碳中和
碳足迹
背景(考古学)
温室气体
氢技术
环境经济学
碳排放税
氢气储存
氢
碳纤维
电
能源消耗
环境科学
自然资源经济学
制氢
工程类
氢经济
业务
化学
计算机科学
经济
电气工程
有机化学
古生物学
算法
复合数
生物
生态学
作者
Yan Yang,Lige Tong,Shaowu Yin,Yuxin Liu,Li Wang,Yinan Qiu,Yulong Ding
标识
DOI:10.1016/j.jclepro.2022.134347
摘要
The year 2022 is the seventh year since the Paris Agreement was signed. In the context of the same goals of achieving carbon neutrality and transforming the energy structure, hydrogen has become one of the most appealing options for realizing a better vision. This paper reviews the status and challenges of hydrogen application paths in high carbon emission sectors, especially in the electricity and heating, transportation, and steel industries. The discussions focus on the potential contribution from the replacement of primary energy and the reduction in carbon emission by switching to a hydrogen economy. In the case of China in 2030, the application of hydrogen in a single sector is expected to save up to $27.8 billion in carbon tax. Additionally, the key technologies for hydrogen production, storage, and carbon footprint in the industry chain are discussed. In contrast, the cost-effective blue hydrogen is still the best choice. The hydrogen storage technologies suitable for large-scale and low energy consumption need to be broken through. The study of carbon footprint in the industry chain will promote the development of hydrogen in the designated sectors and provide insights for the policy decision on hydrogen development at the regional or industrial level.
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