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Efficient CO_2 capture by a novel deep eutectic solvent through facile, one-pot synthesis with low energy consumption and feasible regeneration

机译:一种新型的低共熔溶剂,通过简便,一锅合成,低能耗和可行的再生来有效捕获CO_2

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With steady growth on CO_2 emission over the years, removal of CO_2 from the environment is a critical issue in preventing global warming and climate change. Due to negligible volatility and remarkable thermal stability, ionic liquids have become potential media for CO_2 capture. However, their drawbacks such as high price, toxicity and inefficient energy consumption have severely limited their applications in CO_2 capture. Here, a promising deep eutectic solvent was synthesized by a one-pot method, simply mixing NH_4C1 with monoethanolamine (MEA) at 30 ℃ for 30 min to form [MEAHC1]|MEA] confirmed by ~1H NMR. [MEAHC1][MEA] with EG exhibits a rapid initial kinetics of CO_2 absorption, around 22.5 wt% within 10 min. It also has good thermal-stability, high tolerance to water contents, economically feasibility of regeneration and robust performance in recycle. This novel capture system which can be prepared on-site is feasible for industrialization and offers an efficient, inexpensive and safe system for CO_2 capture.
机译:多年来,随着CO_2排放量的稳定增长,从环境中清除CO_2是防止全球变暖和气候变化的关键问题。由于可忽略的挥发性和出色的热稳定性,离子液体已成为捕获CO_2的潜在介质。然而,它们的缺点,如高价格,毒性和低能耗等,严重限制了它们在CO_2捕集中的应用。在这里,通过一锅法合成了一种很有前景的深共熔溶剂,只需将NH_4C1与单乙醇胺(MEA)在30℃下混合30分钟,以形成[MEAHC1] | MEA],这经〜1 H NMR证实。含EG的[MEAHC1] [MEA]表现出快速的CO_2吸收初始动力学,在10分钟内约为22.5 wt%。它还具有良好的热稳定性,对水含量的高耐受性,再生的经济可行性和循环中的强劲性能。可以现场准备的这种新颖的捕集系统对于工业化是可行的,并且为CO_2捕集提供了一种高效,廉价且安全的系统。

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