二氧化碳捕集快速水合物研究进展:特点、机理及应用

IF 2.7 4区 环境科学与生态学 Q3 ENERGY & FUELS
Xuemin Zhang, Wenqiang Cui, Jiale Chen, Yetao Zhang, Jiacheng Liu, Jinping Li, Qingqing Liu, Qing Yuan, Qingbai Wu
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引用次数: 0

摘要

二氧化碳是一种主要的温室气体,被认为是造成全球变暖和环境问题的重要因素。二氧化碳捕获和分离是减少大气中二氧化碳排放的有效方法。水合物捕集分离CO2的方法为大气中CO2的减排提供了一种可行的解决方案。然而,水合物的快速形成对于利用水合物技术捕获和分离二氧化碳至关重要。因此,本文全面综述了CO2水合物的快速生成特征和动力学规律,并深入分析了温度和压力条件、气液比、添加剂、水化反应体系、水化反应过程等因素对其生成过程的影响。在此基础上,综合分析了不同因素对CO2水合物成核和生长过程的定量影响及调控机制。详细讨论了温度、压力、气液比选择、添加剂浓度和反应体系类型对CO2水合物快速生成的影响机理和动力学规律。阐明了多种因素对CO2水合物快速形成的调控和增强机制。综述了水合物法捕集二氧化碳的应用及其面临的挑战。最后指出了水合物法快速捕集分离CO2的关键问题和未来发展方向。快速生成CO2水合物的协同机制以及多因素的增强作用仍需进一步研究。开发新型反应器结构和优化水化反应过程对促进CO2水合物的快速生成具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Comprehensive Review on the Rapid Hydrate Formation for CO2 Capture: Characteristics, Mechanism, and Applications

CO2, being a major greenhouse gas, is regarded as an important contributor to global warming and environmental problems. CO2 capture and separation are an efficient approach for reducing CO2 emissions in the atmosphere. A hydrate method of CO2 capture and separation provides a feasible solution to the emission reduction of CO2 in the atmosphere. However, the rapid formation of hydrate is crucial for CO2 capture and separation using the hydrate technique. As a consequence, this paper comprehensively reviewed the rapid formation characteristics and the kinetic law of CO2 hydrate, as well as deeply analyzed the influences of temperature and pressure conditions, gas–liquid ratios, additives, hydration reaction system, hydration reaction process, and other factors on its formation process. On this basis, the quantitative impact and regulatory mechanisms of different factors on the nucleation and growth process of CO2 hydrate were comprehensively analyzed. The influence mechanisms and kinetic laws of temperature, pressure, gas–liquid ratio selection, additive concentration, and type of reaction system on CO2 hydrate rapid formation were detailed. The regulatory and enhancement mechanisms of CO2 hydrate rapid formation under multiple factors were elucidated. The application of CO2 capture by the hydrate method and its challenges are summarized. In the end, the key problems and future directions of rapid CO2 capture and separation using the hydrate method were pointed out. The synergistic mechanism of rapid CO2 hydrate formation and the enhancement through multiple factors still need to be further investigated. Developing new reactor structures and optimizing the hydration reaction process are important in promoting the rapid formation of CO2 hydrate.

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来源期刊
Greenhouse Gases: Science and Technology
Greenhouse Gases: Science and Technology ENERGY & FUELS-ENGINEERING, ENVIRONMENTAL
CiteScore
4.90
自引率
4.50%
发文量
55
审稿时长
3 months
期刊介绍: Greenhouse Gases: Science and Technology is a new online-only scientific journal dedicated to the management of greenhouse gases. The journal will focus on methods for carbon capture and storage (CCS), as well as utilization of carbon dioxide (CO2) as a feedstock for fuels and chemicals. GHG will also provide insight into strategies to mitigate emissions of other greenhouse gases. Significant advances will be explored in critical reviews, commentary articles and short communications of broad interest. In addition, the journal will offer analyses of relevant economic and political issues, industry developments and case studies. Greenhouse Gases: Science and Technology is an exciting new online-only journal published as a co-operative venture of the SCI (Society of Chemical Industry) and John Wiley & Sons, Ltd
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