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首页> 外文期刊>Bulletin of the Chemical Society of Ethiopia >Determination of the stability of osmium(IV) hexachloride ICP-OES standards in HCl acid matrix
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Determination of the stability of osmium(IV) hexachloride ICP-OES standards in HCl acid matrix

机译:HCl酸性基质中锇(IV)六氯化六氯化锰标准的稳定性的测定

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The ideal HCl concentration used in stabilizing osmium standards was investigated in this study. Additionally, mathematical models were tested to predict the decomposition rate of osmium standards at room temperature. Osmium(IV) hexachloride stock solutions stabilized in 7 and 15% HCl were used to assess the decomposition rate using ICP-OES. Several sets of calibration standards were prepared from the original stock solutions. The first calibration set was prepared with no additional HCl added to the final solutions and other sets with a total HCl acid concentration of 0.2, 0.4, 0.6, 1.0 and 1.5% v/v. Emission intensities were measured at 0, 24, 48, 72 and 96 hours. Standards with no additional HCl acid added kept at room temperature showed increase in emission intensities after 24 hours. These changes in emission intensities indicated chemical instability of osmium standards at low acid concentration levels. Standards stabilized in 1.0–1.5% HCl and refrigerated below 10 ?C showed consistent emission intensities and had a shelf life of up to 48 and 72 hours, respectively.  Four mathematical models were tested to determine the decomposition rate of the osmium standard. The first used rate of change concept and the second a stochastic approach. Both failed to capture osmium decay. The third was based on non-local operators with power law kernel and was able to capture the decay at earlier, but not later stages. The fourth, based on non-local operators with non-singular kernel was able to capture earlier and later decay due to its crossover properties in waiting time distribution.
机译:在本研究中研究了用于稳定锇标准的理想HCl浓度。另外,测试数学模型以预测室温下锇标准的分解速率。在7和15%HCl中稳定的锇(IV)六氯化物溶液用于使用ICP-OES评估分解速率。从原始库存解决方案制备了几套校准标准。制备第一校准组,没有加入到最终溶液中的另外的HCl等,其它HCl酸浓度为0.2,0.4,0.6,1.0和1.5%v / v。在0,24,48,72和96小时测量排放强度。在室温下不添加另外的HCl酸的标准表明24小时后发射强度增加。排放强度的这些变化表明在低酸浓度水平下锇标准的化学不稳定。标准稳定在1.0-1.5%HCl中,冷藏在10℃以下,表现出一致的排放强度,分别具有48和72小时的保质期。测试了四种数学模型以确定锇标准的分解速率。第一次使用的变化率和第二种随机方法。两者都无法捕获锇腐烂。第三个是基于与权力法内核的非本地运营商,并且能够在早先捕获衰减,但不是以后的阶段。第四,基于非统计内核的非本地运算符,能够在等待时间分布中的交叉属性之前捕获,后来衰减。

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