首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >A carbon nanotube sponge as an adsorbent for vapor preconcentration of aromatic volatile organic compounds
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A carbon nanotube sponge as an adsorbent for vapor preconcentration of aromatic volatile organic compounds

机译:一种碳纳米管海绵作为芳族挥发性有机化合物的蒸汽前浓缩的吸附剂

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A carbon nanotube (CNT) sponge was synthesized and examined as an adsorptive material for a thermally desorbed preconcentrator for volatile organic compounds (VOCs). The porous sponge-like material, retaining the intrinsic properties of individual multiwalled (MW) CNTs, was fabricated using spray pyrolysis chemical vapor deposition (CVD). The square pillar form of the CNT sponge was enclosed in a 1/4" glass tube with fittings for flow-through sampling. Flow of a direct current through the CNT sponge allowed rapid thermal heating to a surface temperature of 264.7 degrees at a rate of 481.5 degrees/s and a narrow desorption bandwidth of 0.74 s. The preconcentration concept was validated using gas chromatographic analysis of an aromatic VOC mixture, including benzene, toluene, ethylbenzene, and o-xylene (BTEX) vapors at concentrations of 100 parts per billion (ppb). With an adsorption volume of only 100 ml, the enrichment factor of each analyte was 300 (B), 240 (T), 210 (E), and 200 (X), enabling sensitive measurements with limits of detection at the parts per trillion level. Sequential desorption experiments confirmed that a single desorption process evaporates all the analytes inside the preconcentrator with >96% efficiency. There was no humidity effect and no sign of performance degradation after continuous operation for 45 repeated cycles. These results demonstrate that CNT sponges are a suitable material for the enrichment and sensitive determination of VOCs at trace levels. Thus, CNT sponge preconcentrators are advantageous in a variety of applications that permit fast and accurate real-time measurements, including ambient air and workplace air monitoring. (C) 2019 Elsevier B.V. All rights reserved.
机译:碳纳米管(CNT)海绵,合成和检测作为吸附性材料用于挥发性有机化合物(VOC)的一个热脱附预浓缩器。多孔海绵状材料,护个体多壁(MW)CNT的固有特性,使用喷雾制作热解化学气相沉积(CVD)。所述CNT海绵的方柱形式封闭在一个1/4" 玻璃管具有用于流通的直流电流的采样。流经CNT海绵允许快速热加热到264.7度的表面温度的速率配件481.5度/秒和0.74秒的窄解吸带宽,该富集概念是使用芳香族VOC混合物,包括苯,甲苯,乙苯的气相色谱分析在每十亿100份的浓度有效,和邻二甲苯(BTEX)蒸气分之一(ppb)。随着只有100 ml的吸附体积,每个分析物的富集因子为300(B),240(T),210(E),和200(X),使敏感的测量结果与进行该检测极限每万亿份的水平。序贯解吸实验证实单一解吸过程蒸发富集内的所有分析物具有> 96%的效率。毫无湿度效应和连续操作后FO没有性能退化的迹象:R 45个重复循环。这些结果表明,CNT海绵是在痕量水平的富集和敏感测定的VOC的合适材料。因此,CNT海绵富集器是在各种允许快速应用程序和准确的实时测量,包括环境空气和工作场所空气监测有利的。 (c)2019 Elsevier B.v.保留所有权利。

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