Functionalized graphene-trimethoxyphenyl silane for toluene removal from workplace air by sorbent gas extraction method

Majid Bagheri Hosseinabadi, shahnaz Timoori, A. Zarandi
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引用次数: 18

Abstract

A new synthesized sorbent based on functionalizing graphene with N-Phenyl-3-aminopropyl trimethoxy silane (G-PhAPTMS, C12H21NO3Si), was developed as a novel sorbent for removal of toluene from air by sorbent gas extraction procedure (SGEP). By proposed method, the removal efficiency of G-PhAPTMS was compared with other sorbents such as activated carbon (AC), graphene (G) and graphene oxide (GO). The standard gas of toluene generated in pure air with different concentrations and the effects of parameters such as temperature (10-90 °C), flow rate (50-500 mL min-1) and the amount of sorbent (2-30 mg) were investigated. According to the results, increasing the flow rate and temperature had negative effects on the removal efficiency of all sorbents. The highest removal efficiency of G-PhAPTMS was obtained up to 35 °C and less than 250 mL min-1 (>95%).  In optimized conditions, the amount of sorbent for toluene removal was achieved more than 10 mg of G-PhAPTMS.
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功能化石墨烯-三甲氧基苯基硅烷吸附气萃取法去除工作场所空气中的甲苯
研究了一种基于n -苯基-3-氨基丙基三甲氧基硅烷功能化石墨烯(G-PhAPTMS, C12H21NO3Si)的新型吸附剂,用于吸附气体萃取法(SGEP)去除空气中的甲苯。通过该方法,比较了G- phaptms与活性炭(AC)、石墨烯(G)、氧化石墨烯(GO)等吸附剂的去除率。考察了不同浓度纯空气中甲苯标准气体的生成,以及温度(10 ~ 90℃)、流速(50 ~ 500 mL min-1)、吸附剂用量(2 ~ 30 mg)等参数对甲苯标准气体的影响。结果表明,增大流速和温度对各吸附剂的去除率均有不利影响。G-PhAPTMS的最高去除率为35°C, min-1小于250 mL(>95%)。在优化条件下,G-PhAPTMS的吸附剂去除率达到10 mg以上。
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