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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Selective extraction of CO_2 from simulated flue gas using polymeric ionic liquid sorbent coatings in solid-phase microextraction gas chromatography
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Selective extraction of CO_2 from simulated flue gas using polymeric ionic liquid sorbent coatings in solid-phase microextraction gas chromatography

机译:固相微萃取气相色谱中使用聚合物离子液体吸附剂涂层从模拟烟气中选择性萃取CO_2

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The CO_2 selectivity of two polymeric task-specific ionic liquid sorbent coatings, poly(1-vinyl-3-hexylimidazolium) bis[(trifluoromethyl)sulfonyl]imide [poly(VHIM-NTf_2)] and poly(1-vinyl-3-hexylimidazolium) taurate [poly(VHIM-taurate)], was examined using solid-phase microextraction (SPME) for the determination of CO_2 in simulated flue gas. For comparison purposes, a commercial SPME fiber, Carboxen?-PDMS, was also studied. A study into the effect of humidity revealed that the poly(VHIM-taurate) fiber exhibited enhanced resistance to water, presumably due to the unique mechanism of CO_2 capture. The effect of temperature on the performance of the PIL-based and Carboxen fibers was examined by generating calibration curves under various temperatures. The sensitivity, linearity, and linear range of the three fibers were evaluated. The extraction of CH_4 and N_2 was performed and the selectivities of the PIL-based and Carboxen fibers were compared. The poly(VHIM-NTf_2) fiber was found to possess superior CO_2/CH_4 and CO_2/N_2 selectivities compared to the Carboxen fiber, despite the smaller film thicknesses of the PIL-based fibers. A scanning electron microscopy study suggests that the amine group of the poly(VHIM-taurate) is capable of selectively reacting with CO_2 but not CH_4 or N_2, resulting in a significant surface morphology change of the sorbent coating.
机译:两种聚合物的特定任务型离子液体吸附剂涂层的CO_2选择性,即聚(1-乙烯基-3-己咪唑鎓)双[(三氟甲基)磺酰基]酰亚胺[聚(VHIM-NTf_2)]和聚(1-乙烯基-3-己咪唑鎓) )牛磺酸盐[poly(VHIM-taurate)],使用固相微萃取(SPME)检查,以确定模拟烟气中的CO_2。为了进行比较,还研究了商品化的SPME纤维Carboxen?-PDMS。对湿度影响的研究表明,聚(VHIM-牛磺酸)纤维表现出增强的耐水性,这可能是由于CO_2捕获的独特机制所致。通过在不同温度下生成校准曲线,可以检查温度对PIL基纤维和羧基纤维性能的影响。评价了三种纤维的灵敏度,线性和线性范围。进行了CH_4和N_2的萃取,并比较了PIL基纤维和Carboxen纤维的选择性。发现聚(VHIM-NTf_2)纤维相比于羧甲基纤维素纤维具有优异的CO_2 / CH_4和CO_2 / N_2选择性,尽管PIL基纤维的膜厚度较小。扫描电子显微镜研究表明,聚(VHIM-牛磺酸盐)的胺基能够选择性地与CO_2反应,但不能与CH_4或N_2反应,从而导致吸附剂涂层的表面形态发生重大变化。

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