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Oxygen Combustion Calorimetry Of Samples Containing Phosphorus And Fluorine: Formation Of Fluorinated Phosphoric Acids As Non-ideal Combustion Species

机译:含磷和氟的样品的氧燃烧量热法:氟化磷酸的形成作为非理想燃烧物质

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Whilst measuring the energy of combustion of a series of novel energetic polyphosphazenes which contained both phosphorus and fluorine in varying ratios, the non-ideal aqueous combustion species monofluoro-, difluoro- and hexafluoro-phosphoric acids were observed, in addition to the expected H_3PO_4 and HF. The same aqueous products were also observed to arise from combustion of physical mixtures of P- and F-containing compounds. A quantitative analytical method based on ~(19)F NMR spectroscopy and Ion Chromatography of the bomb solutions was developed. However, since monofluoro- and difluoro-phosphoric acids are hydrolytically unstable, it was necessary to replace the water normally added to the bomb at the outset of the calorimetric experiments with an aqueous buffer solution to inhibit hydrolysis and hence obtain meaningful analytical data. Despite the relatively low precision △_cU data obtained with the available adiabatic, static bomb calorimeter, the magnitude of the corrections to standard states accounting for the energy of (aqueous) hydrolysis of the fluorinated phosphoric acids were estimated. Two potential secondary standards for the oxygen combustion calorimetry of samples containing phosphorus and fluorine were identified and calorimetrically assessed.
机译:在测量一系列含有不同比例的磷和氟的新型高能聚磷腈的燃烧能量时,除预期的H_3PO_4和H_3PO_4外,还观察到了非理想的水燃烧物质,单氟,二氟和六氟磷酸。高频还观察到相同的含水产物是由燃烧含P和F的化合物的物理混合物产生的。建立了基于炸弹溶液的〜(19)F NMR光谱和离子色谱法的定量分析方法。但是,由于一氟和二氟磷酸的水解不稳定,因此必须在量热实验开始时用缓冲水溶液代替通常添加到炸弹中的水以抑制水解,从而获得有意义的分析数据。尽管使用可用的绝热,静态炸弹量热仪获得了相对较低的精度△_cU数据,但仍估算出了校正标准状态的校正幅度,从而说明了氟化磷酸的(水)水解能。鉴定和量热评估了两个潜在的用于含磷和氟的样品的氧气燃烧量热的二级标准。

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