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从铋冶炼浸渣制取三盐基硫酸铅的研究

Study on preparation tribasic lead sulphate from bismuth hydrometallurgy waste residue

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【作者】 罗金凤; 胡立舜; 丁英萍; 邱祖民;

【Author】 Luo Jinfeng~1 Hu Lishun~2 Ding Yingping~1 Qiu Zumin~(1,3) (1.School of Environmental Science and Engineering,Nanchang University,Nanchang,330029,Jiangxi,China,; 2.Institute of Clean Coal Technology East Chine University of Science and Technology,Shanghai,200237,China; 3.Key Laboratory of Poyang Lake Ecology and Bio-resource Utilization of Ministry of Education,Nanchang University,Nanchang,Jiangxi 330029,China)

【机构】 南昌大学环境科学与工程学院; 华东理工大学资源与环境工程学院; 南昌大学环境科学与工程学院 江西; 南昌; 330029; 上海; 200237; 江西; 330029 教育部鄱阳湖湖泊生态与生物资源利用实验室;

【摘要】 本文介绍了以铋冶炼浸渣为原料。利用碳酸氢铵转化法合成三盐基硫酸铅的工艺原理;在碳酸氢铵转化过程中,通过设计正交实验,系统探讨影响铅转化率的主要因素,并且通过BP神经网络为实验结果建模,模拟结果与实验结果比较吻合,说明了模型准确可靠,同时将所建立的神经网络嵌入到遗传算法中,通过遗传算法寻求系统的最优结果,得到的最优操作条件分别为:NH4HCO3/Pb摩尔比2.56,反应时间2.3 h,HAc/浸渣比0.6%(wt%),液固比1.2,铅转化率可以达到98.26%。

【Abstract】 The processing principle of synthesizing tribasic lead sulphate from bismuth hydrometallurgy waste residue through ammoni- um hydrogen carbonate transformation was introduced.The affecting factors on in the processing of ammonium hydrogen carbonate transformation were studied through an orthogonal test and the result was modeled by BP neural network.The simulated value was fitted closely to experimental value,illuminating the accuracy and reliability of the model.Meanwhile the neural network was embedded into the genetic algorithms to search for the optimum result.The optimum condition obtained was:NH4 HCO3/Pb=2.56 (mole ratio),reac- tion time t=2.3 h,HAc/waste residue deh with acid=0.6% (wt%),liquid/solid=1.2.The reclaiming rate of Pb obtained was up to 98.26%.

【基金】 江西省科技厅社发重点研究资助项目(2004027);南昌大学青年基金(2005035);南昌大学测试基金(2005010)
  • 【文献出处】 计算机与应用化学 ,Computers and Applied Chemistry , 编辑部邮箱 ,2006年10期
  • 【分类号】TF817
  • 【被引频次】2
  • 【下载频次】91
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