生产(经济)
乙醇燃料
乙醇
生化工程
化学
经济
工程类
生物化学
微观经济学
作者
Samah A. Mahyoub,Fahim A. Qaraah,Fatima Omar Al‐Qwairi,Abdulwahab Salah,Esraa Kotob,Saheed A. Ganiyu,Turki N. Baroud,Q.A. Drmosh
标识
DOI:10.1002/adsu.202500604
摘要
Abstract The electrochemical conversion of carbon dioxide (CO 2 ) into ethanol (C 2 H 5 OH) presents a promising pathway for reducing greenhouse gas emissions while offering a renewable alternative to conventional fossil fuels and materials. The efficiency of this process is heavily influenced by the performance of electrocatalysts, electrolyzers, and electrolyte compositions. However, significant barriers remain, including low conversion efficiency, limited stability, high costs, restricted mass transport, and poor selectivity. Despite notable progress in CO 2 electroreduction to C 2 H 5 OH, further advancements are required to establish it as an economically viable and scalable technology for sustainable energy production. This review provides a comprehensive overview of recent innovations in the field, focusing on the development of advanced electrocatalysts, optimized electrolyte systems, and improved electrolyzer designs. By analyzing these key factors, this work aims to offer valuable insights into the current progress and challenges associated with CO 2 ‐to‐C 2 H 5 OH electroreduction, highlighting the essential steps needed for its practical implementation.
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