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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Dicarboxylic degradation products of nonylphenol polyethoxylates - Determination and structural elucidation in water samples by solid-phase extraction and gas chromatography-mass spectrometry after methylation
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Dicarboxylic degradation products of nonylphenol polyethoxylates - Determination and structural elucidation in water samples by solid-phase extraction and gas chromatography-mass spectrometry after methylation

机译:壬基酚聚乙氧基化物的二羧酸降解产物甲基化后固相萃取和气相色谱-质谱法测定水样和结构解析

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A reliable method combining solid-phase extraction, derivatization and gas chromatography-chemical ionization mass spectrometry (GC-CI-MS) was developed for the measurement, in river and sewage effluent water, of four select model compounds of dicarboxylic metabolites (dm-CA(5-8)P1EC) and other dicarboxylic metabolites (CA,(5-8)P1ECs) of nonylphenol polyethoxylates. These selected isomers were referred as dm-CA(5-8)P1ECs because they have an alpha,alpha-dimethyl configuration (expressed as "din"), five to eight C atoms and a carboxyl group in the alkyl chain, and an ethoxy acetic acid group. The derivatization of terminal carboxyl groups was successful with (trimethylsilyl)diazomethane. The best extraction conditions were obtained using an Oasis HLB cartridge as a sorbent bed and 4 ml of MTBE/methanol (9:1, v/v) elution mixture. The method detection limits of 0.03-0.07 mu g/l for dm-CA(5-8)P1ECs were attained in 500 nil pure water. The recovery was then evaluated for pure water, river and sewage effluent water samples. The high recoveries of typically > 89% for each isomer indicated the high performance of the method. Although dm-CA(5-8)P1ECs were not detected in the collected water samples, 21 isomers of CA(5-8)P1ECs were identified by CI-MS and the tentative structures of six out of them were elucidated, mainly limited to the branch at a-C atom, by studying the El-mass spectra. The relative concentrations of individual CA(5-8)P1EC metabolites were calculated based on dm-CA(5-8)P1ECs. The results showed that the main degradation on the nonyl chain occurred via the elimination of two carbon-units and the concentrations in Japan were much lower than those in Taiwan and Italy. (c) 2005 Elsevier B.V. All rights reserved.
机译:建立了一种可靠的方法,该方法结合了固相萃取,衍生化和气相色谱-化学电离质谱(GC-CI-MS),用于测量河流和污水中的四种二羧酸代谢物的精选模型化合物(dm-CA) (5-8)P1EC)和壬基酚聚乙氧基化物的其他二羧酸代谢产物(CA,(5-8)P1ECs)。这些选定的异构体之所以称为dm-CA(5-8)P1EC,是因为它们具有α,α-二甲基构型(表示为“ din”),烷基链中有5至8个C原子和一个羧基以及一个乙氧基乙酸基团。 (三甲基甲硅烷基)重氮甲烷成功地使末端羧基衍生化。使用Oasis HLB柱作为吸附剂床和4 ml MTBE /甲醇(9:1,v / v)洗脱混合物,可获得最佳的萃取条件。在500毫升纯水中,dm-CA(5-8)P1EC的方法检出限为0.03-0.07微克/升。然后评估回收率的纯净水,河流和污水废水样品。每种异构体的典型回收率通常> 89%,表明该方法具有很高的性能。尽管在收集的水样中未检测到dm-CA(5-8)P1ECs,但通过CI-MS鉴定了21种CA(5-8)P1ECs异构体,并阐明了其中6种的暂定结构,主要限于通过研究El-质谱,在aC原子处分支。基于dm-CA(5-8)P1ECs计算各个CA(5-8)P1EC代谢物的相对浓度。结果表明,壬基链上的主要降解是通过消除两个碳单元而发生的,日本的浓度远低于台湾和意大利的浓度。 (c)2005 Elsevier B.V.保留所有权利。

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