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Application Of Two Component Biodegradable Carriers In A Particle-fixed Biofilm Airlift Suspension Reactor: Development And Structure Of Biofilms

机译:两种成分的可生物降解载体在固定颗粒的生物膜气举悬浮反应器中的应用:生物膜的发展和结构

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Two component biodegradable carriers for biofilm airlift suspension (BAS) reactors were investigated with respect to development of biofilm structure and oxygen transport inside the biofilm. The carriers were composed of PHB (polyhydroxybutyrate). which is easily degradable and PCL (caprolactone), which is less easily degradable by heterotrophic microorganisms. Cryosec-tioning combined with classical light microscopy and CLSM was used to identify the surface structure of the carrier material over a period of 250 days of biofilm cultivation in an airlift reactor. Pores of 50 to several hundred micrometers depth are formed due to the preferred degradation of PHB. Furthermore, microelectrode studies show the transport mechanism for different types of biofilm structures, which were generated under different substrate conditions. At high loading rates, the growth of a rather loosely structured biofilm with high penetration depths of oxygen was found. Strong changes of substrate concentration during fed-batch mode operation of the reactor enhance the growth of filamentous biofilms on the carriers. Mass transport in the outer regions of such biofilms was mainly driven by advection.
机译:针对生物膜气举悬浮(BAS)反应器的两种成分可生物降解的载体,研究了生物膜结构的发展和生物膜内部的氧气传输。载体由PHB(聚羟基丁酸酯)组成。易降解,而异养微生物则不易降解。在空运反应器中进行250天生物膜培养的过程中,将冷冻干燥与经典光学显微镜和CLSM结合使用来鉴定载体材料的表面结构。由于PHB的优选降解,形成了50至数百微米深度的孔。此外,微电极研究显示了在不同的底物条件下产生的不同类型的生物膜结构的转运机制。在高加载速率下,发现具有高度氧气渗透深度的结构较松散的生物膜的生长。在反应器的分批进料模式操作期间,底物浓度的强烈变化增强了载体上丝状生物膜的生长。这种生物膜的外部区域的质量运输主要由平流驱动。

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