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首页> 外文期刊>Biotechnology & Biotechnological Equipment >TIME-GRADIENT NITRIC ACID MODIFICATION OF CF BIOFILM-CARRIER AND SURFACE NATURE EFFECTS ON MICROORGANISM IMMOBILIZATION BEHAVIOR IN WASTEWATER
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TIME-GRADIENT NITRIC ACID MODIFICATION OF CF BIOFILM-CARRIER AND SURFACE NATURE EFFECTS ON MICROORGANISM IMMOBILIZATION BEHAVIOR IN WASTEWATER

机译:CF生物膜载体的时效硝酸修饰及表面性质对废水中微生物迁移行为的影响

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摘要

PAN-based carbon fiber (CF) biofilm-carrier was modified by nitric acid for a different oxidation time. The CF surface morphology and nature were characterized by laser confocal microscopy (LCM), Fourier transform infrared spectroscopy (FTIR), X-ray photoelectron spectroscopy (XPS) and degree of moisture (DM). In addition, the biocompatibility of CF was discussed based on the immobilization behavior of microorganisms. The results indicated that the HNO3 oxidation treatment could be regarded as a favorable surface treatment for the CF carrier The surface oxygen content and hydrophilicity were shown to affect the immobilization ability of microorganisms and influence biofilm formation on the CF surface. Among these, the carboxyl content on the CF surface contributed greatly to microorganism immobilization. The configurations and adhesion forms of cells were considerably affected by the properties of the CF surface. The results from this study could be helpful in the study of microorganism adhesion mechanisms and could be regarded as promising in view of preparation of high biocompatibility bio-carriers in the field of water treatment.
机译:PAN基碳纤维(CF)生物膜载体被硝酸修饰了不同的氧化时间。通过激光共聚焦显微镜(LCM),傅立叶变换红外光谱(FTIR),X射线光电子能谱(XPS)和水分含量(DM)表征了CF表面的形态和性质。此外,基于微生物的固定化行为讨论了CF的生物相容性。结果表明,HNO3氧化处理可作为CF载体的良好表面处理方法。表面氧含量和亲水性可影响微生物的固定能力,并影响CF表面生物膜的形成。其中,CF表面上的羧基含量极大地促进了微生物的固定化。 CF表面的性能极大地影响了细胞的构型和粘附形式。这项研究的结果可能有助于研究微生物的粘附机制,并且在水处理领域制备高生物相容性生物载体方面被认为是有希望的。

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