等离子体二氧化碳利用综述:开发可持续化学品生产的工艺考虑因素

Pub Date : 2024-08-31 DOI:10.1088/2058-6272/ad52c4
Sirui LI, Giulia De FELICE, Simona EICHKORN, Tao SHAO and Fausto GALLUCCI
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引用次数: 0

摘要

基于等离子体的工艺,特别是碳捕获和利用工艺,在应对环境挑战和推动循环碳经济方面具有巨大潜力。虽然在了解等离子体诱导反应、等离子体与催化剂的相互作用以及反应器开发以提高能源效率和转化率方面取得了重大进展,但有关整体工艺开发的研究仍存在明显差距。本综述强调了在工艺层面(包括集成和强化)进行考虑的关键需求,以促进用于化工生产的等离子体技术的工业化。本综述以等离子体工艺的开发为中心进行讨论,主要关注二氧化碳的转化,为指导今后的工作提供见解,以便将该技术从实验室规模过渡到工业应用。找出当前的研究差距,特别是在等离子体反应器升级和与其他工艺单元集成方面的差距,是解决关键问题的关键。本综述进一步深入探讨了工艺评价和评估方面的相关研究,提供了方法论见解,并强调了全面经济和可持续性分析的关键因素。此外,还对新型等离子体系统的最新进展进行了综述,介绍了可重塑未来工艺开发的独特优势和创新理念。本综述提供了导航前进道路的基本信息,确保全面了解基于等离子体的 CCU 工艺开发过程中的挑战和机遇。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A review on plasma-based CO2 utilization: process considerations in the development of sustainable chemical production
Plasma-based processes, particularly in carbon capture and utilization, hold great potential for addressing environmental challenges and advancing a circular carbon economy. While significant progress has been made in understanding plasma-induced reactions, plasma-catalyst interactions, and reactor development to enhance energy efficiency and conversion, there remains a notable gap in research concerning overall process development. This review emphasizes the critical need for considerations at the process level, including integration and intensification, to facilitate the industrialization of plasma technology for chemical production. Discussions centered on the development of plasma-based processes are made with a primary focus on CO2 conversion, offering insights to guide future work for the transition of the technology from laboratory scale to industrial applications. Identification of current research gaps, especially in upscaling and integrating plasma reactors with other process units, is the key to addressing critical issues. The review further delves into relevant research in process evaluation and assessment, providing methodological insights and highlighting key factors for comprehensive economic and sustainability analyses. Additionally, recent advancements in novel plasma systems are reviewed, presenting unique advantages and innovative concepts that could reshape the future of process development. This review provides essential information for navigating the path forward, ensuring a comprehensive understanding of challenges and opportunities in the development of plasma-based CCU process.
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