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铝酸钙系RH精炼脱硫的动力学分析与实践 被引量:2
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作者 陈玉鑫 孙亮 +1 位作者 陈峰 曹仁峰 《电工钢》 2021年第2期32-39,共8页
基于某厂现用的CaO-CaF_(2)体系脱硫剂目前存在的侵蚀和保存不良问题,采用了铝酸钙脱硫工艺,并进行了工业试验,利用试验数据对深脱硫的可能性进行了进一步的探讨。根据对脱硫剂的渣-钢间硫分配比、熔化速度和RH炉真空室残渣的影响分析,... 基于某厂现用的CaO-CaF_(2)体系脱硫剂目前存在的侵蚀和保存不良问题,采用了铝酸钙脱硫工艺,并进行了工业试验,利用试验数据对深脱硫的可能性进行了进一步的探讨。根据对脱硫剂的渣-钢间硫分配比、熔化速度和RH炉真空室残渣的影响分析,铝酸钙脱硫剂的Al_(2)O_(3)设计为33%~37%;铝酸钙体系RH炉脱硫剂的最佳粒度范围为3~5mm。工业试验表明,脱硫效果与脱硫剂加入量和初始硫含量呈线性关系。通过回归分析,当钢液中初始硫质量分数低于30×10^(-6)时,深脱硫的成功率是比较高的,但当初始硫质量分数高于30×10^(-6)时,深脱硫的成功率很低,即便大幅度增加脱硫剂加入量也效果不佳。铝酸钙体系脱硫剂相对于CaO-CaF_(2)体系脱硫剂,合金收得率有所提高。 展开更多
关键词 铝酸钙 RH精炼 脱硫动力学分析
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An environmentally benign and sustainable process for carbon recovery and efficient defluorination of spent carbon cathode 被引量:4
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作者 Yi-fan LI Hao CHENG +3 位作者 Pei-yu GONG Kai YANG Zhong-liang TIAN Yan-qing LAI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第11期3810-3821,共12页
A systematic and green low-temperature sulfation roasting−water leaching strategy was put forward to achieve a very high fluorine removal rate of 97.82%for spent carbon cathode(SCC),which was believed as a hazardous s... A systematic and green low-temperature sulfation roasting−water leaching strategy was put forward to achieve a very high fluorine removal rate of 97.82%for spent carbon cathode(SCC),which was believed as a hazardous solid waste.And the carbon could be recycled with a purity of 90.29 wt.%in the flaky microstructure.Thermodynamic analysis and the results of SEM,XRD and EDS indicate that most of the fluoride could convert into water-soluble sulfate at low temperature.And the highest fluorine removal rate could be obtained when<0.15 mm SCC particles were mixed with sulfuric acid at a liquid-to-solid ratio of 1:1,and then roasted at 300℃ for 0.5 h.The sulfate was removed to purify the carbon via water-leaching process.Avrami exponents and corresponding activation energy for the roasting and leaching process demonstrated that both processes are controlled by diffusion. 展开更多
关键词 spent carbon cathode DEFLUORINATION sulfation roasting water-leaching kinetics analysis
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