首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >A different approach for seawater decalcification pretreatment using carbon dioxide as precipitator
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A different approach for seawater decalcification pretreatment using carbon dioxide as precipitator

机译:使用二氧化碳作为沉淀剂的海水脱钙预处理的另一种方法

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摘要

Fouling, mainly caused by insoluble calcium salts, deteriorates the performance of process equipments, such as membranes and heat exchangers, during the desalination process. In this study, a new strategy of seawater decalcification pretreatment using carbon dioxide as precipitator was proposed. Firstly, the solubility data of carbon dioxide in seawater was extended to higher temperatures and salinities, and the pH effects on the dissolution performance of carbon dioxide were studied, since the dissolution rate of CO2 in the seawater was assumed to be the decisive rate of the calcite precipitation rate. A new modified Bunsen function was proposed to fit the solubility data of CO2 in seawater when salinity was higher than 70‰. Then the controllable decalcification of seawater was realized by ventilation with carbon dioxide using a recycling tower. Furthermore, the decalcification rates with time were studied under various conditions, such as flow ratio of carbon dioxide in gas (F), liquid-gas ratio (R) and different pH values. It was found that about 86.9% calcium ions were removed in 70 min under the best experimental conditions: F was 10.6%, Q_(air) = 134.2 m~3/h and Q_(CO2) = 16.0 m~3/h; R was 21.3; and pH was 7.9.
机译:主要由不溶性钙盐引起的结垢会在脱盐过程中使工艺设备(例如膜和热交换器)的性能下降。在这项研究中,提出了一种以二氧化碳为沉淀剂的海水脱钙预处理的新策略。首先,将二氧化碳在海水中的溶解度数据扩展到更高的温度和盐度,并且研究了pH对二氧化碳溶解性能的影响,因为假定二氧化碳在海水中的溶解速率是二氧化碳的决定性速率。方解石沉淀速率。提出了一种新的修正本生函数,以拟合盐度高于70‰时CO2在海水中的溶解度数据。然后,使用回收塔通过二氧化碳通风实现了可控的海水脱钙。此外,在各种条件下研究了脱钙率随时间的变化,例如气体中二氧化碳的流量比(F),液气比(R)和不同的pH值。发现在最佳实验条件下,在70分钟内可去除约86.9%的钙离子:F为10.6%,Q_(空气)= 134.2 m〜3 / h,Q_(CO2)= 16.0 m〜3 / h; R为21.3。 pH为7.9。

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