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dc.contributor.author김기현-
dc.date.accessioned2022-11-14T05:03:57Z-
dc.date.available2022-11-14T05:03:57Z-
dc.date.issued2021-10-
dc.identifier.citationChemical Engineering Journal, v. 421, NO. 2, article no. 127813, Page. 1-14en_US
dc.identifier.issn1385-8947;1873-3212en_US
dc.identifier.urihttps://www.sciencedirect.com/science/article/pii/S1385894720339334?via%3Dihuben_US
dc.identifier.urihttps://repository.hanyang.ac.kr/handle/20.500.11754/176712-
dc.description.abstractMetal-organic frameworks (MOFs) have opened a new path for the construction of air/gas purification systems through a number of technological routes (e.g., adsorption and/or catalysis). To develop MOFs with upgraded adsorption performance, the breakthrough (BT) behavior of two MOF sorbents (e.g., MOF-199 and UiO-66-NH2) was investigated using gaseous benzene under the interactive conditions between the two key variables: (i) the inlet benzene vapor concentration (10 to 200 ppm) and (ii) relative humidity (RH = 0 to 100%). According to the comparison of adsorption performance derived using gaseous benzene, MOF-199 outperformed UiO-66-NH2 by 2 to 16-fold when assessed at 10% BT and zero RH. This observation thus reflects the high reactivity of Cu-metal sites for interaction with benzene ring compared with Zr sites. The dynamic adsorption data for the two MOFs at various RH conditions also indicated the competitive inhibition effect of water vapor on benzene adsorption mechanism, especially at low benzene concentrations (< 100 ppm) and high RH level of > 50%. Adsorption kinetics of benzene onto the two MOFs showed good fitting with both pseudo-first and -second-order kinetics at low RH (0–20%) conditions, whereas the results at high RH (> 50%) failed to fit with both kinetics (e.g., R2 ≤ 0.87) because of the high roll-up effect. The water vapor acted as a competitive component, reducing the performance of the MOF adsorbents in purifying humidified gaseous streams. That effect became more prominent as the benzene concentration decreased (≤ 50 ppm), reflecting the dynamic interaction between multiple adsorbates (water and benzene) and the adsorbent. In addition, the exothermic adsorption property was evident for both MOFs under the dry conditions, while the patterns were reversed under humid conditions (e.g., 100% RH). Overall, the adsorption properties of VOCs onto MOFs and their uptake mechanisms are affected sensitively by an interplay between the key variables (e.g., concentration levels of competing adsorbates) along with the structural stabilities of sorbents against water vaporen_US
dc.description.sponsorshipR&D Center for Green Patrol Technologies through R&D for Global Top Environmental Technologies - Ministry of Environment (MOE) [2018001850001]; National Research Foundation of Korea (NRF) - Ministry of Science, ICT and Future Planning [2016R1E1A1A01940995]en_US
dc.languageenen_US
dc.publisherElsevier B.V.en_US
dc.subjectBreakthrough analysisen_US
dc.subjectHumidified benzene vaporen_US
dc.subjectKinetic/isotherm analysesen_US
dc.subjectMetal-organic frameworks (MOFs)en_US
dc.subjectMOF structural stabilityen_US
dc.titleThe dynamic competition in adsorption between gaseous benzene and moisture on metal-organic frameworks across their varying concentration levelsen_US
dc.typeArticleen_US
dc.relation.no2-
dc.relation.volume421-
dc.identifier.doi10.1016/j.cej.2020.127813en_US
dc.relation.page1-14-
dc.relation.journalChemical Engineering Journal-
dc.contributor.googleauthorLiu, Botao-
dc.contributor.googleauthorYounis, Sherif A.-
dc.contributor.googleauthorKim, Ki-Hyun-
dc.sector.campusS-
dc.sector.daehak공과대학-
dc.sector.department건설환경공학과-
dc.identifier.pidkkim61-
Appears in Collections:
COLLEGE OF ENGINEERING[S](공과대학) > CIVIL AND ENVIRONMENTAL ENGINEERING(건설환경공학과) > Articles
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