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A Study on the Formation Mechanism of Biologically Immobilized Ceramic Particles and the Distribution Rule of Microorganisms

机译:生物固定陶瓷颗粒形成机制及微生物分布规则的研究

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Immobilized microorganism technology is an effective method of removing water pollutant in source waters. The effect of biologically immobilized ceramic particles is better in removing the pollutant than simple filter or engineering bacteria liquid, due to the two factors including the adsorption and entrapment function of the filter materials in the biofilter and the biodegradation of the microorganisms. This study analyzed the formation mechanism of biologically immobilized ceramic particles: the large pore on the surface of ceramic particles entrapped the microorganisms, with its surface positively charged to adsorb the microorganisms; then conversely, the amorphous matter secreted by the microorganisms made themselves immobilized on the ceramic particles. In the final part of the study, the variation of microorganism layers in the immobilized bioreactor was observed and investigated to reveal the succession regulations of microorganisms and the characteristics of different layers of microorganisms
机译:固定化的微生物技术是在源水域中除去水污染物的有效方法。由于两种因素包括在生物过滤器中的过滤材料和微生物的生物降解的两个因素,因此,生物固定陶瓷颗粒的效果更好地除去污染物而不是简单的过滤器或工程细菌液体的吸附和夹带功能。本研究分析了生物固定陶瓷颗粒的形成机制:陶瓷颗粒表面上的大孔隙捕获微生物,其表面带正电荷以吸附微生物;然后,微生物分泌的无定形物质使自己固定在陶瓷颗粒上。在研究的最后一部分中,观察到并研究了固定化生物反应器中微生物层的变化,揭示了微生物的继承规范和不同微生物层的特征

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