Hydrogen Energy: Development Prospects, Current Obstacles and Policy Suggestions under China’s “Dual Carbon” Goals

IF 1.6 Q3 URBAN STUDIES
Zuoyu Sun
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引用次数: 0

Abstract

Hydrogen energy has an advantage over conventional fossil energy because of its clean and low-carbon features, while its stability gives it an advantage over renewable energy sources such as hydropower, photovoltaic (PV) power, and wind power. Using hydrogen as a fuel can achieve zero carbon emissions or even net zero emissions at the end of energy conversion. Moreover, with hydrogen as the carrier, an energy system of multi-energy complementarity will be established by coupling multiple energy systems such as power grids, gas grids and heat networks, which can realize the comprehensive utilization of renewable energy sources in an efficient, stable, and flexible manner. Based on the “dual carbon” goals, this paper targets sectors with high carbon emissions represented by electric power, steel and transportation, analyzes the feasible path of using hydrogen energy to promote deep carbon reduction, and points out the obstacles faced by hydrogen energy development in various sectors. On account of the current development and expected prospects, this paper proposes that the current focus of hydrogen energy industry is to coordinate the development of industrial sectors and regions, build a pattern that can facilitate the industry’s systematic and concerted development, address key technical challenges (such as green hydrogen production or hydrogen storage and transportation via pipeline), improve industrial standards, and promote the industry’s development in a balanced, coordinated and orderly way.
氢能:中国“双碳”目标下的发展前景、当前障碍及政策建议
氢能清洁低碳的特点使其相对于传统化石能源具有优势,而其稳定性又使其相对水电、光伏发电、风电等可再生能源具有优势。使用氢作为燃料可以实现零碳排放,甚至在能量转换结束时实现净零排放。以氢为载体,通过电网、燃气网、热网等多个能源系统的耦合,建立多能互补的能源体系,实现高效、稳定、灵活的可再生能源综合利用。本文以“双碳”目标为基础,针对以电力、钢铁、交通为代表的高碳排放行业,分析了利用氢能促进深度减碳的可行路径,指出了氢能在各行业发展面临的障碍。结合我国氢能产业发展现状和预期前景,本文提出当前氢能产业发展的重点是协调产业部门和区域发展,构建有利于产业系统协同发展的格局,解决关键技术难题(如绿色制氢或管道储运氢),提高行业标准,促进产业均衡发展。协调有序的方式。
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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来源期刊
CiteScore
1.90
自引率
0.00%
发文量
24
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