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Bioaccumulation and biosorption of zinc by a novel Streptomyces K11 strain isolated from highly alkaline aluminium brown mud disposal site

机译:从高碱性铝棕泥处置场所分离出的新型链霉菌K11菌株对锌的生物累积和生物吸附

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摘要

Zinc biosorption and bioaccumulation by a novel extremely Zn tolerant Streptomyces K11 strain isolated from highly alkaline environment were examined. Temperature, similarly as biosorbent preparation, has negligible effect on the biosorption capacity but very strong effect on the process kinetics. Initial adsorption rate increased almost 10 times with the temperature increase from 10 to 50 degrees C and it was 30 times higher when non-dried biomass was used. The biosorption study revealed that the process was mainly chemically controlled, however at lower temperature intra-particle diffusion played significant role in the zinc biosorption. The experimental data fitted the Langmuir isotherm model with the maximum biosorption capacity 0.75 mmol g(-1). The results of bioaccumulation onto a living biomass of Streptomyces Ell indicated very high bioaccumulation capacity of 4.4 mmol g(-1). Zinc extracellular uptake (43%) slightly exceeded the intracellular accumulation (36%). High zinc bioaccumulation capacity was obviously related to extremely high zinc tolerance of Streptomyces K11.
机译:研究了从高碱性环境分离的新型极耐锌链霉菌K11菌株对锌的生物吸收和生物富集。温度与生物吸附剂的制备方法类似,对生物吸附能力的影响可忽略不计,但对过程动力学的影响非常大。初始吸附速率随温度从10升高到50摄氏度而增加了近10倍,而使用非干燥的生物质时则提高了30倍。生物吸附研究表明,该过程主要是化学控制的,但是在较低温度下,颗粒内扩散对锌的生物吸附起着重要作用。实验数据拟合了Langmuir等温模型,最大生物吸附量为0.75 mmol g(-1)。生物积累到链霉菌Ell的活生物量上的结果表明非常高的生物积累能力为4.4 mmol g(-1)。锌的细胞外摄取(43%)略高于细胞内积累(36%)。锌的高生物积累能力显然与链霉菌K11的极高的锌耐受性有关。

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