首页> 外文期刊>Radiochimica Acta: International Journal for Chemical Aspects of Nuclear Science and Technology >Mechanism of thorium biosorption by the cells of the soil fungal isolate Geotrichum sp. dwc-1
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Mechanism of thorium biosorption by the cells of the soil fungal isolate Geotrichum sp. dwc-1

机译:土壤真菌分离株Geotrichum sp。的细胞对th的生物吸附机理。 dwc-1

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In order to understand the impact of microorganisms on the fate of thorium in soils, we investigated the thorium biosorption behavior and the corresponding mechanisms by the cells of Geotrichum sp. dwc-1, one of the dominant species of fungal group isolated from 3.5m depth soil layer in Southwest China. It was observed that fast thorium adsorption onto cells of G. sp. dwc-1 could take place, with a high distribution coefficient d (0.93mL/mg) obtained, when Geotrichum sp. dwc-1and thorium concentrations were 5 g/L and 10mg/L, respectively. The thorium biosorption behavior was dependent on the pH value, and the lower pH could disrupt cell membrane of G. sp. dwc-1. At pH 1, thorium was accumulated in the cytoplasmic region of the cells. When pH was higher than 1, thorium was adsorbed on the cell surface of G. sp. dwc-1, like in periplasmic region or in the outer membrane. FTIR study combined with biosorption experiments further indicated that the thorium distribution and binding behavior on cell surface were associated with amino, hydroxyl groups and phosphate or sulphur functional groups, and might also be governed by electrostatic interaction. Moreover, PIXE and EPBS showed that ion-exchange mechanism contributed to the thorium biosorption process, in which the tetravalent thoriumions replaced smaller counter-ions (K~+, Ca~(2+) and Fe~(3+)) occuring on the cell surface.
机译:为了了解微生物对土壤中the命运的影响,我们研究了Geotrichum sp。细胞对sorption的生物吸附行为及其相应的机理。 dwc-1是从中国西南部3.5m深度土壤层中分离出来的真菌群的主要物种之一。观察到快速fast吸附到G.sp.的细胞上。当Geotrichum sp。dwc-1发生时,可获得高分配系数d(0.93mL / mg)。 dwc-1和th的浓度分别为5 g / L和10mg / L。 or的生物吸附行为取决于pH值,较低的pH值可能破坏G. sp。的细胞膜。 dwc-1。在pH 1时,or积累在细胞的细胞质区域。当pH高于1时,or被吸附在G.sp.的细胞表面上。 dwc-1,如在周质区域或外膜中。 FTIR研究与生物吸附实验相结合,进一步表明distribution在细胞表面的分布和结合行为与氨基,羟基,磷酸或硫官能团有关,并且也可能受静电相互作用的控制。此外,PIXE和EPBS表明离子交换机制促进了bio的生物吸附过程,其中四价th离子取代了较小的抗衡离子(K〜+,Ca〜(2+)和Fe〜(3+))。细胞表面。

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