首页> 外文期刊>Analytica chimica acta >Evaluation of carbon nanotubes as a solid-phase extraction adsorbent for the extraction of cephalosporins antibiotics, sulfonamides and phenolic compounds from aqueous solution
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Evaluation of carbon nanotubes as a solid-phase extraction adsorbent for the extraction of cephalosporins antibiotics, sulfonamides and phenolic compounds from aqueous solution

机译:评价碳纳米管作为固相萃取吸附剂从水溶液中萃取头孢菌素类抗生素,磺酰胺类和酚类化合物

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摘要

The adsorptive potential of carbon nanotubes (single-walled carbon nanotubes and multi-walled carbon nanotubes) for solid-phase extraction of three groups of highly polar compounds (namely cephalosporins antibiotics, sulfonamides and phenolic compounds) was tested in this article. The analytes were strongly retained by the carbon nanotubes. And acceptable recoveries were obtained with the addition of ammonium acetate into eluents. The effects of solution pH on the recoveries of the antibiotics and phenolic compounds were examined. To check the retention abilities of three groups of compounds on carbon nanotubes, fixed amount of each analyte was added to different volumes (up to 500 mL) of aqueous solution, and then extracted by the sorbents. Comparative studies showed that the carbon nanotubes were much superior to C18 for the extraction of the highly polar analytes. For the cephalosporins antibiotics and sulfonamides, the carbon nanotubes showed stronger retention capability than graphitized carbon blacks, but for some of the phenolic compounds graphitized carbon blacks seemed to be more suitable, indicating different retention mechanisms of these analytes. To further assess the enrichment ability of carbon nanotubes for highly polar compounds, the solid-phase extraction method of multi-walled carbon nanotubes packed cartridge was well developed, and the sulfonamides were used as model compounds. Under the optimal procedures, the detection limits of sulfonamides were in the range of 27–38 ng L?1. The spiked recoveries from several real water samples obtained for sulfathiazole and sulfadiazine ranged from 55% to 79% and 72% to 92%, respectively, while the recoveries of sulfapyridine and sulfamethazine were in the range of 85–102%.
机译:本文测试了碳纳米管(单壁碳纳米管和多壁碳纳米管)对三组高极性化合物(即头孢菌素类抗生素,磺酰胺类和酚类化合物)的固相萃取的吸附潜力。碳纳米管牢固地保留了分析物。在洗脱液中加入乙酸铵可获得令人满意的回收率。考察了溶液pH值对抗生素和酚类化合物回收率的影响。为了检查三组化合物在碳纳米管上的保留能力,将固定量的每种分析物添加到不同体积(最多500 mL)的水溶液中,然后用吸附剂萃取。对比研究表明,碳纳米管在高极性分析物的萃取上要比C18更好。对于头孢菌素类抗生素和磺酰胺类,碳纳米管显示出比石墨化炭黑更强的保留能力,但对于某些酚类化合物,石墨化炭黑似乎更适合,表明这些分析物的保留机理不同。为了进一步评估碳纳米管对高极性化合物的富集能力,开发了多壁碳纳米管填充柱的固相萃取方法,并使用磺酰胺作为模型化合物。在最佳程序下,磺酰胺的检出限为27–38 ng L?1。从硫代噻唑和磺胺嘧啶获得的几个真实水样中的加标回收率分别为55%至79%和72%至92%,而磺胺吡啶和磺胺二甲嘧啶的回收率则为85-102%。

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