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Two-Dimension Dynamic Simulations on Biofilm Forming and Developing

机译:生物膜形成和发展的二维动态模拟

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摘要

It played an important role for biofilm microstructure and morphology on wastewater biological treatments. Multi-species microorganisms were able to form varieties of biofilm on adaptive carriers, and the process of biofilm to form and develop on carriers was multi-dimensional and dynamic. In this article, substrate transfer, biofilm formation and development in a two-dimension space were dynamically simulated with a combined discrete-differential method. The micro structural and morphological characteristics, such as biofilm thickness, density and porosity, were obtained as model output by using this new-type model. Meanwhile, the effects of the growing time and initial inoculation number of microorganisms on biofilm microstructure and morphology were also discussed. Firstly, the thickness of biofilm was increasing along with the growing time of biomass extending. At the time of 30 h for biofilm formation and development, it was not completely covered for carrier by bio-mass , and the fluctuation of biofilm was very ambient; but at the time of 60 h, biomass had covered the carrier entirely, and the fluctuation of biofilm tended to gentleness. Secondly, as biomass growing time was 30 h, it was not covered completely for carrier by biomass with different initial inoculating number of 50, 150 and 250. And the covering degree of biomass was improving along with initial inoculating number increasing. Especially, as initial inoculating number was 250, it was nearly covered for carrier by biomass.
机译:它对废水生物处理中生物膜的微观结构和形态起着重要作用。多物种微生物能够在适应性载体上形成生物膜的变种,生物膜在载体上形成和发展的过程是多维的和动态的。在本文中,采用组合离散差分方法动态模拟了二维空间中的基质转移,生物膜形成和发展。通过使用这种新型模型,获得了生物膜厚度,密度和孔隙率等微观结构和形态特征,作为模型输出。同时,还讨论了微生物的生长时间和初始接种数量对生物膜微结构和形态的影响。首先,生物膜的厚度随着生物量的延长而增加。在生物膜形成和发育的30小时时,生物质并未完全覆盖它作为载体,生物膜的波动非常大。但在60 h时,生物量完全覆盖了载体,生物膜的波动趋于平缓。其次,当生物量生长时间为30 h时,初始接种数分别为50、150和250的生物量不能完全覆盖载体。生物量的覆盖度随着初始接种数的增加而提高。特别地,由于初始接种数目为250,因此几乎被生物质覆盖作为载体。

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