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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Column temperature as an active variable in the isocratic, normal-phase high-performance liquid chromatography separation of lipophilic metabolites of nonylphenol ethoxylates
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Column temperature as an active variable in the isocratic, normal-phase high-performance liquid chromatography separation of lipophilic metabolites of nonylphenol ethoxylates

机译:柱温作为等度正相高效液相色谱分离壬基酚乙氧基化物亲脂性代谢产物中的活性变量

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摘要

Normal-phase separation of technical grade nonylphenol (t-NP, about 90% 4-nonylphenol), 4-nonylphenol mono-ethoxylate (4-NPIEO) and 4-nonylphenol di-eihoxylate (4-NP2EO) was assessed, with the inclusion of column temperature as an active variable. The compound 2,4,6-trimethylphenol was evaluated for use as internal standard. Isocratic elution with 2-propanollhexanes mixtures from an amino-silica column and spectrometric UV detection at 277 mn were employed. Technical nonylphenol presented a significant contribution from unknown substances that eluted with retention times similar to that of 4-NPIEO. GC-MS analysis of the unknowns allowed to identify them as isomers of 2-NP. The response of the system to joint variations in flow rate, eluent composition and column temperature was investigated by means of Doehlert statistical experimental design. A model for retention of the analytes as a function of the experimental variables was proposed, and separation selectivity was studied. Selection of the optimal working zone was made through desirability function (D) calculations. Potential co-elution of 2-NP isomers with 4-NPIEO was considered when optimizing the separation. The occurrence of a restricted region of the experimental space where baseline resolution of analytes. associated impurities and internal standard results feasible (D:A 0) is apparent. (c) 2007 Elsevier B.V. All rights reserved.
机译:评估了工业级壬基酚(t-NP,约90%的4-壬基酚),4-壬基酚单乙氧基化物(4-NPIEO)和4-壬基酚二乙氧基化物(4-NP2EO)的正相分离,包括列温度作为有效变量。评价化合物2,4,6-三甲基苯酚用作内标。使用从氨基-硅胶柱上用2-丙醇己烷混合物进行的等度洗脱,并在277 mn处进行紫外分光光度检测。工业壬基苯酚对未知物质的贡献很大,其洗脱时间与4-NPIEO相似。 GC-MS对未知物的分析允许将其识别为2-NP的异构体。通过Doehlert统计实验设计研究了系统对流速,洗脱液组成和柱温联合变化的响应。提出了一种保留分析物作为实验变量的函数的模型,并对分离选择性进行了研究。最佳工作区的选择是通过期望函数(D)计算得出的。优化分离时,考虑了2-NP异构体与4-NPIEO的潜在共洗脱。实验空间的受限区域的发生,其中分析物的基线分辨率。相关杂质和内标结果的可行性(D:A 0)显而易见。 (c)2007 Elsevier B.V.保留所有权利。

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