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Calcium carbonate scales on process equipment: A measure of the induction time for nucleation

机译:工艺设备上的碳酸钙水垢:成核诱导时间的度量

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Scale deposition on process equipment surfaces has several disadvantages: in particular, when scales crystallize on heat transfer surfaces, they offer a resistance to the heat flow and can accumulate in pipelines, orifices and other flow passages seriously impeding the process flow. Moreover, calcium carbonate scales, together with calcium sulfate scales, are the major cause of fouling in reverse osmosis membranes, resulting in a continuous decline in desalted water production thus reducing the overall efficiency and increasing operation and maintenance costs. Therefore, from an economic point of view, the formation of these mineral scales is an obstacle to the recovery of potable water from sea or brackish waters as well as to the industrial utilization of many natural waters. The aim of the paper is to measure the induction time for calcium carbonate precipitation, through a well-assessed laser light scattering technique previously devised. Experiments are carried in a batch thermostated reactor at room temperature, pH in the range 7-8, in a supersaturation range from 2 to 200. The induction time so measured could be used to estimate thermodynamic parameters such as the interfacial tension between crystals and mother suspension. The knowledge of interfacial tension is of major importance for guiding the choice of the most suitable additive for the inhibition of CaCO3 scale formation.
机译:污垢沉积在过程设备表面上有几个缺点:特别是当污垢在传热表面上结晶时,它们对热流产生阻力,并且会积聚在管道,孔口和其他流道中,严重阻碍了过程流。此外,碳酸钙水垢与硫酸钙水垢一起是反渗透膜结垢的主要原因,导致淡水产量的持续下降,从而降低了总效率并增加了运行和维护成本。因此,从经济的角度来看,这些矿垢的形成是从海水或微咸水中回收饮用水以及许多天然水的工业利用的障碍。本文的目的是通过事先设计好的评估好的激光散射技术来测量碳酸钙沉淀的诱导时间。实验在室温下的间歇恒温反应器中进行,pH范围为7-8,过饱和度为2至200。如此测量的诱导时间可用于估算热力学参数,例如晶体与母体之间的界面张力。悬挂。界面张力的知识对于指导选择最合适的添加剂来抑制CaCO3垢的形成至关重要。

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