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首页> 外文期刊>Renewable & Sustainable Energy Reviews >Simultaneous capture of acid gases from natural gas adopting ionic liquids: Challenges, recent developments, and prospects
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Simultaneous capture of acid gases from natural gas adopting ionic liquids: Challenges, recent developments, and prospects

机译:同时捕获采用离子液体的天然气酸性气体:挑战,最近的发展和前景

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摘要

The impurities CO2 and H2S in natural gas (NG) are recognized as major contaminants that exacerbate economic, operational, and environmental losses. Generally, these undesirable impurities are removed using well-established amine-based absorption methods. However, typical methods in this category are cost-intensive, primarily due to their high operating and maintenance costs. The ionic liquids (ILs) are emerging as alternative solvents owing to their lower regeneration costs and non-flammable nature. However, ILs could not attain a significant attention from practitioners due to the lack of effective communication between industry and academia. In this context, a comprehensive review and analysis of specific ILs that can simultaneously remove H2S and CO2 is proposed. This article highlights the major challenges and issues associated with various acid gases removal approaches, particularly IL-based absorption techniques. Recent developments toward solving the major issues associated with absorption using ILs are assessed to highlight areas for further improvement. The acid gas solubility data for ILs are analyzed to evaluate the feasibility and associated major constraints for largescale process designs using commercial process simulators. Furthermore, the fundamentals for the process systems engineering-based investigations using ILs are also highlighted and evaluated. This study concludes that ILs have the potential to completely replace conventional solvents, have synergistic effects in terms of energy savings, and provide feasible solutions to maintenance-related issues.
机译:天然气(NG)中的杂质CO2和H2S被认为是加剧经济,运营和环境损失的主要污染物。通常,使用良好的胺基吸收方法除去这些不希望的杂质。然而,该类别的典型方法是成本密集的,主要是由于其高运营和维护成本。由于其再生成本和不易燃性质,离子液体(ILS)作为替代溶剂。然而,由于行业和学术界之间缺乏有效的沟通,ILS无法达到从业者的重大关注。在这种情况下,提出了可以同时去除H2S和CO2的特定IL的全面审查和分析。本文突出了与各种酸气体去除方法,特别是基于IL的吸收技术相关的主要挑战和问题。评估最近解决与使用ILS吸收相关的主要问题的发展,以突出显示进一步改善的区域。分析了ILS的酸性气体溶解度数据,以评估使用商业过程模拟器的Largescale过程设计的可行性和相关主要限制。此外,还突出显示和评估了使用ILS的过程系统的基于工程的研究的基础。本研究得出结论,ILS有可能完全取代常规溶剂,在节能方面具有协同效应,并为维护相关问题提供可行的解决方案。

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