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重新定义超越化石燃料的轻质芳烃合成交响曲:通过铁基/HZSM-5串联路线进行合成气转化的探索之旅。

Redefining the Symphony of Light Aromatic Synthesis Beyond Fossil Fuels: A Journey Navigating through a Fe-Based/HZSM-5 Tandem Route for Syngas Conversion.

作者信息

Nawaz Muhammad Asif, Blay-Roger Rubén, Saif Maria, Meng Fanhui, Bobadilla Luis F, Reina Tomas Ramirez, Odriozola J A

机构信息

Department of Inorganic Chemistry and Materials Sciences Institute, University of Seville-CSIC, 41092 Seville, Spain.

State Key Laboratory of Clean and Efficient Coal Utilization, College of Chemical Engineering and Technology, Taiyuan University of Technology, Taiyuan 030024, China.

出版信息

ACS Catal. 2024 Oct 1;14(20):15150-15196. doi: 10.1021/acscatal.4c03941. eCollection 2024 Oct 18.

Abstract

The escalating concerns about traditional reliance on fossil fuels and environmental issues associated with their exploitation have spurred efforts to explore eco-friendly alternative processes. Since then, in an era where the imperative for renewable practices is paramount, the aromatic synthesis industry has embarked on a journey to diversify its feedstock portfolio, offering a transformative pathway toward carbon neutrality stewardship. This Review delves into the dynamic landscape of aromatic synthesis, elucidating the pivotal role of renewable resources through syngas/CO utilization in reshaping the industry's net-zero carbon narrative. Through a meticulous examination of recent advancements, the current Review navigates the trajectory toward admissible aromatics production, highlighting the emergence of Fischer-Tropsch tandem catalysis as a game-changing approach. Scrutinizing the meliorated interplay of Fe-based catalysts and HZSM-5 molecular sieves would uncover the revolutionary potential of rationale design and optimization of integrated catalytic systems in driving the conversion of syngas/CO into aromatic hydrocarbons (especially BTX). In essence, the current Review would illuminate the path toward cutting-edge research through in-depth analysis of the transformative power of tandem catalysis and its capacity to propel carbon neutrality goals by unraveling the complexities of renewable aromatic synthesis and paving the way for a carbon-neutral and resilient tomorrow.

摘要

对传统依赖化石燃料以及与其开采相关的环境问题的担忧日益加剧,这促使人们努力探索环保替代工艺。从那时起,在可再生实践至关重要的时代,芳烃合成行业踏上了使其原料组合多样化的征程,为实现碳中和管理提供了一条变革性途径。本综述深入探讨了芳烃合成的动态格局,阐明了通过合成气/一氧化碳利用可再生资源在重塑该行业的净零碳故事方面的关键作用。通过对近期进展的细致考察,本综述梳理了通往可允许芳烃生产的轨迹,突出了费托串联催化作为一种改变游戏规则的方法的出现。仔细研究铁基催化剂与HZSM-5分子筛之间改善的相互作用,将揭示合理设计和优化集成催化系统在推动合成气/一氧化碳转化为芳烃(尤其是苯、甲苯和二甲苯)方面的革命性潜力。从本质上讲,本综述将通过深入分析串联催化的变革力量及其通过揭示可再生芳烃合成的复杂性和为碳中和及有韧性的未来铺平道路来推动碳中和目标的能力,照亮通往前沿研究的道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6bde/11494843/322faaacd4ad/cs4c03941_0001.jpg

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