首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Removal of tetracycline by denitrifying Mn(II)-oxidizing bacterium Pseudomonas sp. H117 and biomaterials (BMO and MBMO): Efficiency and mechanisms
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Removal of tetracycline by denitrifying Mn(II)-oxidizing bacterium Pseudomonas sp. H117 and biomaterials (BMO and MBMO): Efficiency and mechanisms

机译:通过癸腈Mn(II) - 氧化细菌假霉素SP除去四环素。 H117和生物材料(BMO和MBMO):效率和机制

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摘要

Coexistence of multiple pollutants such as antibiotic, nitrate and heavy metal has received increasing attention resently. In this study, the functions of Pseudomonas sp.H117 on the removal of tetracycline(TC), nitrate and Mn (II), and biological materials (BMO(biogenic manganese oxides), MBMO(magnetic BMO)) on the removal of TC were investigated. Strain H117 showed higher TC removal efficiency of 68.86% (0.071 mg.L-1.h(-1)) within 96 h. Meanwhile, NO3-N and Mn(II) achieved high removal efficiency of 100% (0.211 mg.L-1.h(-1)) and 64.64% (0.265 mg.L-1.h(-1)), respectively. Furthermore, trapping experiments testified that Mn(III) intermediate formed during the biological manganese oxidation process, which contribute to the TC degradation. 91.29% and 96.63% of TC removal efficiency within 12 h were achieved by BMO and MBMO. Moreover, XPS, FTIR spectra, kinetics analysis and adsorption isotherms elucidated Mn(III) oxidation, chemical adsorption and ligand exchange reactions contribute to the removal of TC by biomaterials.
机译:多种污染物如抗生素,硝酸盐和重金属等污染物的共存已得到越来越大的关注。在该研究中,假单胞菌Sp.H117在去除四环素(Tc),硝酸盐和Mn(II)中的功能,以及去除TC的生物材料(BMO(生物锰氧化物),MBMO(磁性BMO)是调查。菌株H117在96小时内显示出68.86%(0.071mg.L-1.h(-1))的较高的TC去除效率。同时,NO 3-N和MN(II)分别实现了100%(0.211mg.L-1.H(-1))和64.64%(0.265mg.L-1.H(-1))的高次去除效率。此外,捕获实验证明了在生物锰氧化过程中形成的Mn(III)中间体,这有助于TC降解。通过BMO和MBMO实现了121.29%和96.63%的TC去除效率。此外,XPS,FTIR光谱,动力学分析和吸附等温线阐明了Mn(III)氧化,化学吸附和配体交换反应有助于通过生物材料去除TC。

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