首页> 外文期刊>Journal of Analytical Methods in Chemistry >Composition Characterization of Fatty Acid Zinc Salts by Chromatographic and NMR Spectroscopic Analyses on Their Fatty Acid Methyl Esters
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Composition Characterization of Fatty Acid Zinc Salts by Chromatographic and NMR Spectroscopic Analyses on Their Fatty Acid Methyl Esters

机译:脂肪酸甲酯对脂肪酸锌盐的组成表征脂肪酸甲酯分析

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To implement EU REACH- (Registration, Evaluation, and Authorization of Chemicals-) like chemical legislations in various countries of which the purpose is human and environment safety, the first step is substance identification followed by the hazard and risk assessments. Although both structural and composition identifications are required, the latter can more importantly result in the essential data to fill out the required substance information such as purity and concentrations of constituents, as well as impurities. With fatty acid zinc salts (FAZSs) as an exemplary industrial chemical of which chromatographic and nuclear magnetic resonance (NMR) analyses were impossible due to their insolubility in water and any organic solvents, the composition characterization was tried by preparing their fatty acid methyl esters (FAMEs) using the conc. HCl/methanol/toluene method. This acid-catalyzed methyl esterification was optimized with zinc stearate as a surrogate substance. Gas chromatography-mass spectrometry (GC-MS) and NMR analyses on methyl-esterified products revealed that the optimum conditions were at 90°C for 10?min or 45°C for 30?min with two equivalent HCl as well as at 45°C for 10?min with five equivalent HCl. Almost all zinc stearates were converted into the corresponding fatty acids with 97–99% conversion rates. Free fatty acids (FFAs) were detected in extracted ion chromatograms of pyrolysis-gas chromatography-mass spectrometry (Py-GC-MS) in the methyl-esterified products with incomplete conversions of 73~79%. The optimized conc. HCl/methanol/toluene method of direct one-step reaction from FAZSs was compared with the two-step NaOH saponification/BF3-methanol method after acidic hydrolysis of FAZSs. The mechanism of fatty acid zinc salts into free fatty acids and fatty acid methyl esters was suggested with the evidence of the formation of Zn(OH)2.
机译:实施欧盟达到 - (化学品的注册,评估和授权 - )在宗旨是人类和环境安全的各国的化学立法,第一步是物质识别,然后是危害和风险评估。虽然需要结构和组成鉴定,但是后者更重要地导致基本数据以填充所需的物质信息,例如组分的纯度和浓度,以及杂质。用脂肪酸锌盐(FAZS)作为一种示例性工业化学品,其中由于其在水中的不溶血和任何有机溶剂而不可能进行色谱和核磁共振(NMR)分析,通过制备脂肪酸甲酯来试验组合物表征( FAMES)使用粗。 HCl /甲醇/甲苯法。该酸催化的甲基酯化用硬脂酸锌作为替代物质进行了优化。对甲基酯化产物的气相色谱 - 质谱(GC-MS)和NMR分析显示,最佳条件在90℃下为90℃或45℃,用两个等同的HCl以及45°均为45°C。 C含量为10?min,五等同的HCl。将所有锌硬脂酸锌转化为97-99%转化率的相应脂肪酸。在甲基酯化产物中的热解 - 气相色谱 - 质谱(PY-GC-MS)中的提取离子色谱图中检测到游离脂肪酸(FFA),其甲基酯化产物不完全转化为73〜79%。优化的浓度。将HCl /甲醇/甲苯/甲苯法与FAZSSS的直接一步反应的方法与FAZS酸性水解后的两步NaOH皂化/ BF3-甲醇方法进行比较。用Zn(OH)2形成的证据表明了脂肪酸锌盐与游离脂肪酸和脂肪酸甲酯的机制。

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