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A new method based on headspace adsorptive accumulation using a carboxylated multi-walled carbon nanotubes modified electrode: application for trace determination of nitrobenzene and nitrotoluene In water and wastewater

机译:羧基化多壁碳纳米管修饰电极基于顶空吸附积累的新方法:在水和废水中痕量硝基苯和硝基甲苯中的应用

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摘要

A carboxylated multi-walled carbon nanotubes modified glassy carbon (MWCNTs-GC) electrode was fabricated via the drop-casting of a carboxylated carbon nanotubes suspension onto a glassy carbon electrode. A headspace adsorptive accumulation on the surface of the multi-walled carbon nanotubes modified glassy carbon electrode coupled with cyclic voltammetry has been established for analyzing nitrobenzene and 4-nitrotoluene in water samples. Factors which affect the extraction efficiency (modifier amount, pH, extraction temperature, extraction time, salt addition) have been investigated. The calibration plot for the determination of nitrobenzene and 4-nitrotoluene are linear in the wide ranges of 10-4000 ng mL~(-1) and 20-6000 ng mL~(-1) respectively. Under optimal extraction conditions, the detection limits (at S/N = 3) for nitrobenzene and 4-nitrotoluene were 3.0 ng mL~(-1) and 6.0 ng mL~(-1) respectively. The proposed method has been applied successfully for the determination of nitrobenzene and nitrotoluene in water and wastewater samples within a recovery range of ca. 97.5-103.33%.
机译:通过将羧基化碳纳米管悬浮液滴铸到玻璃碳电极上,制备了羧基化的多壁碳纳米管改性玻璃碳(MWCNTs-GC)电极。建立了多壁碳纳米管修饰的玻碳电极与循环伏安法相结合的顶空吸附累积物,用于分析水中的硝基苯和4-硝基甲苯。已经研究了影响萃取效率的因素(改性剂用量,pH,萃取温度,萃取时间,盐添加量)。测定硝基苯和4-硝基甲苯的校准曲线分别在10-4000 ng mL〜(-1)和20-6000 ng mL〜(-1)的宽范围内呈线性。在最佳提取条件下,硝基苯和4-硝基甲苯的检出限(S / N = 3)分别为3.0 ng mL〜(-1)和6.0 ng mL〜(-1)。所提出的方法已成功地用于回收范围为约50%的水和废水中硝基苯和硝基甲苯的测定。 97.5-103.33%。

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