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Application of Chlorine Dioxide in Cell Surface Modification to Enhance Its Mechanical Stability and Metal Ion Adsorption

机译:二氧化氯在细胞表面修饰中的应用以增强其机械稳定性和金属离子吸附

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There has been a trend toward the use of microorganisms as the biomaterial for removing dyes and metals from wastewater. However, native microorganism cells have low mechanical stability, which limit their further application in industries. In this study, chlorine dioxide (ClO2), a high-efficiency, low-toxicity, and environmentally benign disinfectant, was used for microorganism surface modification to enhance the mechanical stability and metal ion adsorption of the cell. ClO2 can either modify cell walls to improve their metal adsorption capacity or modify cell membranes to improve their mechanical stability. Fourier-transform infrared spectroscopy analysis indicated that several cell surface groups were involved in the cell wall modification of Bacillus sp. Microscopic observation indicated that ClO2 treatment could deter cell membranes from forming vesicles in sodium hydroxide (NaOH) aqueous solution, and freeze-etching showed that ClO2 treatment could alter the erythrocyte membrane proteins which might also contribute to improving the cell stability. The experimental results on Bacillus sp., Pseudomonas aeruginosa, and Mucor rouxii show that ClO2 treatment may increase, or at least not reduce, the ability of microbial cells to adsorb heavy metals, but it can significantly improve the resistance of these cells to NaOH cleavage. It seems ClO2 is a promising auxiliary for biosorption of heavy-metal ions.
机译:使用微生物作为从废水中去除染料和金属的生物材料已经成为趋势。但是,天然微生物细胞的机械稳定性低,这限制了它们在工业中的进一步应用。在这项研究中,高效,低毒且对环境无害的二氧化氯(ClO2)用于微生物表面修饰,以增强细胞的机械稳定性和金属离子吸附能力。 ClO 2可以修饰细胞壁以改善其金属吸附能力,或修饰细胞膜以改善其机械稳定性。傅里叶变换红外光谱分析表明,芽孢杆菌的细胞壁修饰涉及多个细胞表面群。显微镜观察表明,ClO2处理可以阻止细胞膜在氢氧化钠(NaOH)水溶液中形成囊泡,冷冻蚀刻表明ClO2处理可以改变红细胞膜蛋白,这也可能有助于改善细胞稳定性。对芽孢杆菌属,铜绿假单胞菌和鲁氏酵母的实验结果表明,ClO2处理可能会增加或至少不会降低微生物细胞吸附重金属的能力,但可以显着提高这些细胞对NaOH裂解的抵抗力。 。 ClO2似乎是重金属离子生物吸附的有前途的助剂。

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