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首页> 外文期刊>Phosphorus, Sulfur, and Silicon and the Related Elements >Study of the Silica or K-feldspar as fluxing agent for the yellow phosphorus production
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Study of the Silica or K-feldspar as fluxing agent for the yellow phosphorus production

机译:二氧化硅或K-长石作为黄磷酸盐的助熔剂研究

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摘要

The thermodynamic estimation and experimental research on a laboratory scale with different fluxing agents (silica, K-feldspar) in yellow phosphorus production by the electric furnace method were investigated. The thermodynamic calculation showed that the reaction temperature of silica system is 1120 degrees C, while the temperature dropped to 970 degrees C with K-feldspar as a fluxing agent. The production efficiencies of phosphorus and potassium from this process were investigated and different reaction times and temperatures were studied. The experimental results demonstrated that the phosphorus conversion rates of the Ca-5(PO4)(3)F-C-silica and Ca-5(PO4)(3)F-C-KAlSi3O8 systems reached 96.9% and 99.0%, respectively. The potassium gasification rate of the Ca-5(PO4)(3)F-C-KAlSi3O8 system reached 44.3%. The characteristic of slag was studied by flow temperature and viscosity experiments, and the flow temperature was reduced by 61 degrees C, the residual viscosity was clearly increased. Finally, the mechanisms of yellow phosphorus production with different fluxing agents were analyzed by XRD, SEM and TEM methods.
机译:研究了电炉法用不同助熔剂(二氧化硅,K-FeldSpar)的实验室规模的热力学估计和实验研究。热力学计算表明,二氧化硅系统的反应温度为1120℃,而温度用K-Feldspar作为助熔剂降至970℃。研究了来自该过程的磷和钾的生产效率,并研究了不同的反应时间和温度。实验结果表明,Ca-5(PO4)(3)F-C-二氧化硅和Ca-5(PO4)(3)F-C-KALSI3O8系统的磷转化率分别达到96.9%和99.0%。 Ca-5(PO4)(3)F-C-KALSI3O8系统的钾气化率达到44.3%。通过流动温度和粘度实验研究了炉渣的特性,并且流动温度降低了61℃,残留粘度明显增加。最后,通过XRD,SEM和TEM方法分析了用不同助熔剂的黄磷酸产生的机制。

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