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首页> 外文期刊>Mineral Processing and Extractive Metallurgy Review >Sorption of Heavy Metals onto Nonliving Water Hyacinth Roots
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Sorption of Heavy Metals onto Nonliving Water Hyacinth Roots

机译:重金属对非生命水葫芦根的吸附

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摘要

Dried water hyacinth (Eichhornia crassipes (Mart.) Solms) roots, when suspended in water, strongly sorb Cd(II) and Pb(II) with Pb(II) more strongly sorbed than Cd(II). The sorption is dependent on factors such as reaction time, pH, concentration of metal ions, temperature, the presence of other metal ions and biomass concentration. In particular, the metal ions are bound to the root biomass in a highly pH dependent manner. Interestingly, Pb(II) is sorbed in concentrations greater than would be expected based on the relative atomic weight of the two metals. The metal ions can readily be desorbed and the roots regenerated. It appears that the roots can be, thus, recycled through at least 50 loading-elution cycles without significant loss of sorption properties. Therefore, there appears to be a considerable advantage to using such dead biomass over the living plants which can be used for only one sorption cycle.
机译:干的风信子(Eichhornia crassipes(Mart。)Solms)根系在水中时,会强烈吸附Cd(II)和Pb(II),而Pb(II)比Cd(II)吸附更强。吸附取决于反应时间,pH,金属离子浓度,温度,其他金属离子的存在和生物质浓度等因素。特别地,金属离子以高度依赖pH的方式结合至根生物质。有趣的是,Pb(II)的吸附浓度高于基于两种金属的相对原子量所预期的浓度。金属离子很容易被解吸并且根部再生。因此,看来根可以通过至少50次加载-洗脱循环而再循环,而不会显着丧失吸附性能。因此,与仅可用于一个吸附循环的活植物相比,使用这种死生物质似乎具有相当大的优势。

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