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首页> 外文期刊>RSC Advances >Hydrogen sulfide gas capture by organic superbase 1,8-diazabicyclo-[5.4.0]-undec-7-ene through salt formation: salt synthesis, characterization and application for CO2 capture
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Hydrogen sulfide gas capture by organic superbase 1,8-diazabicyclo-[5.4.0]-undec-7-ene through salt formation: salt synthesis, characterization and application for CO2 capture

机译:有机超碱1,8-二氮杂双环-[5.4.0]-十一碳-7-烯通过成盐作用捕集硫化氢气体:盐的合成,表征及CO2捕集的应用

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Hydrogen sulfide (H _(2) S) is a toxic and environment polluting gas like other acid gases and hence its capture and sequestration is equally important before release into the atmosphere. In this regard, solvent-based processes involving aqueous tertiary amine systems were extensively studied and used. Herein, in line with an analogous pathway, we report capture of H _(2) S gas in the form of its salt with an organic superbase such as 1,8-diazabicyclo-[5.4.0]-undec-7-ene (DBU) and the obtained salt was thoroughly studied. Spectroscopic analyses such as NMR and FTIR analyses confirmed that the H _(2) S molecule formed an ionic solid adduct with DBU through protonation of its sp ~(2) -hybridized N atom. The stability of formed [DBUH][SH] salt in aqueous solution as well as under thermal treatment was also studied and monitored by NMR and thermogravimetric analysis (TGA), respectively. In aqueous medium, compared to DBU, the [DBUH][SH] salt exhibited long term stability without decomposition whereas under thermal treatment both DBU and its salt with H _(2) S turned out to be thermally unstable where salt showed a volatile nature like a sublimized solid. Dissolution feasibility of [DBUH][SH] salt was also compared with DBU in polar as well as non-polar solvents and even though the [DBUH][SH] salt had an ionic nature, like DBU, it was also found soluble in various polar and non-polar solvents. Considering the stability of [DBUH][SH] salt in aqueous medium, its aqueous solution was further explored as a solvent media for CO _(2) capture where the influence of process parameters such as the influence of concentration of water in the solvent and CO _(2) flow rate was studied. Most importantly, here we demonstrated the synthesis of [DBUH][SH] salt for easy capture of H _(2) S gas following reaction with DBU under ambient reaction conditions.
机译:硫化氢(H _(2)S)像其他酸性气体一样,是有毒且污染环境的气体,因此在释放到大气中之前,其捕获和封存同样重要。在这方面,涉及含水叔胺系统的基于溶剂的方法得到了广泛的研究和使用。在这里,根据类似的途径,我们报告了以有机超碱(例如1,8-二氮杂双环-[5.4.0]-十一碳-7-烯( DBU)和获得的盐进行了彻底的研究。诸如NMR和FTIR等光谱分析证实,H_(2)S分子通过其sp〜(2)杂化的N原子的质子化而与DBU形成离子固体加合物。还分别通过NMR和热重分析(TGA)研究和监测了形成的[DBUH] [SH]盐在水溶液中以及在热处理下的稳定性。在水性介质中,与DBU相比,[DBUH] [SH]盐表现出长期稳定性而不分解,而在热处理下,DBU及其与H _(2)S形成的盐均表现出热稳定性,其中盐表现出挥发性像升华的固体。还比较了[DBUH] [SH]盐与DBU在极性和非极性溶剂中的溶解可行性,即使[DBUH] [SH]盐像DBU一样具有离子性质,也发现它可溶于各种极性和非极性溶剂。考虑到[DBUH] [SH]盐在水性介质中的稳定性,因此进一步探索了其水溶液作为CO_(2)捕集的溶剂介质,其中工艺参数如溶剂中水的浓度和研究了CO_(2)流量。最重要的是,在此我们证明了在环境反应条件下与DBU反应后,易于捕获H_(2)S气体的[DBUH] [SH]盐的合成。

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