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Novel Biphasic Solvent with Tunable Phase Separation for CO_2 Capture: Role of Water Content in Mechanism, Kinetics, and Energy Penalty

机译:用于CO_2捕获的可调相分离的新型双相溶剂:水含量在机制,动力学和能源罚球中的作用

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摘要

The biphasic solvent-based absorption process has been regarded as a promising alternative to the monoethanolamine (MEA)-based process because of its high absorption capacity, phase separation behavior, and potential for conserving energy for CO2 capture. A trade-off between the absorption capacity and phase separation ratio is critical for developing an advanced biphasic solvent. Typically, water content in the biphasic solvent can be manipulated to tune the phase separation behavior. To explore the relationship between water content and phase separation behavior, an inert organic solvent, 1-methyl-2-pyrrolidinone, was added as a substitute for water in a biphasic solvent, specifically a triethylenetetramine (TETA) and 2-(diethylamino)ethanol (DEEA) blend. Moreover, the water content kinetics and thermodynamics relationships were also evaluated. Experimental results revealed that reducing the water content was beneficial for phase separation but adverse for adsorption capacity. Kinetic analysis indicated that the water content did not significantly affect the rate of CO2 absorption at a rich loading. Furthermore, the regeneration heat decreased with the water content. The regeneration heat of TETA-DEEA with a water content of 20 wt % was almost 50% less than that of MEA solution. C-13 nuclear magnetic resonance analysis revealed that the water content did not affect the reaction mechanism between CO2 and amines.
机译:基于双溶剂的吸收过程被认为是对单乙醇胺(MEA)的替代方案,基于单乙醇胺(MEA)的过程,因为其高吸收能力,相分离行为以及用于CO 2捕获的能量的潜力。吸收能力和相分离率之间的权衡对于开发先进的双相溶剂至关重要。通常,可以操纵双相溶剂中的水含量以调谐相分离行为。为了探讨水含量和相分离行为之间的关系,将惰性有机溶剂,1-甲基-2-吡咯烷酮加入到双相溶剂中的水的替代品,特别是三乙基甲胺(TETA)和2-(二乙基氨基)乙醇(deea)混合。此外,还评估了水含量动力学和热力学关系。实验结果表明,降低水含量有益的相分离,但吸附能力不佳。动力学分析表明,水含量没有显着影响富含负载的二氧化碳吸收率。此外,随水含量降低再生热量。含水量为20wt%的TETA-DEA的再生热比MEA溶液的含水量为小于50%。 C-13核磁共振分析显示,水含量不影响CO 2和胺之间的反应机制。

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  • 来源
    《Environmental Science & Technology》 |2019年第8期|4470-4479|共10页
  • 作者单位

    Zhejiang Univ Technol Coll Environm Hangzhou 310014 Zhejiang Peoples R China;

    Zhejiang Univ Technol Coll Environm Hangzhou 310014 Zhejiang Peoples R China;

    Zhejiang Univ Water Resource & Elect Power Hangzhou 310018 Zhejiang Peoples R China;

    Zhejiang Univ Technol Coll Environm Hangzhou 310014 Zhejiang Peoples R China;

    Zhejiang Univ Technol Coll Environm Hangzhou 310014 Zhejiang Peoples R China;

    North China Elect Power Univ Sch Environm Sci & Engn Baoding 071003 Peoples R China;

    Zhejiang Univ Technol Coll Environm Hangzhou 310014 Zhejiang Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 22:36:52

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