首页> 外文期刊>Oriental Journal of Chemistry: An International Research Journal of Pure & Applied Chemistry >Optimization of Calcium Sulfate Precipitated in the Laminar Flow Pipe through Response Surface Modeling of Temperature, Ca~(2+) Concentration and Citric acid Additives
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Optimization of Calcium Sulfate Precipitated in the Laminar Flow Pipe through Response Surface Modeling of Temperature, Ca~(2+) Concentration and Citric acid Additives

机译:通过温度,Ca〜(2+)浓度和柠檬酸添加剂的响应面建模优化层流管中沉淀的硫酸钙

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This paper presents results of investigation of scaling of calcium sulfate (CaSO4) on metallic pipes. In this study, the optimizing variables; namely temperature (50-60°C), concentration of Ca~(2+) (2000-3000 ppm), citric acid concentration (10-20 ppm) were set-up to provide the optimum yield of the mass scales. The mineral scale detected using XRD is mainly gypsum, and the scale has a plate like morphology under SEM examination. SRM (surface response methodology) prediction provided that the temperature is a significant factor, while the Ca~(2+) concentration and the citrate are insignificant variables determining the optimal condition of the mass scale yields. An optimized mass scale response of 119.99 mg was obtained at a temperature of 56.36 °C, concentration Ca~(2+) of 2649.21 ppm and citric acid concentration of 12.11 ppm, respectively. The addition of citric acid did not modify the crystal morphology, but may control the size of crystals.
机译:本文介绍了金属管道上硫酸钙(CaSO4)结垢的调查结果。在这项研究中,优化变量;设置温度(50-60°C),Ca〜(2+)的浓度(2000-3000 ppm),柠檬酸浓度(10-20 ppm)以提供最佳的质量产率。用XRD检测到的矿物垢主要是石膏,并且在SEM检查下该垢具有板状形态。 SRM(表面响应方法)预测假设温度是一个重要因素,而Ca〜(2+)浓度和柠檬酸根是无关紧要的变量,这些变量决定了批量生产的最佳条件。在温度为56.36°C,浓度Ca〜(2+)为2649.21 ppm和柠檬酸浓度为12.11 ppm时,获得了119.99 mg的最佳质量标度响应。柠檬酸的添加不会改变晶体的形态,但可以控制晶体的大小。

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