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Surface grafting of styrene on polypropylene fibers by argon plasma and its adsorption-regeneration of BTX

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Published under licence by IOP Publishing Ltd
, , Citation J J Xu et al 2017 IOP Conf. Ser.: Earth Environ. Sci. 82 012077 DOI 10.1088/1755-1315/82/1/012077

1755-1315/82/1/012077

Abstract

Active macromolecular free radicals were generated on polypropylene (PP) fibers surfaces by argon (Ar) plasma irradiation, then, PP surface modified fibers (PP-g-St fibers) were prepared by in-situ grafting reaction of styrene monomers (St). Effects of reaction parameters on grafting percentage were studied and adsorption capacities of PP-g-St fibers for benzene, toluene and xylene (BTX) were evaluated. Afterwards, regeneration adsorption efficiencies after maximum adsorption were explored. The results indicated that the optimum input power, irradiation time and grafting reaction time are 90 W, 3 min and 3 h respectively and the grafting percentage of St reached 5.7 %. The adsorption capacities of PP-g-St fibers towards toluene and xylene emulsions and solutions in water increased by 336.89 % and 344.57 % respectively, compared to pristine PP fibers. In addition, regeneration adsorption efficiencies of modified fibers remained > 90 % after six cycles of regeneration-adsorption experiments, which showed excellent regeneration ability.

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10.1088/1755-1315/82/1/012077