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首页> 外文期刊>ACS Omega >Experimental Study on Organic Sulfur Removal in Bituminous Coal by a 1-Carboxymethyl-3-methyl Imidazolium Bisulfate Ionic Liquid and Hydrogen Peroxide Solution
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Experimental Study on Organic Sulfur Removal in Bituminous Coal by a 1-Carboxymethyl-3-methyl Imidazolium Bisulfate Ionic Liquid and Hydrogen Peroxide Solution

机译:1 - 羧甲基-3-甲基咪唑鎓二硫酸盐离子液和过氧化氢溶液中沥青煤中有机硫去除的实验研究

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In order to improve the total sulfur removal rate in coal combustion, an acidic ionic liquid (IL) 1-carboxymethyl-3-methylimidazolium hydrogen sulfate ([HOOCCH_(2)mim][HSO_(4)]) as the extractant combined with the oxidant 30% hydrogen peroxide (H_(2)O_(2)) was applied to reduce the total sulfur content, and its microscopic mechanism of desulfurization was analyzed. The experimental results show that the desulfurization rate of the [HOOCCH_(2)mim][HSO_(4)]–H_(2)O_(2) (1:10) solution was 45.12% and the organic sulfur removal rate was 16.26%, which were significantly higher than those of only H_(2)O_(2) or pure [HOOCCH_(2)mim][HSO_(4)]. Fourier-transform infrared (FTIR) spectroscopy and X-ray photoelectron spectroscopy analyses showed that the mercaptan ?SH and disulfide ?S–S– in coal decreased after being treated with IL–H_(2)O_(2). In particular, the results of FTIR spectroscopy indicated that the relative proportion of ?S–S–and ?SH treated with IL–H_(2)O_(2) (1:10) decreased by 31.9 and 27.2%, respectively, compared with that of a pure IL. This is due to H_(2)O_(2) oxidation; ?SH and ?S–S– were oxidized to sulfoxide and then the sulfoxide transferred from the coal phase to the IL phase, which improved organic sulfur removal from coal. Therefore, the combination of an ionic liquid and H_(2)O_(2) could increase the total desulfurization rate. In addition, the thermogravimetric analysis of coal is divided into four different stages; the weight loss during the combustion stage and the residues show that the IL–H_(2)O_(2) could improve the coal combustion because of good previous swelling and destruction of bridge bonds and hydrogen bonding of coal. Besides, the fewer residues in IL–H_(2)O_(2)-treated coals also indicate that a less amount of inorganic substance is left in coal after IL–H_(2)O_(2) desulfurization, which is consistent with the desulfurization results.
机译:为了提高煤燃烧中的总硫去除率,作为萃取剂结合的酸性离子液体(IL)1-羧甲基-3-甲基咪唑硫酸铵([HOOCCH_(2)MIM] [HSO_(4)])氧化剂30%过氧化氢(H_(2)O_(2))被施加以降低总硫含量,分析其微观脱硫的微观机理。实验结果表明[HOOCCH_(2)MIM] [HSO_(4)] - H_(2)O_(2)(1:10)溶液的脱硫率为45.12%,有机硫去除率为16.26% ,这显着高于仅限H_(2)O_(2)或纯[HOOCCH_(2)MIM] [HSO_(4)]。傅立叶变换红外(FTIR)光谱和X射线光电子能谱分析表明,硫醇αSH和二硫化物在用IL-H_(2)O_(2)处理后降低。特别地,FTIR光谱的结果表明,用IL-H_(2)O_(2)(2)(2)(2)o_(2)(2)℃(1:10)处理的相对比例分别在31.9%和27.2%上减少纯粹的IL。这是由于H_(2)O_(2)氧化; ?SH和αs-s-被氧化成亚砜,然后将从煤阶段转移到IL相的亚砜,从而改善了从煤中除去的有机硫。因此,离子液体和H_(2)O_(2)的组合可以增加总脱硫率。此外,煤的热重分析分为四个不同的阶段;燃烧阶段和残基期间的重量损失表明IL-H_(2)O_(2)可以改善煤燃烧,因为良好的膨胀和破坏煤炭粘合和煤的氢键。此外,IL-H_(2)O_(2)℃的残留物越少,IL-H_(2)O_(2)脱硫后,煤中的煤中留下了少量的无机物质,这与脱硫结果。

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