A Study on the Modification of NH4+Y-zeolite for Improving Adsorption/Desorption Performance of Benzene 


Vol. 25,  No. 1, pp. 33-39, Mar.  2019
10.7464/ksct.2019.25.1.033


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  Abstract

A.C (activated carbon) is mainly used to remove VOCs (volatile organic compounds), however, it has many problems such as fire risk due to increasing of adsorbent surface temperature during VOCs ad/desorption, increased cost by frequent replacement cycles requirement and performance degradation when containing moisture. In order to solve these problems, many researches, hydrophobic zeolite adsorbents, have been reported. In this study, NH4 +Y-zeolite was synthesized with Y-zeolite through steam treatment and acid treatment, which is one of the hydrophobic modification methods, to secure high surface area, thermal stability and humidity resistance. The Y, Y-550-HN, Y-600-HN and Y-650-HN had adsorption capacities of 23 mg g-1, 38 mg g-1, 77 mg g-1, 61 mg g-1. The change of Si/Al ratio, which is an index to confirm the degree of modification, was confirmed by XRF (X-ray fluorescence spectrometer) analysis. As a result, the adsorbtion performance was improved when Y-zeolite modified, and the Si/Al ratio of Y, Y-550-HN, Y-600-HN, Y-650-HN were increased to 3.1765, 6.6706, 7.3079, and 7.4635, respectively. Whereas it was confirmed that structural crystallization due to high heat treatment temperature affected performance degradation. Therefore, there is an optimal heat treatment temperature of Y-zeolite, optimum modification condition study could be a substitute for activated carbon as a condition for producing an adsorbent having high durability and stability.

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  Cite this article

[IEEE Style]

J. YH, N. YI, L. SM, K. SS, "A Study on the Modification of NH4+Y-zeolite for Improving Adsorption/Desorption Performance of Benzene," Clean Technology, vol. 25, no. 1, pp. 33-39, 2019. DOI: 10.7464/ksct.2019.25.1.033.

[ACM Style]

Jang YH, Noh YI, Lee SM, and Kim SS. 2019. A Study on the Modification of NH4+Y-zeolite for Improving Adsorption/Desorption Performance of Benzene. Clean Technology, 25, 1, (2019), 33-39. DOI: 10.7464/ksct.2019.25.1.033.