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首页> 外文期刊>Journal of the American Oil Chemists' Society >NONIONIC SURFACTANT POLARITY INDEX DETERMINATION BY INVERSE GAS CHROMATOGRAPHY
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NONIONIC SURFACTANT POLARITY INDEX DETERMINATION BY INVERSE GAS CHROMATOGRAPHY

机译:反相气相色谱法测定非离子表面活性剂极性指数

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摘要

Polyglycol nonionic surfactants are widely used in industrial and consumer products. Two classes of these surfactants, made from selected combinations of 1,2-butylene oxide, propylene oxide and ethylene oxide, were compared to alcohol ethoxylate (AE) and nonyl phenol ethoxylate nonionic surfactants in this study. Polyglycol copolymers consisted of either a polypropylene glycol (PPG) or polybutylene glycol (PBG) central hydrophobe. Ethoxylation of the hydrophobes produced polyethylene glycol hydrophilic blocks. Differences in hydrophobe polarity were determined by inverse gas chromatography (IGC). IGC is a useful analytical method by which the physical and chemical characteristics of a material are studied. The stationary surfactant material under study was coated onto an inert support and used as the packing for the column. A probe mixture, containing simple organic molecules of varying polarity, was injected, and the retention characteristics were measured. The retention characteristics of the standard probe mixture were used to reveal relative polarity information about the stationary surfactant coatings. Polarities of the four hydrophobes were (in decreasing order): PPG, PBG, nonyl phenyl and fatty alkyl. Comparisons were then made between the calculated hydrophile-lipophile balance values and polarity indices of the hydrophobes and their ethoxylates. The effects of hydroxyl groups on polarity were also studied and quantified. [References: 14]
机译:聚乙二醇非离子表面活性剂广泛用于工业和消费产品。在本研究中,将由1,2-环氧丁烷,环氧丙烷和环氧乙烷的选定组合制成的两类此类表面活性剂与醇乙氧基化物(AE)和壬基酚乙氧基化物非离子表面活性剂进行了比较。聚乙二醇共聚物由聚丙二醇(PPG)或聚丁二醇(PBG)中心疏水物组成。疏水基的乙氧基化产生了聚乙二醇亲水嵌段。疏水极性的差异通过反相气相色谱法(IGC)确定。 IGC是一种有用的分析方法,通过它可以研究材料的物理和化学特性。将研究中的固定表面活性剂材料涂覆到惰性载体上,并用作色谱柱的填料。注入含有不同极性简单有机分子的探针混合物,并测量保留特性。标准探针混合物的保留特性用于揭示有关固定表面活性剂涂层的相对极性信息。四种疏水物的极性为(降序排列):PPG,PBG,壬基苯基和脂肪烷基。然后比较疏水物和其乙氧基化物的亲水亲脂平衡值和极性指数。还研究并定量了羟基对极性的影响。 [参考:14]

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