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61.
建立了纺织品中烷基酚聚氧乙烯醚的凝胶过滤色谱-串联质谱(GFC-MS/MS)分析方法。纺织品样品采用加速溶剂萃取法,以无水乙醇为提取溶剂进行提取,提取液经Sep-Pak Carbon/NH2石墨化碳黑/氨基复合型固相萃取柱净化。烷基酚聚氧乙烯醚经Shodex MSpak GF-310 2D色谱柱(150×2.0 mm)分离后,在多反应监测(MRM)模式下进行串联质谱定性及定量分析。方法对壬基酚聚氧乙烯醚(NPnEO)和辛基酚聚氧乙烯醚(OPnEO)的定量限均为0.2 mg/kg,在0.2~5 mg/kg的3个添加水平范围内,NPnEO的平均回收率为84.2%~93.5%,相对标准偏差(RSD)为3.9%~7.5%;OPnEO的平均回收率为85.5%~96.1%,RSD为3.4%~8.1%。该方法能够满足纺织品中烷基酚聚氧乙烯醚的检测要求。  相似文献   
62.
In this study, liquid chromatography/mass spectrometry was used to analyze the trace amounts of nonylphenol polyethoxylates (NPnEOs) in industrial water effluents. The modifier of acetic acid added in mobile phase and the atmospheric pressure chemical ionization (APCI) coupled with linear ion trap mass spectrometry were adopted to improve the sensitivity of NPnEOs analysis. The modification extraction technique of NIEA W801.50B method announced by Taiwan Environmental Protection Agency was used as sample preparation. The analytical results show that the LODs of NPnEO analytes were 0.02‐10 ng/mL. The proposed method has been successfully applied to monitor trace NPnEOs in real industrial water effluents.  相似文献   
63.
张品  张晶  陈洁君  段鹤君  邵兵 《分析化学》2014,(12):1811-1817
建立了乳制品中三氯生、三氯卡班、双酚A和壬基酚4种内分泌干扰物的在线固相萃取超高压液相色谱-串联质谱(On-line SPE LC-MS/MS)检测方法。液态乳制品或奶粉样品中加入乙酸缓冲液,目标物经β-葡糖醛酸苷肽酶/芳基磺酸酯酶酶解后,用乙腈提取,冷冻离心10 min后,取上清液,用水稀释,在线固相萃取串联质谱法测定。样品溶液经Xbridge C8柱富集,BEH C18色谱柱分离,甲醇和水梯度洗脱,三重四极杆质谱电喷雾负离子模式下采集数据,同位素内标法定量。4种目标化合物的线性范围为0.005~5.0μg/L,相关系数R2>0.99;方法的定量限为0.03~1.0μg/kg,3个添加水平的平均加标回收率为80.2%~106.7%, RSD<15%。本方法快速、简单、灵敏度高,适用于乳制品中4种内分泌干扰物的同时检测。应用本方法对原料乳和北京市售液奶样品进行了分析,结果表明,壬基酚的检出率最高。  相似文献   
64.
采用硅胶柱层析-气相色谱法对月桂酸甲酯乙氧基化物(LME)中副产物二酯进行了定量分离与测定,同时考察了不同条件下合成的LME中二酯含量的变化规律。结果表明:LME中二酯含量随环氧乙烷(EO)加合数(n)的增加而先增大后趋平衡,当加合数n为8时,其质量分数为2.13%;并随反应温度升高而增大;随原料甲酯所含碳原子个数增加而降低。  相似文献   
65.
A method for the separation, characterization and determination of fatty alcohol ethoxylates (FAE) and alkylether sulfates (AES) in industrial and environmental samples is described. Separation of the two surfactant classes was achieved in a 50:50 methanol-water medium by retaining AES on a strong anionic exchanger (SAX) whereas most FAE were eluted. After washing the SAX cartridges to remove cations, the residual hydrophobic FAE were eluted by increasing methanol to 80%. Finally, AES were eluted using 80:20 and 95:5 methanol-concentrated aqueous HCl mixtures. Methanol and water were removed from the FAE and AES fractions, and the residues were dissolved in 1,4-dioxane. In this medium, esterification of FAE and transesterification of AES with a cyclic anhydride was performed. Phthalic and diphenic anhydrides were used to derivatizate the surfactants in industrial samples and seawater extracts, respectively. Separation of the derivatized oligomers was achieved by gradient elution on a C8 column with acetonitrile/water in the presence of 0.1% acetic acid. Good resolution between both the hydrocarbon series and the successive oligomers within the series was achieved. Cross-contamination of FAE with AES and vice versa was not observed. Using dodecyl alcohol as calibration standard, and correction of the peak areas of the derivatized oligomers by their respective UV-vis response factors, both FAE and AES were evaluated. After solid-phase extraction on C18, the proposed method was successfully applied to the characterization and determination of the two surfactant classes in industrial samples and in seawater.  相似文献   
66.
