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Mechanism of Calcium Carbonate Scale Deposition under Subcooled Flow Boiling Conditions

机译:过冷沸腾条件下碳酸钙水垢沉积机理

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摘要

Fouling of heat transfer surfaces during subcooled flow boiling is a frequent engineering problem in process industries.It has been generally observed that the deposits in such industrial systems consist mainly of calcium carbonate(CaCO_3), which has inverse solubility characteristics.This investigation focused on the mechanism to control deposition and the morphology of crystalline deposits.A series of experiments were carried out at different surface and bulk temperatures, fluid velocities and salt ion concentrations.It is shown that the deposition rate is controlled by different mechanism in the range of experimental parameters, depending on salt ion concentration.At higher ion concentration, the fouling rate increases linearly with surface temperature and the effect of flow velocity on deposition rate is quite strong, suggesting that mass diffusion controls the fouling process.On the contrary, at lower ion concentration, the fouling rate increases exponentially with surface temperature and is independent of the velocity, illustrating that surface reaction controls the fouling process.By analysis of the morphology of scale, two types of crystal(calcite and aragonite)are formed.The lower the temperature and ion concentration, the longer the induction period and the higher the percentage of calcite precipitated.
机译:过冷沸腾过程中传热表面的结垢是加工业中的一个常见工程问题。通常观察到,此类工业系统中的沉积物主要由碳酸钙(CaCO_3)组成,其具有反溶性特征。在不同的表面和体温,流体速度和盐离子浓度下进行了一系列实验,结果表明在不同的实验参数范围内,沉积速率受不同机理的控制。在较高的离子浓度下,结垢率随表面温度线性增加,流速对沉积速率的影响相当强,表明质量扩散控制了结垢过程;相反,在较低的离子浓度下,结垢率随表面温度的升高呈指数增长且与速度无关,说明表面反应控制结垢过程。通过氧化皮的形态分析,形成了两种类型的晶体(方解石和文石)。温度和离子浓度越低,诱导时间越长方解石沉淀的百分比越高。

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