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首页> 外文期刊>Environmental Progress & Sustainable Energy >Copper Biosorption in the Presence of Lead onto Olive Stone and Pine Bark in Batch and Continuous Systems
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Copper Biosorption in the Presence of Lead onto Olive Stone and Pine Bark in Batch and Continuous Systems

机译:铜吸附重金属铅的存在橄榄石和松树树皮在批处理和连续的系统

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摘要

In the present work, biosorption of copper(II) in the presence of lead(II) ions by olive stone and pine bark was investigated in batch and continuous mode. Particularly, it pretends provide new information regarding binary biosorption of metals in continuous flow. The behavior of competitive Cu(II) and Pb(II) biosorption in batch was successfully described by the multicomponent Sips model, obtaining maximum capacities for Cu(II) and Pb(II) of 1.34 and 2.12 mg/ g, respectively for olive stone, and 6.05 and 10.04 mg/g, respectively, for pine bark. Olive stone and pine bark removed the target metal ions in the selectivity order of Pb(II)>Cu(II). In continuous mode the biosorption capacity for Pb(II) (6.59 and 26.01 mg/g for olive stone and pine bark, respectively) were also higher than copper one (2.19 and 12.66 mg/g for olive stone and pine bark, respectively), indicating the higher affinity of lead for the two biosorbents in continuous system too. Finally, the results of this study demonstrated that pine bark could be a better biosorbent than olive stone.
机译:在目前的工作,生物吸附的铜(II)铅的存在(II)由橄榄石和离子松树皮在批处理和调查连续模式。提供新的二进制信息在连续流生物吸附的金属。竞争铜(II)和铅的行为(2)生物吸附在批处理成功的多组分口模型,获得最大能力铜(II)和铅(2)为1.34和2.12毫克/克,分别为橄榄石、和分别为6.05和10.04毫克/克,松树皮。橄榄石和松树树皮删除目标金属离子的选择性的顺序Pb (II) >铜(II)。Pb (II)的能力(6.59和26.01毫克/克分别为橄榄石和松树树皮)也高于铜(2.19和12.66毫克/克分别为橄榄石和松树皮),表明铅的亲和力越高两个biosorbents连续系统。最后,这项研究的结果表明松树皮可以biosorbent比橄榄石。

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