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化学镀镍溶液再生的方法 被引量:4
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作者 梅天庆 何冰 《电镀与精饰》 CAS 北大核心 2011年第9期21-23,30,共4页
采用氢氧化钙沉淀法去除化学镀镍液中的亚磷酸根、硫酸根等有害离子,并用氟化物去除多余的钙离子,可实现镀液的循环利用。分析了亚磷酸根去除率与钙离子添加量、沉淀时间、温度的关系,实验结果表明循环利用的镀液能维持较高的镀速。
关键词 化学镀镍液 氢氧化钙沉淀法 再生
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Recovery of magnetite from FeSO_4·7H_2O waste slag by co-precipitation method with calcium hydroxide as precipitant 被引量:3
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作者 余旺 彭映林 郑雅杰 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第1期62-70,共9页
Proper utilization of the FeSO4·7H2O waste slag generated from TiO2 industry is an urgent need, and Fe3O4 particles are currently being widely used in the wastewater flocculation field. In this work, magnetite wa... Proper utilization of the FeSO4·7H2O waste slag generated from TiO2 industry is an urgent need, and Fe3O4 particles are currently being widely used in the wastewater flocculation field. In this work, magnetite was recovered from ferrous sulphate by a novel co-precipitation method with calcium hydroxide as the precipitant. Under optimum conditions, the obtained spherical magnetite particles are well crystallized with a Fe304 purity of 88.78%, but apt to aggregate with a median particle size of 1.83 μm. Magnetic measurement reveals the obtained Fe304 particles are soft magnetic with a saturation magnetization of 81.73 A-m2/kg. In addition, a highly crystallized gypsum co-product is obtained in blocky or irregular shape. Predictably, this study would provide additional opportunities for future application of low-cost Fe3O4 particles in water treatment field. 展开更多
关键词 FeSO4·7H2O TiO2 industry MAGNETITE CO-PRECIPITATION calcium hydroxide magnetic seeding flocculation
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