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高含量沸石陶粒对沥青挥发性有机化合物的吸附效果及吸附机理

Adsorption Effect and Adsorption Mechanism of High Content Zeolite Ceramsite on Asphalt VOCs.

作者信息

Chen Wei, Zhao Hui, Xue Yongjie, Chang Xiwen

机构信息

School of Art, Hubei University of Education, Wuhan 430001, China.

State Key Laboratory of Silicate Materials for Architectures, Wuhan University of Technology, Wuhan 430070, China.

出版信息

Materials (Basel). 2022 Sep 2;15(17):6100. doi: 10.3390/ma15176100.

Abstract

In order to meet the requirements of industrial-scale fixed beds and develop an excellent adsorbent for asphalt VOCs. Zeolite ceramsite containing binder was prepared and successfully applied to the inhibition of asphalt VOCs. The results showed that prepared zeolite ceramsite possessed a high degree of crystallinity, and its main crystal phase is zeolite. The micropores with a pore size of 0.88 nm dominated the pore size distribution of the material. The adsorption experiment of asphalt VOCs showed a lower VOCs adsorption effect of 8.72% at a small dosage of 5%, while at a large dosage of 50%, the adsorption effect of VOCs exceeded 45%. This might be caused by the quite small external specific surface area, which occupied only 8.3% of the total specific surface area, and the low intraparticle diffusion coefficient due to the micropores. Meanwhile, the kinetics diameters of most aromatic hydrocarbons, which were comparable to the pore size of micropores, and the increase in the intraparticle diffusion resistance of aliphatic hydrocarbon molecules were the important factors in obtaining high adsorption of aromatic hydrocarbons in asphalt VOCs. Furthermore, the results indicated that the particulate adsorbent with a microporous structure should be mixed into the asphalt as a fine aggregate rather than an asphalt modifier for better asphalt VOCs adsorption effect.

摘要

为满足工业规模固定床的要求并开发一种用于沥青挥发性有机化合物(VOCs)的优良吸附剂,制备了含粘结剂的沸石陶粒并成功应用于抑制沥青VOCs。结果表明,制备的沸石陶粒具有高度结晶性,其主要晶相为沸石。孔径为0.88nm的微孔主导了该材料的孔径分布。沥青VOCs的吸附实验表明,在5%的小剂量下,VOCs的吸附效果较低,为8.72%,而在50%的大剂量下,VOCs的吸附效果超过45%。这可能是由于外部比表面积相当小,仅占总比表面积的8.3%,以及由于微孔导致的颗粒内扩散系数较低。同时,大多数芳烃的动力学直径与微孔孔径相当,以及脂肪烃分子颗粒内扩散阻力的增加是沥青VOCs中芳烃获得高吸附量的重要因素。此外,结果表明,具有微孔结构的颗粒吸附剂应作为细集料混入沥青中,而不是作为沥青改性剂,以获得更好的沥青VOCs吸附效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b9e/9457900/e3af94199e74/materials-15-06100-g001.jpg

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