A systematic derivatization technique for characterization of ethoxylates by GC and GCMS

IF 1.6 4区 工程技术 Q3 CHEMISTRY, APPLIED Journal of Surfactants and Detergents Pub Date : 2024-03-15 DOI:10.1002/jsde.12748
Asraf A. Ali, Ganesh Bhat, Ibrahim Al-Ghamdi, Wenjie Cao, Arun Kumar, Wissam Iali, K. C. Narayan, Qasem Ghazwani
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Abstract

Ethoxylation is one of the common industrial process in which ethylene oxide (EO) is added to compounds containing active hydrogen atom (OH, COOH, SH, NH, etc.) to form surfactants. Alcohol ethoxylates are a major class of non-ionic surfactants composed of an alkyl chain combined with few EO units. They are widely used in homecare products, personal care products, textiles, oilfield, construction, lubricants, food, paper, leather. The analysis of these ethoxylates possess several challenges since they contain ‘n’ number of EO units (n > 1). With increase in “n,” the product becomes more and more viscous and the boiling point increases making it difficult to analyze by normal gas chromatography (GC) technique. This paper describes a method of derivatizing these ethoxylates so that they can be eluted on a high temperature GC. BSTFA (N, O-bis (trimethylsilyl) trifluoroacetamide) is used as the derivatizing agent (silylating agent). The ethoxylate combines with BSTFA to form the corresponding trimethylsilylated (TMS) product, which have comparatively lower boiling point. Thus, we detect trimethyl silyl product, which is the resemblance for the ethoxylated product. In this paper, we present a quantitative GC method for the ethoxylates of a few simple alcohols (2-ethyl hexanol, glycerin), and complex vegetable oils (castor oil). The products formed during the reaction have also been identified on a gas chromatograph coupled with mass spectrometer (GCMS). GCMS shows the mass corresponding to the TMS derivatized product. The derivatization technique not only helps in increasing the volatility of these compounds but also improves the chromatographic efficiency, selectivity, and enhances the detectability.

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利用气相色谱和气相色谱法表征乙氧基化物的系统衍生技术
乙氧基化是一种常见的工业工艺,在这种工艺中,环氧乙烷(EO)被添加到含有活性氢原子(OH、COOH、SH、NH 等)的化合物中,形成表面活性剂。醇聚氧乙烯醚是一类主要的非离子表面活性剂,由烷基链和少量环氧乙烷单元组成。它们广泛应用于家庭护理产品、个人护理产品、纺织品、油田、建筑、润滑剂、食品、造纸、皮革等领域。由于这些乙氧基化合物含有 "n "个环氧乙烷单元(n >1),因此对它们的分析面临着一些挑战。随着 "n "的增加,产品变得越来越粘稠,沸点也随之升高,因此很难用普通的气相色谱(GC)技术进行分析。本文介绍了一种对这些乙氧基化物进行衍生化处理的方法,使其可以在高温气相色谱仪上洗脱。BSTFA (N,O-双(三甲基硅基)三氟乙酰胺)被用作衍生剂(硅烷化剂)。乙氧基化物与 BSTFA 结合生成相应的三甲基硅烷基化(TMS)产物,其沸点相对较低。因此,我们检测到了与乙氧基化产物相似的三甲基硅烷化产物。本文提出了一种定量气相色谱方法,用于检测一些简单醇类(2-乙基己醇、甘油)和复杂植物油(蓖麻油)的乙氧基化物。反应过程中生成的产物也可通过气相色谱-质谱联用仪(GCMS)进行鉴定。GCMS 显示了与 TMS 衍生产物相对应的质量。衍生化技术不仅有助于增加这些化合物的挥发性,还能提高色谱效率、选择性和可检测性。
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来源期刊
Journal of Surfactants and Detergents
Journal of Surfactants and Detergents 工程技术-工程:化工
CiteScore
3.80
自引率
6.20%
发文量
68
审稿时长
4 months
期刊介绍: Journal of Surfactants and Detergents, a journal of the American Oil Chemists’ Society (AOCS) publishes scientific contributions in the surfactants and detergents area. This includes the basic and applied science of petrochemical and oleochemical surfactants, the development and performance of surfactants in all applications, as well as the development and manufacture of detergent ingredients and their formulation into finished products.
期刊最新文献
Issue Information Special issue: Industrial surfactants R&D—A tribute to George A. Smith Issue Information Cloning, purification, and functional characterization of recombinant pullulanase from Bacillus cereusATCC 14579 for improved detergent performance Special Issue: Glycolipid biosurfactants: Synthesis, properties, and applications
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