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Overcoming oxygen limitations in membrane-attached biofilms-investigation of flux and diffusivity in an anoxic biofilm

机译:克服膜附着生物膜中的氧气限制-缺氧生物膜中通量和扩散性的研究

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The possibility of overcoming oxygen limitations in membrane-attached biofilms has been investigated by using nitrate as an electron acceptor instead of oxygen in an extractive membrane bioreactor (EMB) degrading toluene. The effect of nitrate concentration on toluene flux, the effective diffusivity in the biofilm and the biofilm activity has been investigated. A counter-diffusion-reaction model is also presented, describing the pollutant flux versus biofilm thickness. The toluene flux decreased with increasing biofilm thickness under excess nitrate concentrations, similar to the experiment with low nitrate. Mathematical modelling indicated that this was either due to decreasing activity, and/or different diffusivities in the biofilm. The effective diffusivity was investigated by using an inert tracer molecule. It remained constant for biofilm thicknesses up to 1.8 mm, with a value twice that in water. The biofilm activity was investigated by inactivating a mature biofilm using sodium azide. The toluene flux remained the same before and after the addition of sodium azide, suggesting that the activity in the biofilm is very low. We conclude that the decreasing toluene flux with increasing biofilm thickness is due to the diffusional resistance of the inactive biofilm.
机译:通过使用硝酸盐作为电子受体代替萃取膜生物反应器(EMB)降解甲苯中的氧,已经研究了克服膜附着生物膜中氧限制的可能性。研究了硝酸盐浓度对甲苯通量,生物膜中有效扩散率和生物膜活性的影响。还提出了一种反扩散反应模型,该模型描述了污染物通量与生物膜厚度的关系。在硝酸盐浓度过高的情况下,甲苯通量随生物膜厚度的增加而降低,这与硝酸盐含量低的实验相似。数学模型表明,这是由于生物膜活性降低和/或扩散不同。通过使用惰性示踪剂分子研究了有效扩散率。对于厚度不超过1.8毫米的生物膜,它保持不变,其值是水中的两倍。通过使用叠氮化钠灭活成熟的生物膜来研究生物膜活性。在加入叠氮化钠之前和之后,甲苯流量保持不变,这表明生物膜中的活性非常低。我们得出结论,随着生物膜厚度的增加,甲苯通量的减少是由于非活性生物膜的扩散阻力所致。

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