Ait El Fakir Abdellah, Du Pengfei, Yang Bin, Dostagir Nazmul Hasan Md, Fischer Jörg W A, Anzai Akihiko, Shimizu Ken-Ichi, Toyao Takashi
Institute for Catalysis, Hokkaido University, N-21, W-10, Sapporo, 001-0021, Japan.
ChemSusChem. 2025 Jul 17;18(14):e202500188. doi: 10.1002/cssc.202500188. Epub 2025 Jun 19.
The catalytic hydrogenation of carbon dioxide (CO) is a promising strategy for mitigating greenhouse gas emissions while generating sustainable fuels and valuable chemicals. Among potential products, ethanol stands out as a renewable energy carrier due to its compatibility with existing fuel infrastructure and ability to reduce CO emissions when integrated into energy systems. Despite the success in converting CO into C-Chemicals with high yields, the selective conversion of C products, including ethanol, remains a challenge due to the synthetic complexity. This review explores recent advances in CO hydrogenation to ethanol, emphasizing the catalytic performance of noble metals (e.g., Rh, Pd, Au, Ir, and Pt) and non-noble metals (e.g., Co, Cu, and Fe) catalysts. Mechanistic insights into CO conversion and the role of metal active sites in governing selectivity and by product formation are addressed. A critical balance between reductive and C-C coupling steps for achieving high ethanol yields is highlighted, supported by thermodynamic analyses. Experimental results from batch and continuous-flow reactor systems are discussed. Challenges such as low selectivity and byproduct formation are analyzed alongside strategies to address them, including advanced catalyst designs. This review outlines future research directions for catalyst development and the potential industrial application of CO hydrogenation to ethanol.
二氧化碳(CO₂)的催化加氢是一种很有前景的策略,既能减少温室气体排放,又能生产可持续燃料和有价值的化学品。在潜在产品中,乙醇因其与现有燃料基础设施的兼容性以及融入能源系统时减少CO₂排放的能力,成为一种可再生能源载体。尽管在将CO₂高产率转化为碳化学品方面取得了成功,但由于合成过程的复杂性,包括乙醇在内的含碳产物的选择性转化仍然是一个挑战。本文综述了CO₂加氢制乙醇的最新进展,重点介绍了贵金属(如Rh、Pd、Au、Ir和Pt)和非贵金属(如Co、Cu和Fe)催化剂的催化性能。阐述了CO₂转化的机理见解以及金属活性位点在控制选择性和副产物形成中的作用。通过热力学分析强调了实现高乙醇产率时还原步骤和碳-碳偶联步骤之间的关键平衡。讨论了间歇式和连续流反应器系统的实验结果。分析了低选择性和副产物形成等挑战以及应对这些挑战的策略,包括先进的催化剂设计。本文概述了催化剂开发的未来研究方向以及CO₂加氢制乙醇的潜在工业应用。