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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Biosorption and bio-kinetic studies of halobacterial strains against Ni ~(2+), Al ~(3+) and Hg ~(2+) metal ions
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Biosorption and bio-kinetic studies of halobacterial strains against Ni ~(2+), Al ~(3+) and Hg ~(2+) metal ions

机译:盐菌菌株对Ni〜(2 +),Al〜(3+)和Hg〜(2+)金属离子的生物吸附和生物动力学研究

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The present study is an attempt to find out the promising metal (Ni ~(2+), Al ~(3+), and Hg ~(2+)) biosorbant halobacterial strains from saltern pan and to study their biokinetic parameters for metal recovery. Of the selected 65 isolates, Natronobacterium magadii, Natronococcus occultus and Halobacterium sodomense shows the maximum metal resistance activity against Ni ~(2+) (250ppm), Al ~(3+) (600ppm) and Hg ~(2+) (25ppm) metals. Biokinetic parameters such as maximum specific growth rate (μ _(max)), substrate removable [S] rate, half velocity constant (K _s), endogenous or decay co-efficient (k _d), yield co-efficient rate (Yd ~(-1)) are also analyzed for the selected metals. Further the results of the SEM-EDS analysis confirms the metals uptake of Ni ~(2+) and Al ~(3+) in higher concentration and Hg ~(2+) in lower concentration. It is concluded from the present study that, the biosorption of heavy metals by solar saltern halobacteria can be used as a potential source for the bioremediation of metals.
机译:本研究试图从盐皿中找出有希望的金属(Ni〜(2 +),Al〜(3+)和Hg〜(2+))生物吸附剂卤细菌菌株并研究其用于金属回收的生物动力学参数。在选定的65种分离物中,magadii magadii,ococcuscus occultus和sodomense嗜盐杆菌显示出对Ni〜(2+)(250ppm),Al〜(3+)(600ppm)和Hg〜(2+)(25ppm)的最大金属抗性金属。生物动力学参数,例如最大比生长速率(μ_(max)),可移动的底物[S]速率,半速度常数(K s),内生或衰减系数(k d),屈服系数(Yd〜 (-1))还分析了选定的金属。 SEM-EDS分析的结果进一步证实了较高浓度的Ni〜(2+)和Al〜(3+)和较低浓度的Hg〜(2+)对金属的吸收。从本研究得出的结论是,太阳盐盐细菌对重金属的生物吸附可以用作金属生物修复的潜在来源。

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