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首页> 外文期刊>The Journal of Supercritical Fluids >Na2CO3 and K3PO4 solubility measurements at 30 MPa in near-critical and supercritical water using conductimetry and high pressure calorimetry
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Na2CO3 and K3PO4 solubility measurements at 30 MPa in near-critical and supercritical water using conductimetry and high pressure calorimetry

机译:使用电导和高压热量测量法在近乎关键和超临界水中的30MPa的Na2CO3和K3PO4溶解度测量

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摘要

Knowledge of the phase equilibria and solubility of inorganic salts is crucial to improving the handling of salt precipitation in supercritical water oxidation (SCWO) processes. However, there is little such data in the literature, especially at 30 MPa, the pressure at which the continuous SCWO processes of the CEA (the French atomic energy commission) operate. In this study, the solubility of Na2CO3 and K3PO4 was determined under near-critical and supercritical conditions (320 degrees C < T < 500 degrees C, P = 30 MPa) by high pressure differential scanning calorimetry or by measuring the conductivity of samples taken from a high-pressure vessel. This approach enabled different phase changes to be detected for the two salts: direct solid precipitation from the homogeneous fluid phase for Na2CO3, and the appearance of a gas-liquid equilibrium before precipitation for K3PO4. On the whole, the results obtained are in agreement with Valyashko's classification of binary water/salt systems.
机译:知识的相平衡和无机盐的溶解度至关重要,从而改善超临界水氧化(SCWO)过程中的盐沉淀。 然而,文献中几乎没有这样的数据,特别是在30MPa,CEA的连续SCWO过程(法国原子能委员会)运作的压力。 在该研究中,通过高压差示扫描量热法或通过测量来自 高压容器。 该方法使得对于两种盐来检测不同的相变:从Na 2 CO 3的均匀流体相的直接固体沉淀,以及在沉淀之前的储气液平衡的外观K3PO4。 总的来说,获得的结果与Valyashko的二元水/盐系统分类一致。

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