重大全球性挑战。为积极应对气候变化,中国提出了碳峰值和碳中和目标。一方面,这是中国实现可持续发展的内在要求。是加强生态文明建设、实现美丽中国目标的重要抓手。另一方面,履行好自己的国际责任,推动构建人类命运共同体,也是中国作为一个负责任大国的责任。电力行业是国民经济的支柱产业,也是碳排放的重点行业。目前,火电发电仍是中国最主要的发电方式,火电行业的碳调峰对中国实现碳调峰目标起着重要作用。为实现火电行业“30$\cdot$60碳峰碳中和”的目标,综合考虑了火电技术的发展现状、未来发展趋势和碳捕集,提出了高效灵活的燃煤发电技术、高效灵活的燃气发电技术,以及耦合可再生能源火电技术、煤生物质混合燃烧发电技术,并对碳捕集与应用技术进行了研究,为火电行业的低碳发展指明了方向。总的来说,中国的火力发电技术已达到世界先进水平。但是,仍然需要研究高效低碳的火力发电技术。在火电低碳应用和技术方面,重点发展高效火电技术和调峰技术。未来火电行业将采用超高参数超超临界燃煤发电技术、超临界CO2循环高效燃煤发电技术、低碳燃煤节能一体化技术、而以先进燃气轮机为基础的高效天然气发电技术,大大提高了火电厂的发电效率,降低了单位发电量的碳排放水平。此外,火电厂采用先进的调峰技术,提高调峰的深度和速度,以吸收更多的可再生能源等低碳电力。对于天然气发电厂来说,通过混氢燃烧可以从源头上减少碳的摄入。火电行业的碳排放是不可避免的。应重点发展低成本的碳捕获技术,以实现火力发电行业的近零排放。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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