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Assessment and assurance of quality in water measurement by coulometric Karl Fischer titration of petroleum products

机译:库仑卡尔费休滴定法测定石油产品的水质评估和质量保证

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摘要

The precise and accurate determination of water in petroleum products-gasoline, diesel oil and aromatic hydrocarbons-is of significant importance for their normal functional and operational characteristics for economics as well as in meeting international requirements. The standard method ISO 12937 for the measurement of water by the coulometric Karl Fischer titration method was subject to within-laboratory assessment. Thereby it was established that the analytical procedure could not always be relied upon, especially when low levels of water were determined. The aim of this work is to assess each stage of the test procedure depending on the particular problems defined by the samples, using high-reactive Karl Fischer reagents and coulometric cells with and without a diaphragm, and to indicate the major factors causing the uncertainty. A reduced combined uncertainty was achieved by modifying the sample preparation step, the administration of the moisture in the coulometric cell, and sample injection manipulation. Experiments showed that the cell without the diaphragm ensures lower and uniform uncertainty of the measurements in the range of 0.01 to 10 mg H2O in comparison to the cell with a diaphragm and therefore is more appropriate for the determination of low water levels in the petroleum products. A procedure that utilized a mixture of the reagent and toluene (10:6) was able to resolve the problem of two phases of formation and reduced conductivity of the reagent in direct titration of diesel oils. The results suggest that the modified procedure ensures relative expanded uncertainty equal to or less than 2.0% (n=5, confidence interval close to 95%) and 99.4% recovery for petroleum products investigated in repeatability conditions.
机译:准确,准确地测定石油,汽油,柴油和芳烃中的水,对它们的正常功能和经济运行特性以及满足国际要求具有重要意义。通过库仑卡尔·费休滴定法测量水的标准方法ISO 12937已在实验室内进行评估。从而确定了不能总是依靠分析程序,特别是当确定水含量低时。这项工作的目的是根据样品定义的特定问题,使用高反应性卡尔·费休试剂和带或不带隔膜的电量分析池评估测试程序的每个阶段,并指出导致不确定性的主要因素。通过修改样品制备步骤,电量分析池中的水分管理以及样品进样操作,可以降低组合不确定性。实验表明,没有隔膜的样品池与具有隔膜的样品池相比,确保了在0.01至10 mg H2O范围内的较低且均匀的测量不确定性,因此更适合于测定石油产品中的低水位。利用试剂和甲苯的混合物(10:6)的程序能够解决柴油直接滴定过程中形成两个阶段以及试剂电导率降低的问题。结果表明,改进的方法可确保在可重复性条件下研究的石油产品的相对扩展不确定度等于或小于2.0%(n = 5,置信区间接近95%)和99.4%的回收率。

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