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首页> 外文期刊>The Journal of Supercritical Fluids >Continuous salt precipitation and separation from supercritical water. Part 3: Interesting effects in processing type 2 salt mixtures
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Continuous salt precipitation and separation from supercritical water. Part 3: Interesting effects in processing type 2 salt mixtures

机译:盐连续沉淀并与超临界水分离。第3部分:处理2型盐混合物的有趣效果

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摘要

Using a modified continuously operated laboratory plant which had been constructed in our group to visualize the salt separation from supercritical water using neutron radiography we investigated the continuous salt separation and recovery from supercritical water for four different ternary salt and water mixtures containing either a type 1 and a type 2 salt or a mixture of two type 2 salts. As the mixture of Na3PO4/K2SO4 (both type 2 salts) may form a mixture of K3PO4/Na2SO4 (type 1/type 2) by permutation of the ions during precipitation from supercritical water, the separation performance of the K3PO4/Na2SO4 mixture containing the same concentration in sodium, potassium, sulfate, and phos-phate as the Na3PO4/K2SO4 mixture was investigated as well. Both mixtures showed the same trend in the separation performance exhibiting a maximum in the separation efficiency in the temperature range studied, and showing a preferential separation of sodium and phosphate or potassium and sulfate ions depending on the temperature of the separator vessel. The mixtures of Na3PO4/Na2SO4 and Na2SO4/K2SO4 were "real type 2 salt mixtures", i.e. mixtures in which the permutation of the ions does not lead to the formation of a type 1 salt in the respective 1 mixture. The salts from the Na3P04/Na2S04 mixture could not be recovered as a concentrated brine. This salt mixture behaved as would be expected for the respective single type 2 salt solutions of either Na3 PO4 orNa2SO4. Interestingly, a concentrated brine could be recovered for the Na2SO4/K2SO4 mixture with the salt recovery in the brine effluent showing a maximum at a separator setpoint temperature of 450-460°C. Beyond this temperature the salt mixture became "sticky", thus exhibiting the behavior as would be expected for a type 2 salt mixture.
机译:使用在我们小组中建造的经过改进的连续运行的实验室装置,以使用中子射线照相术可视化从超临界水中分离出的盐,我们研究了四种类型的三元盐和水混合物(含1型和N型)从超临界水中的连续盐分离和回收。 2型盐或两种2型盐的混合物。由于Na3PO4 / K2SO4的混合物(两种2型盐)可能会通过从超临界水中沉淀过程中离子的置换而形成K3PO4 / Na2SO4的混合物(1/2型),因此含有K3PO4 / Na2SO4混合物的分离性能还研究了与Na3PO4 / K2SO4混合物相同的钠,钾,硫酸盐和磷酸盐浓度。两种混合物在分离性能上均显示出相同的趋势,在所研究的温度范围内显示出最大的分离效率,并且根据分离容器的温度显示出钠离子,磷酸根离子或钾离子和硫酸根离子的优先分离。 Na 3 PO 4 / Na 2 SO 4和Na 2 SO 4 / K 2 SO 4的混合物是“真实的2型盐混合物”,即其中离子的排列不会导致在相应的1种混合物中形成1型盐的混合物。来自Na 3 PO 4 / Na 2 SO 4混合物的盐不能作为浓盐水回收。该盐混合物的行为与Na3 PO4或Na2SO4的各个单一2型盐溶液的预期一致。有趣的是,可以为Na2SO4 / K2SO4混合物回收浓盐水,而盐水流出物中的盐分回收率在450-460°C的分离器设定点温度下显示出最大值。超过该温度,盐混合物变成“粘性”,因此表现出对于2型盐混合物所期望的行为。

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