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Determination of Water Vapor Pressure Over Corrosive Chemicals Versus Temperature Using Raman Spectroscopy as Exemplified with 85.5 Phosphoric Acid

机译:使用拉曼光谱法测定腐蚀性化学品与温度之间的水蒸气压,以85.5%的磷酸为例

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摘要

A method to determine the water vapor pressure over a corrosive substance was developed and tested with 85.5 ± 0.4% phosphoric acid. The water vapor pressure was obtained at a range of temperatures from ∼25 ℃ to ∼200 ℃ using Raman spectrometry. The acid was placed in an ampoule and sealed with a reference gas (either hydrogen or methane) at a known pressure (typically ∼0.5 bar). By comparing the Raman signals from the water vapor and the references, the water pressure was determined as a function of temperature. A considerable amount of data on the vapor pressure of phosphoric acid are available in the literature, to which our results could successfully be compared. A record value of the vapor pressure, 3.40 bar, was determined at 210 ℃. The method required a determination of the precise Raman scattering ratios between the substance, water, and the used reference gas, hydrogen or methane. In our case the scattering ratios between water and reference ν Q-branches were found to be 1.20 ± 0.03 and 0.40 ± 0.02 for H2 and CH4, respectively.
机译:开发了一种确定腐蚀性物质上水蒸气压力的方法,并用85.5%±0.4%的磷酸进行了测试。使用拉曼光谱法在〜25℃至〜200℃的温度范围内获得水蒸气压。将该酸置于安瓿瓶中,并在已知压力(通常为〜0.5 bar)下用参比气体(氢气或甲烷)密封。通过比较来自水蒸气和参考的拉曼信号,确定水压与温度的关系。文献中有大量有关磷酸蒸气压的数据,可以将我们的结果成功地进行比较。在210℃下确定了3.40 bar的蒸气压记录值。该方法需要确定物质,水和使用的参考气体,氢气或甲烷之间的精确拉曼散射比。在我们的案例中,水和参考νQ支之间的散射比对于H2和CH4分别为1.20±±0.03和0.40±±0.02。

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