Sulfonation of a hypercrosslinked polymer adsorbent for microwave-assisted desorption of adsorbed benzene

Optipore V503, a commercial hypercrosslinked hydrophobic polymer adsorbent, was sulfonated to become hydrophilic to allow more efficient microwave-assisted desorption of adsorbed nonpolar volatile organic compounds (VOCs) such as benzene under humidified conditions. Compared to Optipore V503, the hy...

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Published inJournal of industrial and engineering chemistry (Seoul, Korea) Vol. 20; no. 4; pp. 2484 - 2489
Main Authors Meng, Qing Bo, Yang, Go-Su, Lee, Youn-Sik
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.07.2014
한국공업화학회
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Online AccessGet full text
ISSN1226-086X
1876-794X
DOI10.1016/j.jiec.2013.10.030

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Abstract Optipore V503, a commercial hypercrosslinked hydrophobic polymer adsorbent, was sulfonated to become hydrophilic to allow more efficient microwave-assisted desorption of adsorbed nonpolar volatile organic compounds (VOCs) such as benzene under humidified conditions. Compared to Optipore V503, the hydrophilic adsorbents showed reduced adsorption capacities towards benzene, but significantly improved microwave-assisted desorption efficiencies under a semi-continuous 600W microwave irradiation process. The increased desorption efficiency was mainly attributed to adsorbed water, which indirectly allowed heating of the polymer adsorbents to higher temperatures upon irradiation by microwaves.
AbstractList Optipore V503, a commercial hypercrosslinked hydrophobic polymer adsorbent, was sulfonated to become hydrophilic to allow more efficient microwave-assisted desorption of adsorbed nonpolar volatile organic compounds (VOCs) such as benzene under humidified conditions. Compared to Optipore V503, the hydrophilic adsorbents showed reduced adsorption capacities towards benzene, but significantly improved microwave-assisted desorption efficiencies under a semi-continuous 600 W microwave irradiation process. The increased desorption efficiency was mainly attributed to adsorbed water, which indirectly allowed heating of the polymer adsorbents to higher temperatures upon irradiation by microwaves.
Optipore V503, a commercial hypercrosslinked hydrophobic polymer adsorbent, was sulfonated to become hydrophilic to allow more efficient microwave-assisted desorption of adsorbed nonpolar volatile organic compounds (VOCs) such as benzene under humidified conditions. Compared to Optipore V503, the hydrophilic adsorbents showed reduced adsorption capacities towards benzene, but significantly improved microwave-assisted desorption efficiencies under a semi-continuous 600 W microwave irradiation process. The increased desorption efficiency was mainly attributed to adsorbed water, which indirectly allowed heating of the polymer adsorbents to higher temperatures upon irradiation by microwaves. KCI Citation Count: 6
Optipore V503, a commercial hypercrosslinked hydrophobic polymer adsorbent, was sulfonated to become hydrophilic to allow more efficient microwave-assisted desorption of adsorbed nonpolar volatile organic compounds (VOCs) such as benzene under humidified conditions. Compared to Optipore V503, the hydrophilic adsorbents showed reduced adsorption capacities towards benzene, but significantly improved microwave-assisted desorption efficiencies under a semi-continuous 600W microwave irradiation process. The increased desorption efficiency was mainly attributed to adsorbed water, which indirectly allowed heating of the polymer adsorbents to higher temperatures upon irradiation by microwaves.
Author Lee, Youn-Sik
Yang, Go-Su
Meng, Qing Bo
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Keywords Sulfonation
Hypercrosslinked polymer adsorbent
Nonpolar VOC
Microwave-assisted desorption
Adsorption
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Snippet Optipore V503, a commercial hypercrosslinked hydrophobic polymer adsorbent, was sulfonated to become hydrophilic to allow more efficient microwave-assisted...
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SubjectTerms Adsorbents
Adsorption
Benzene
Desorption
Heating
Hypercrosslinked polymer adsorbent
Irradiation
Microwave-assisted desorption
Microwaves
Nonpolar VOC
Organic compounds
Sulfonation
Volatile organic compounds
화학공학
Title Sulfonation of a hypercrosslinked polymer adsorbent for microwave-assisted desorption of adsorbed benzene
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