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盐酸浸出提取赤泥中铝和铁的工艺条件优化 被引量:19

Optimization of condition for extraction of aluminum and iron from red mud by hydrochloric acid leaching
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摘要 系统研究盐酸浸出赤泥中铝和铁的过程,考察酸浸温度、盐酸浓度、酸浸时间、液固比以及赤泥粒度对铝、铁浸出率的影响。单因素实验和正交实验结果得出,在影响浸出率的酸浸温度、盐酸浓度、酸浸时间和液固比对铁、铝的浸出率的影响几个因素中,酸浸温度和盐酸浓度的影响最大,液固比和浸出时间其次。盐酸酸浸的最佳工艺条件为:赤泥粒度150μm、酸浸温度80℃、盐酸浓度10 mol·L^(-1)、液固比8∶1(V/m)、浸出时间150 min,此时铝的浸出率为96.7%,铁的浸出率为95.1%,铁铝总浸出率96.0%。 The process of extraction of aluminum and iron from red mud by hydrochloric acid leaching was investigated systematically and the effect of leaching temperature,hydrochloric acid concentration,leaching time,liquid-solid ratio and particle size on the process were investigated.The results of single factor test and orthogonal test showed that the leaching temperature,and hydrochloric acid concentration had a significant effect on leaching rate of iron and aluminum,followed by the liquid-solid ratio and leaching time.The optimum conditions for extraction of aluminum and iron from red mud by hydrochloric acid leaching can be determined as the red mud particle size of 150 um,the leaching temperature of 80 ℃,the hydrochloric acid concentration of 10 mol·L^-1,the liquid/solid ratio of 8 ∶ 1( V/m) and the leaching time of 150 min,under which aluminum leaching rate of96.7%,iron leaching rate of 95.1% and total leaching rate of aluminum and iron of 96.0% were achieved.
作者 谢武明 张宁 李俊 周峰平 马峡珍 顾舸 张文治 XIE Wuming ZHANG Ning LI Jun ZHOU Fengping MA Xiazhen GU Ge ZHANG Wenzhi(School of Environment Science and Engineering, Guangdong University of Technology, Guangzhou 510006, China School of Chemical Engineering and Light Industry, Guangdong University of Technology, Guangzhou 510006, China Guangdong Polytechnic of Environment Protection Engineering, Foshan 528216, China)
出处 《环境工程学报》 CAS CSCD 北大核心 2017年第10期5677-5682,共6页 Chinese Journal of Environmental Engineering
基金 广东省重大科技专项(2015B010110004) 广州市科技计划项目(2014Y2-00214) 广东省大学生创新创业训练计划项目(201411845213 201411845147)
关键词 赤泥 盐酸 酸浸法 铁浸出率 铝浸出率 red mud hydrochloric acid acid leaching method iron leaching rate aluminum leaching rate
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