Nonylphenol ethoxylates (NPEOx) are surfactants which are used worldwide and can be transformed in the environment by microorganisms to form nonylphenol (NP). Analysis of these compounds was carried out with micellar electrokinetic capillary chromatography (MEKC). Different parameters such as background electrolyte (BGE) solution, pH, type of surfactant, and sample stacking were optimized. The use of CHES (20 mM, pH 9.1) in combination with 50 mM sodium cholate as a surfactant as BGE solution, together with sample stacking using 50 mM NaCl in the sample and an injection time of 20 s, provided the best separation of the compounds studied. The method was applied to the determination of target analytes in two types of sludge water coming from two steps of a wastewater treatment plant. Liquid–liquid extraction was carried out using toluene as solvent, resulting in recoveries around 100% for all studied analytes. The presence of NPEOx was observed in the first step of the sludge water treatment, based on migration time and UV spectra. Identification was confirmed using tandem MS. LOQs of the studied compounds were in the range of 12.7 to 30.8 ng/mL, which is satisfactory for the analysis of real wastewater samples.  相似文献   
67.
Control of environmental pollution by 4-nonylphenols (4-NP) and effective risk assessment concerning these xenoestrogens requires the identification of the individual isomers contained in the technical mixtures of 4-NP. A new approach is presented here which supports the identification of these compounds by a combination of experimentally determined gas chromatographic retention indices (I) of reference 4-NP isomers and calculated I-values. In addition to experimental indices, the I-prediction algorithm includes a new version of an additive scheme. The I-values of all structural 4-NP isomers are calculated on the basis of experimentally determined indices of a few available 4-NP isomers and the known retention indices of 75 iso-decanes. A mean deviation of ±11 index units between predicted and experimental I-values demonstrates the feasibility of the new approach. The predicted I-values provide information on the structure of 4-nonylphenol isomers in the technical mixture which has not been considered before. Furthermore, a novel line-coding system is proposed to describe the structure of isomeric 4-NPs and to initiate a current database for the endocrine-disrupting 4-nonylphenols.  相似文献   
68.
A method for the simultaneous determination of the most frequently used surfactant families –linear alkyl benzenesulphonates (LAS), alkyl ether sulphates (AES), fatty alcohol ethoxylates (FAE) and oleins (soaps, fatty acid salts) – in cleaning products, has been developed. The common reversed phase octyl (C8), pentafluorophenyl and biphenyl columns were not capable of separating the anionic LAS and AES classes; however, since only LAS absorbs in the UV, these two classes were independently quantified using a C8 column and serially connected UV and ELSD detection. The best compromise to resolve the four surfactant classes and the oligomers within the classes was achieved with a C8 column and an ACN/water gradient. To enhance retention of the anionic surfactants, ammonium acetate, as an ion-pairing agent compatible with ELSD detection, was used. Also, to shift the olein peaks with respect to that of the FAE oligomers, acetic acid was used. In the optimized method, modulation of the mobile phase, using ammonium acetate during elution of LAS and AES, and acetic acid after elution of LAS and AES, was provided. Quantitation of the overlapped LAS and AES classes was achieved by using the UV detector to quantitate LAS and the ELSD to determine AES by difference. Accuracy in the determination of AES was achieved by using a quadratic model, and by correcting the predicted AES concentration according to the LAS concentration previously established using the UV chromatogram. Another approach also leading to accurate predictions of the AES concentration was to increase the AES concentrations in the samples by adding a standard solution. In the samples reinforced with AES, correction of the predicted AES concentration was not required. FAE and olein were quantified using also quadratic calibration.  相似文献   
69.
Molecularly imprinted (MIP) and blank polymers with affinity for nonylphenol were designed using computational modelling. Chromatographic tests demonstrated higher affinity of imprinted polymers towards the template nonylphenol as compared with blank polymers. The performance of both polymers in solid-phase extraction was however very similar. Both blank and imprinted polymers appeared to be suitable for the removal and pre-concentration of nonylphenol from contaminated water samples with 99% efficiency of the recovery. The commercial resins PH(EC) (Biotage) and C18 (Varian) tested in the same conditions used for comparative purposes had recovery rate <84%. The polymer capacity for nonylphenol was 231 mg g−1 for blank and 228 mg g−1 for MIP. The synthesised materials can have significance for sample pre-concentration and environmental analysis of this class of compounds.  相似文献   
70.
考察了烷基酚聚氧乙烯醚在反相色谱、正相键合色谱、硅胶吸附色谱、体积排阻色谱4种不同液相色谱分离模式中的分离效果,分别采用Kromasil C_(18)(250 mm× 4.6 mm,5 μm)、Agilent ZORBAX NH2(250 mm× 4.6 mm,5 μm)、Waters Spherisorb S3W(150 mm×2.0 mm,3 μm)和Shodex MSpak GF-310 2D(150 mm×2.0 mm,5 μm)色谱柱,以225 nm为紫外检测波长,对不同液相色谱分离模式的流动相组成、梯度洗脱条件、柱温、流速等进行了优化,并对烷基酚聚氧乙烯醚在不同液相色谱分离模式中的保留机理进行了初步探讨.结果表明,正相键合色谱实现了烷基酚聚氧乙烯醚的最佳分离;硅胶吸附色谱和体积排阻色谱的分离效果较正相键合色谱稍差.  相似文献   
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