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Biosorption of Hg(II) and Cu(II) by biomass of dried Sargassum fusiforme in aquatic solution

机译:羊栖菜干燥后的梭形生物量对水体中Hg(II)和Cu(II)的生物吸附

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The biosorption of heavy metals Hg(II) and Cu(II) from aquatic solution by biomass of dried Sargassum fusiforme was studied in the paper. The Sargassum fusiforme was able to absorb appreciable amount of mercury and copper from the aquatic solutions within 60 min of contact time with the metal solution and exhibited high removal of mercury and copper at low equilibrium concentrations. The specific adsorption of both Hg(II) and Cu(II) increased at low concentration of biomass and decreased when biomass concentration exceeded 2.0 g/L. The binding of mercury followed Freundlich model while copper supported Langmuir isotherm for adsorption with their r2 values of 0.971 and 0.923, respectively. The maximum adsorption per unit masses of Sargassum fusiforme (mg/L) at equilibrium (qmax) for Hg(II) and Cu(II) were calculated to be 30.86 and 7.69 mg/g, respectively. The biosorption by Sargassum fusiforme was best described using a pseudo-second-order kinetic model for copper and mercury ions in solution in the study. The adsorption was pH dependent as the maximum mercury biosorption and copper adsorption was happened at solution pH of 8–10.
机译:本文研究了干燥的羊栖菜丝孢对生物体对水体中重金属Hg(II)和Cu(II)的生物吸附作用。羊栖菜(Sargassum fusiforme)能够在与金属溶液接触的60分钟内从水溶液中吸收相当数量的汞和铜,并在低平衡浓度下表现出较高的汞和铜去除率。 Hg(II)和Cu(II)的比吸附在低生物量浓度下会增加,而当生物量浓度超过2.0 g / L时会降低。汞的结合遵循Freundlich模型,而铜支持的Langmuir等温线用于吸附,其r2值分别为0.971和0.923。 Hg(II)和Cu(II)在平衡状态(qmax)时,羊栖菜藻的最大单位质量吸附量(mg / L)分别为30.86和7.69 mg / g。在研究中,使用拟二级动力学模型对溶液中的铜和汞离子进行了最好的描述,以羊栖孢子虫为例进行了生物吸附。吸附取决于pH,因为最大的汞生物吸附和铜吸附发生在pH 8-10的溶液中。

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