Iodoform Reaction-Based Turbidimetry for Analysis of Alcohols in Hand Sanitizers

Analytica Pub Date : 2023-06-08 DOI:10.3390/analytica4020019
Chirapha Prakobdi, P. Saetear
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Abstract

This work presents the first development of an analytical turbidimetric method for the determination of legal alcohols in alcohol-based hand sanitizer products. A typical iodoform reaction is exploited to form a yellow product in the form of precipitates. An iodoform test shows a positive result as yellow precipitates in the presence of ethanol and isopropanol; therefore, the test can only be used to distinguish between methanol and those legal alcohols. In the presence of molecular iodine (I2) and a strong alkaline solution, the legal alcohol is converted to the corresponding carbonyl compound (i.e., ethanol to acetaldehyde, isopropanol to acetone). The susceptibility of this intermediate towards the reaction with hydroxide ions (strong alkaline condition) results in formations of yellow precipitation of iodoform (CHI3) and a water-soluble carboxylate salt in the solution. Therefore, this change allows for the detection of legal alcohols through either naked-eye observation (as semi-quantitative analysis) or a common benchtop/portable photometer/spectrophotometer (as quantitative analysis) by means of turbidimetric analysis. In this work, turbidimetry is employed, which is a useful alternative detection method in analytical practice, especially with colored samples in hand sanitizing products. This is because they can employ wavelengths at which the colored solution does not absorb light. As a result of our developed method, the calibration plots are in the range of 30 to 100% (v/v) for both ethanol and isopropanol. The limit of detection (LOD) (3SD of y-intercept/slope) was found to be 7.4% (v/v) ethanol and 6.5% (v/v) isopropanol. Direct analysis of the non-pretreatment of the sample is achieved. The results indicate that our new proposed analytical method is fit for purpose and valid to detect the legal alcohols in alcohol-based hand sanitizing products for both international and Thai regulations (at least 70% (v/v)). Our quantitative results were also comparable to a standard analytical method, such as the use of a gas chromatography-flame ionization detector (GC-FID). Our developed method and analytical operation could potentially be developed into a practically portable analysis.
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基于碘仿反应的浊度法分析洗手液中的醇类
这项工作提出了一种分析浊度法测定酒精基洗手液产品中合法醇的第一个发展。利用典型的碘仿反应形成以沉淀形式存在的黄色产物。碘仿试验在乙醇和异丙醇存在下呈黄色沉淀,结果呈阳性;因此,该测试只能用于区分甲醇和那些合法的醇。在分子碘(I2)和强碱溶液存在下,合法的醇转化为相应的羰基化合物(即乙醇转化为乙醛,异丙醇转化为丙酮)。这种中间体对氢氧化物离子(强碱条件下)反应的敏感性导致了溶液中碘仿(CHI3)的黄色沉淀和水溶性羧酸盐的形成。因此,这一变化允许通过肉眼观察(作为半定量分析)或通过浊度分析的普通台式/便携式光度计/分光光度计(作为定量分析)来检测合法醇。在这项工作中,浊度法是一种有用的替代检测方法,在分析实践中,特别是在洗手产品的有色样品中。这是因为它们可以利用有色溶液不吸收光的波长。由于我们开发的方法,乙醇和异丙醇的校准图在30至100% (v/v)范围内。检出限(LOD)为7.4% (v/v)乙醇和6.5% (v/v)异丙醇。实现了样品的非预处理直接分析。结果表明,我们提出的新分析方法适用于检测国际和泰国规定的酒精基洗手液产品中的法定酒精含量(至少70% (v/v))。我们的定量结果也可与标准分析方法相媲美,例如使用气相色谱-火焰离子化检测器(GC-FID)。我们开发的方法和分析操作有可能发展成为一种实用的便携式分析方法。
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