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Study on Adsorption Capacities of Heavy Metals in Biofilms Grown on Magnetic Carriers

机译:磁性载体上生物膜中重金属的吸附能力研究

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The adsorption capacities of heavy metals in biofilms have the potential advantage of high efficiency. More and more attention has been paid to the study of the adsorption of heavy metals in biofilms. This study designed four reactors to test the adsorption capacities of heavy metals in biofilms grown on three kinds of magnetic carriers and one kind of non-magnetic carriers. The results showed that the heavy metal adsorption capacities of biofilms grown on the magnetic carriers were more than that of biofilms grown on the non-magnetic carriers, and the adsorption capacities of biofilms grown on the magnetic carriers increased with the increasing of the strontium ferrite powder components contained in the carriers and influenced the magnetic field strength. This paper made a beneficial attempt to study on utilizing the magnetic carriers to biologically restore the water polluted by heavy metals.
机译:生物膜中重金属的吸附能力具有高效率的潜在优势。 越来越多地关注生物膜中重金属的吸附研究。 本研究设计了四种反应堆,以测试在三种磁性载体和一种非磁性载体上生物膜中的重金属的吸附容量。 结果表明,在磁性载体上生长的生物膜的重金属吸附能力大于在非磁性载体上生长的生物膜,并且在磁性载体上生长的生物膜的吸附能力随着锶铁氧体粉的增加而增加 载体中包含的部件并影响磁场强度。 本文对利用磁性载体进行生物学恢复受重金属污染的水的生物载体进行了有益的尝试。

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