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首页> 外文期刊>Chemical Engineering Science >Highly efficient and selective absorption of H2S in phenolic ionic liquids: A cooperative result of anionic strong basicity and cationic hydrogenbond donation
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Highly efficient and selective absorption of H2S in phenolic ionic liquids: A cooperative result of anionic strong basicity and cationic hydrogenbond donation

机译:在酚类离子液体中高效和选择性地吸收H2S:阴离子强碱和阳离子氢禁止捐赠的合作结果

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A series of phenolic ILs containing different cations were synthesized and investigated for the absorption of H2S and CO2 in this work. It is interestingly found that the solubilities of H2S in these phenolic ILs are comparably high because of the strong interaction of basic phenolate anion with acidic H2S, while the solubilities of CO2 decrease significantly with the increase of cationic hydrogen-bond donation. Tetramethylguanidinium phenolate ([TMGH][PhO]), which is constructed with anion of strong basicity and cation of strong hydrogen-bond donating ability, is thus highlighted with both high solubilities of H2S (0.56 mol/mol at 313.2 K and 0.1 bar, and 0.85 mol/mol at 313.2 K and 1 bar) and high selectivities of H2S/CO2 (6.2 for the ratio of H2S solubility at 313.2 K and 0.1 bar vs. CO2 solubility at 313.2 K and 1 bar, and 9.4 for the ratio of H2S solubility at 313.2 K and 1 bar vs. CO2 solubility at 313.2 K and 1 bar). Owing to the small molecular size of [TMGH][PhO], the absolute solubilities of H2S in it (2.68 mol/kg at 313.2 K and 0.1 bar, and 4.08 mol/kg at 313.2 K and 1 bar) are particularly fascinating, and much higher than other absorbents reported in the literature. Furthermore, [TMGH][PhO] is costeffective in comparison with other functionalized ILs specifically designed for H2S capture, since it can be facilely synthesized from the one-step neutralization of readily available 1,1,3,3tetramethylguanidine and phenol. The results obtained in this work indicate that [TMGH][PhO] is a promising candidate for the selective sweetening of natural gas. (C) 2017 Elsevier Ltd. All rights reserved.
机译:合成了一系列含有不同阳离子的酚醛酸ILS,并研究了该工作中H2S和CO2的吸收。有趣的是,由于碱性酚类阴离子与酸性H2S的良好相互作用,H2S在这些酚醛IL中的溶解度相当高,而CO 2的溶解度随着阳离子氢键捐赠的增加而显着降低。因此,通过H 2 S的高溶解度强化(313.2K和0.1巴的高溶解度,由强碱性和强氢捐献能力的强度和阳离子构成的苯酚([Tmgh] [PhO])构成的苯酚([tmgh] [pho])。在313.2 k和1巴下的0.85mol / mol),H 2 S / CO 2的高选择性(6.2,用于在313.2K和0.1巴的313.2k和0.1巴的比例为313.2k和1巴,9.4的比例在313.2K和1巴的313.2K和1巴的溶解度在313.2K和1巴中溶解。由于[TMGH] [PHO]的小分子大小,其H 2 S中的绝对溶解度(313.2K和0.1巴的2.68mol / kg,4.08mol / kg)特别令人迷人,并且比文献中报道的其他吸收剂高得多。此外,[TMGH] [的PhO]与专门为H2S捕获设计的,因为它可以从易得的1,1,3,3tetramethylguanidine和苯酚的单步中和来合成轻便其它官能离子液体相比,具有成本效益的。本作作品中获得的结果表明[TMGH] [PHO]是一种有希望的天然气甜味的候选者。 (c)2017 Elsevier Ltd.保留所有权利。

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