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Bioremediation and tolerance of zinc ions using

机译:锌离子使用的生物修复和耐受性

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摘要

Evaluating the mechanism of tolerance and biotransformation Zn(II) ions by Fusarium solani based on the different physiological was the objective of this work. The physical properties of synthesized ZnONPs was determined by UV-spectroscopy, transmission electron microscope, and X-ray powder diffraction. The structural and anatomical changes of F. solani in response to Zn(II) was examined by TEM and SEM. From the HPLC profile, oxalic acid by F. solani was strongly increased by about 10.5 folds in response to 200 mg/l Zn(II) comparing to control cultures. The highest biosorption potential were reported at pH 4.0 (alkali-treated biomass) and 5.0 (native biomass), at 600 mg/l Zn(II) concentration, incubation temperature 30 °C, and contact time 40 min (alkali-treated biomass) and 6 h (native biomass). From the FT-IR spectroscopy, the main functional groups implemented on this remediation were C–S stretching, C=O C=N, C–H bending, C–N stretching and N–H bending. From the EDX spectra, fungal cellular sulfur and phosphorus compounds were the mainly compartments involved on ZN(II) binding.
机译:基于不同生理学的镰刀菌Solani评价耐受性和生物转化Zn(II)离子的机制是这项工作的目的。通过UV光谱,透射电子显微镜和X射线粉末衍射测定合成ZnOnps的物理性质。通过TEM和SEM检查F.Solani响应Zn(II)的结构和解剖学变化。从HPLC型材中,茄子F.Solani的草酸响应于200mg / L Zn(ii)与对照培养物相比,Solani的含量大约10.5倍。在pH 4.0(碱处理生物质)和5.0(天然生物量),浓度为30℃,孵育温度30℃,接触时间40分钟(碱处理生物质)和6小时(原生生物量)。从FT-IR光谱,在该修复上实施的主要官能团是C-S拉伸,C = O C = N,C-H弯曲,C-N拉伸和N-H弯曲。从EDX光谱,真菌细胞硫和磷化合物是Zn(II)结合的主要隔室。

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