二氧化碳捕集技术的最新进展

Guanchu Lu, Zhe Wang, Umair Hassan Bhatti, Xianfeng Fan
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引用次数: 1

摘要

人为二氧化碳排放的持续增加被广泛认为是全球气候变化的主要原因之一。为了解决这一问题,在开发二氧化碳捕获和利用技术方面取得了重大进展,为减少碳排放和促进碳经济提供了新的解决方案。本文综述了近年来CO2捕集与分离技术的研究进展,包括燃烧前燃烧、燃烧后燃烧、全氧燃烧、化学环燃烧和钙环燃烧。在这些技术中,燃烧后技术被认为是减少现有发电厂二氧化碳排放的最有前途的选择之一,因为它可以很容易地集成到现有设施中,而不需要进行重大修改。因此,本文第二部分重点介绍了各种燃烧后过程和技术,如物理吸收、胺洗涤、双碱吸收、冷冻氨、膜分离和固体吸附,并特别强调了最新的研究报告。由于胺基化学吸收是最主要的燃烧后CO2捕获技术,第三部分总结了胺基吸收技术的最新进展,涵盖了传统的和新兴的吸收剂类型,如单胺、混合胺、双相胺和非水胺工艺。对不同液体吸收工艺在再生能耗、CO2进气能力、最优运行条件等方面进行了比较,对比数据汇总在表格中。一项重要的文献综述和各种技术的比较表明,非水胺吸收剂可以替代传统的单乙醇胺(MEA)工艺。本文综述的目的是为加快CCS技术的进一步研究和发展提供策略和前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent progress in carbon dioxide capture technologies: A review
The continuous increase in anthropogenic CO2 emissions is widely acknowledged as one of the main reasons for global climate change. To address this issue, significant advancements have been made in developing CO2 capture and utilization technologies that offer new solutions for mitigating carbon emissions and promoting a carbon economy. In this review, we summarize the recent research progress in CO2 capture and separation technologies, including pre-combustion, post-combustion, oxy-fuel combustion, chemical looping combustion and calcium looping combustion. Among these technologies, post-combustion is seen as one of the most promising options for reducing CO2 emissions from existing power plants, as it can be easily integrated into existing facilities without requiring major modifications. Therefore, the second section of this article focuses on the various post-combustion processes and technologies, such as physical absorption, amine scrubbing, dual-alkali absorption, chilled ammonia, membrane separation, and solid adsorption, with a particular emphasis on most recent research reports. As amine-based chemical absorption is the most leading post-combustion CO2 capture technique, the third section summarizes the recent development in amine-based absorption technology by covering conventional and emerging types of absorbents such as single amine, blended amine, biphasic amine, and non-aqueous amine processes. The different liquid absorption-based process is compared in terms of regeneration energy consumption, CO2 intake capacity, and optimal operating conditions, and the comparison data is summarized in tables. A critical literature review and comparison of various techniques show that non-aqueous amine absorbents can be promising alternatives to the conventional monoethanolamine (MEA) process. The goal of this review is to provide strategies and perspectives for accelerating the further study and development of CCS technologies.
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