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首页> 外文期刊>日本香粧品学会誌 >Determination of Ethylene Glycol and Diethylene Glycol as the Adulterant in Concentrated Glycerin, Glycerin and Propylene Glycol
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Determination of Ethylene Glycol and Diethylene Glycol as the Adulterant in Concentrated Glycerin, Glycerin and Propylene Glycol

机译:浓缩甘油,甘油和丙二醇中作为掺假品的乙二醇和二乙二醇的测定

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摘要

Due to a fatal accident that occurred in 2006 for diethylene glycol (DEG) adulterated in glycerin, the Pharmaceutical and Food Safety Bureau in the Ministry of Health, Labour and Welfare (MHLW) has notified the partial revision of the purity test of Glycerin in the Japanese Standards of Quasi-Drug Ingredients (JSQI) 2006 at the Notification No. 1221004 on February 21, 2008. Since the fatal accidents caused by the contamination of syrup with DEG also occurred in 2009, USP proposed the purity test of concentrated glycerin, glycerin and propylene glycol about ethylene glycol (EG) and DEG as the adulterant instead of the purity test of concentrated glycerin and glycerin about DEG on May 21, 2009 to the Pharmacopoeial Discussion Group. In response to this, the Expert Committee on Excipients on JP made the decision to establish the new modified method. This paper proposes the new modified method of DEG including EG for the purity test in concentrated glycerin, glycerin and propylene glycol in JSQI 2006. This analytical method was the gas chromatographic method by using the fused-silica column 0.32 mm X 30 m coated with 14% cyanopropylphenyl/86% methylsilicon polymer and the column temperature for injecting at a constant temperature of about 100℃ and raising at the ratio of 7.5℃ per minute to 220℃. The retention times of EG, propylene glycol, DEG and glycerin were 2.45, 2.78, 6.02 and 7.66 minutes, respectively. The working curves of EG and DEG were the good correlation between their concentrations of 2.5 to 80 μg/ml and the peak areas. The resolutions between EG and DEG, and between DEG and glycerin were not less than 70 and not less than 20, respectively. Also those between EG and propylene glycol, and between propylene glycol and DEG were not less than 6 and not less than 60, respectively. The quantitation limits of EG and DEG in glycerin were 0.005% and 0.01%.
机译:由于2006年发生的甘油中掺入二甘醇(DEG)的致命事故,厚生劳动省(MHLW)的药品和食品安全局已通知对甘油中甘油的纯度测试进行部分修订。日本准药品成分标准(JSQI)2006,2008年2月21日,第1221004号通知。由于糖浆被DEG污染而导致的致命事故也发生在2009年,USP提出了浓缩甘油,甘油的纯度测试于2009年5月21日向药典讨论组提供了以乙二醇(EG)和DEG为掺假品的丙二醇代替浓甘油和DEG甘油的纯度测试。对此,JP辅料专家委员会决定建立新的修改方法。本文提出了一种新的改进的DEG方法,其中包括EG,用于JSQI 2006中浓甘油,甘油和丙二醇的纯度测试。该分析方法为气相色谱法,使用熔融硅胶柱0.32 mm X 30 m涂覆14 %的氰基丙基苯基/ 86%甲基硅聚合物和用于注入的柱温在约100℃的恒定温度下以每分钟7.5℃的比率升高至220℃。 EG,丙二醇,DEG和甘油的保留时间分别为2.45、2.78、6.02和7.66分钟。 EG和DEG的工作曲线为2.5至80μg/ ml的浓度与峰面积之间的良好相关性。 EG和DEG之间以及DEG和甘油之间的分辨率分别不小于70和不小于20。 EG和丙二醇之间以及丙二醇和DEG之间的那些分别不小于6和不小于60。甘油中EG和DEG的定量限为0.005%和0.01%。

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