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首页> 外文期刊>The Korean journal of chemical engineering >Synthesis conditions of porous clay heterostructure (PCH) optimized for volatile organic compounds (VOC) adsorption
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Synthesis conditions of porous clay heterostructure (PCH) optimized for volatile organic compounds (VOC) adsorption

机译:优化了挥发性有机化合物(VOC)吸附的多孔粘土异质结构(PCH)的合成条件

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摘要

Volatile organic compounds (VOCs) can cause carcinogenic risk, odor problems, and even generation of particulate matter. Adsorption is an effective technique for controlling VOC emissions at the source. In this study, porous clay heterostructure (PCH) was considered as a possible VOC adsorbent, and the synthesis conditions were optimized. The ratio of tetraethyl orthosilicate (TEOS) compared to organoclay and dodecylamine (DDA) was selected as a synthesis condition variable (organoclay: dodecylamine: TEOS=1 : 1 : 30-120). We investigated the change of morphology and porosity of PCH by using a transmission electron microscope, nitrogen adsorption/desorption, and x-ray fluorescence. The porosity of PCH was changed depending on the TEOS ratio. As the ratio of TEOS decreased, the pore size of the PCH also decreased. However, irregular layer expansion was observed due to the swelling of organoclay by DDA in PCH30. To evaluate the possibility of using PCH as an adsorbent for low concentration VOCs, specifically toluene and decane, adsorption experiments were conducted, and it was confirmed that micropores play an essential role for low concentration VOC adsorption. PCH60 was selected as an optimal condition. The toluene and decane adsorption capacity of PCH60 was, respectively, measured as 122.92 mg/g and 886.73 mg/g.
机译:挥发性有机化合物(VOC)可能导致致癌风险,气味问题,甚至产生颗粒物。吸附是控制源头VOC排放的有效技术。在这项研究中,多孔粘土异质结构(PCH)被认为是一种可能的VOC吸附剂,并优化了合成条件。选择与有机粘土和十二烷基胺(DDA)相比的原硅酸四乙酯(TEOS)的比例作为合成条件变量(有机粘土:十二烷基胺:TEOS = 1:1:30-120)。我们通过使用透射电子显微镜,氮吸附/解吸和X射线荧光研究了PCH的形态和孔隙率的变化。 PCH的孔隙率根据TEOS比而变化。随着TEOS比例的降低,PCH的孔径也减小。然而,由于PCH30中DDA溶胀了有机粘土,因此观察到了不规则的层膨胀。为了评估将PCH用作低浓度VOC(特别是甲苯和癸烷)吸附剂的可能性,进行了吸附实验,证实了微孔对于低浓度VOC吸附起着至关重要的作用。选择PCH60作为最佳条件。 PCH60的甲苯和癸烷吸附容量分别为122.92 mg / g和886.73 mg / g。

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