首页> 外文期刊>Journal of Hazardous Materials >Removal of cobalt ions from aqueous solutions by polymer assisted ultrafiltration using experimental design approach. part 1: Optimization of complexation conditions
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Removal of cobalt ions from aqueous solutions by polymer assisted ultrafiltration using experimental design approach. part 1: Optimization of complexation conditions

机译:使用实验设计方法通过聚合物辅助超滤去除水溶液中的钴离子。第1部分:络合条件的优化

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摘要

The polymer assisted ultrafiltration process combines the selectivity of the chelating agent with the filtration ability of the membrane acting in synergy. Such hybrid process (complexation-ultrafiltration) is influenced by several factors and therefore the application of experimental design for process optimization using a reduced number of experiments is of great importance.rnThe present work deals with the investigation and optimization of cobalt ions removal from aqueous solutions by polymer enhanced ultrafiltration using experimental design and response surface methodological approach. Polyethyleneimine has been used as chelating agent for cobalt complexation and the ultrafiltration experiments were carried out in dead-end operating mode using a flat-sheet membrane made from regenerated cellulose. The aim of this part of experiments was to find optimal conditions for cobalt complexation, i.e. the influence of initial concentration of cobalt in feed solution, polymer/metal ratio and pH of feed solution, on the rejection efficiency and binding capacity of the polymer. In this respect, the central compositional design has been used for planning the experiments and for construction of second-order response surface models applicable for predictions. The analysis of variance has been employed for statistical validation of regression models. The optimum conditions for maximum rejection efficiency of 96.65% has been figured out experimentally by gradient method and was found to be as follows: [Co~(2+)]_0 = 65 mg/L, polymer/metal ratio=5.88 and pH 6.84.
机译:聚合物辅助的超滤过程将螯合剂的选择性与协同作用的膜的过滤能力结合在一起。这种混合过程(复杂-超滤)受几个因素的影响,因此减少实验次数的实验设计在过程优化中的应用非常重要。本工作致力于研究和优化从水溶液中去除钴离子的研究。通过使用实验设计和响应面方法学方法的聚合物增强超滤技术。聚乙烯亚胺已经用作钴络合的螯合剂,超滤实验是在死角操作模式下使用由再生纤维素制成的平板膜进行的。这部分实验的目的是找到钴络合的最佳条件,即原料溶液中钴的初始浓度,聚合物/金属比和原料溶液的pH对聚合物的排斥效率和结合能力的影响。在这方面,中央成分设计已用于计划实验和构建适用于预测的二阶响应面模型。方差分析已用于回归模型的统计验证。通过梯度法实验确定了最大去除效率为96.65%的最佳条件,发现其如下:[Co〜(2 +)] _ 0 = 65 mg / L,聚合物/金属比= 5.88,pH 6.84 。

著录项

  • 来源
    《Journal of Hazardous Materials》 |2009年第3期|599-609|共11页
  • 作者单位

    Department of Nuclear Methods in Process Engineering, Institute of Nuclear Chemistry and Technology, Dorodna 16, 03-195 Warsaw, Poland Tudor Neculai 25, 953C-14, lasi, Romania;

    Department of Nuclear Methods in Process Engineering, Institute of Nuclear Chemistry and Technology, Dorodna 16, 03-195 Warsaw, Poland;

    Department of Nuclear Methods in Process Engineering, Institute of Nuclear Chemistry and Technology, Dorodna 16, 03-195 Warsaw, Poland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    polymer assisted ultrafiltration; complexation; heavy metal removal; response surface methodology;

    机译:聚合物辅助超滤;复杂化重金属去除;响应面法;

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