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Optimization of medium-low-grade phosphorus rock carbothermal reduction process by response surface methodology

机译:响应面法优化中低级磷岩石热还原过程

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Phosphorus extraction from phosphorus rock was conducted by carbothermal reduction with silica and coke. The effects of reaction temperature, reaction time, coke excess coefficient, molar ratio of silicon-calcium, and phosphorus rock particle size on the phosphorus reduction rate were investigated by the response surface methodology (RSM). The central composite design (CCD) with five factors and five levels was used to explore the effects of variables' interactions on the phosphorus reduction rate. The results showed that there are significant interactions between reaction time and temperature; reaction temperature and molar ratio of silicon-calcium; reaction temperature and phosphorus rock particle size; coke excess coefficient and molar ratio of silicon-calcium; and coke excess coefficient and phosphorus rock particle size. The optimum conditions in the experimental range are reaction time 92 min, reaction temperature 1340 degrees C, coke excess coefficient 1.27, molar ratio of silicon-calcium 1.28, and phosphorus rock particle size 75-106 mu m, which were derived from the quadratic statistic model. Under these conditions, the phosphorus reduction rate can reach 96.88%, which is close to the model prediction value 99.40%. The optimized carbothermal reduction conditions of phosphorus rock by the RSM are helpful to reduce the energy cost of thermal phosphoric acid process.
机译:用二氧化硅和焦炭进行碳热还原,对磷岩的磷提取进行。通过响应表面方法(RSM)研究了反应温度,反应时间,焦炭过量系数,硅钙的摩尔比和磷岩粒度对磷抑制率的影响。中央复合设计(CCD)具有五种因素和五个水平来探讨变量对磷抑制率的影响。结果表明,反应时间和温度之间存在显着的相互作用;硅钙的反应温度和摩尔比;反应温度和磷岩粒径;焦炭过量系数和硅钙的摩尔比;并且焦炭过量系数和磷岩粒径。实验范围内的最佳条件是反应时间92分钟,反应温度1340℃,焦炭过量系数1.27,硅钙1.28的摩尔比,磷岩粒径为75-106μm,其来自二次统计模型。在这些条件下,磷抑制率可达96.88%,接近模型预测值99.40%。 RSM通过RSM的优化碳热还原条件有助于降低热磷酸工艺的能量成本。

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