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首页> 外文期刊>Revista de Chimie >Comparative Bio-sorption of Cadmium and Nickel Ions from Aqueous Solution onto Fibers of Date Palm using Fluidized Bed Column
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Comparative Bio-sorption of Cadmium and Nickel Ions from Aqueous Solution onto Fibers of Date Palm using Fluidized Bed Column

机译:使用流化床柱将镉和镍离子与水溶液纤维的比较生物吸附

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The aim of this study is to use the dry fibers of date palm as low-cost biosorbent for the removal of Cd(II), and Ni(II) ions from aqueous solution by fluidized bed column. The effects of many operating conditions such as superficial velocity, static bed height, and initial concentration on the removal efficiency of metal ions were investigated. FTIR analyses clarified that hydroxyl, amine and carboxyl groups could be very effective for bio-sorption of these heavy metal ions. SEM images showed that dry fibers of date palm have a high porosity and that metal ions can be trapped and sorbed into pores. The results show that a bed height of 6 cm, velocity of 1.1U(mf) and initial concentration for each heavy metal ions of 50 mg/L are most feasible and give high removal efficiency.The fluidized bed reactor was modeled using ideal plug flow and this model was solved numerically by utilizing the MATLAB software for fitting the measured breakthrough results. The breakthrough curves for metal ions gave the order of bio-sorption capacity as follow: Cd(II)>Ni(II).
机译:本研究的目的是使用Dave Palm的干纤维作为低成本的生物吸附剂,用于通过流化床柱从水溶液中除去CD(II)和Ni(II)离子。研究了许多操作条件的影响,例如表面速度,静态床高度和初始浓度对金属离子的去除效率。 FTIR分析澄清了羟基,胺和羧基对于这些重金属离子的生物吸附非常有效。 SEM图像显示枣棕榈的干纤维具有高孔隙率,并且金属离子可以被捕获并吸附到孔中。结果表明,床高度为6厘米,速度为1.1U(MF)和50mg / L的每个重金属离子的初始浓度是最可行的,并且提供高脱模效率。使用理想的塞流模型流化床反应器。并且通过利用MATLAB软件拟合测量的突破结果来数字地解决了该模型。金属离子的突破曲线如下,给出了生物吸附能力的顺序:CD(II)> Ni(II)。

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