电气化
可再生能源
工艺工程
电
过程(计算)
焦耳加热
工作(物理)
焦耳(编程语言)
电加热
发电
化石燃料
燃烧
环境科学
废物管理
工程类
高效能源利用
机械工程
计算机科学
化学
电气工程
功率(物理)
物理
量子力学
操作系统
有机化学
作者
Lei Zheng,Matteo Ambrosetti,Enrico Tronconi
标识
DOI:10.1021/acsengineeringau.3c00045
摘要
The supply of the heat required for chemical processes via renewable electricity, i.e., process electrification, provides an alternative strategy for replacing conventional fossil fuel combustion. This approach enables fast, selective, and uniform heating, offers great potential for utilizing the excess renewable electric energy, and brings about an important chance for mitigating CO2 emissions. In this work, we provide an overview of the state-of-the-art electricity-to-heat driven catalytic processes. The principle and fundamentals of Joule heating are provided and briefly compared to induction and microwave heating in view of electrifying catalytic processes. By this comparison, we assess that Joule heating can be regarded as the most promising method for process electrification, and its applications to methane reforming, cracking reactions, CO2 valorization, and transient process operation are then reviewed. Advantages and disadvantages are critically addressed in terms of efficiency, potential for scale-up and possibility of retrofitting. The current challenges in the development of advanced electrified processes as well as the opportunities of next generation electrification techniques are discussed.
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