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Biomass adaptation to complex substrate degradation in membrane bioreactors: appropriated operating conditions

机译:膜生物反应器中生物质对复杂底物降解的适应性:适当的操作条件

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The aim of this work is to analyse the biological performances of two immersed membranes bioreactors focusing on the biomass adaptation to complex substrate degradation and the performance in term of permeate quality. Two influents were selected: a synthetic complex influent (acetate/Viandox (R), MBR1) and a real seafood processing wastewater (surimi product, MBR2). The MBR systems were operated for long periods without any sludge extraction except for sampling. Organic matter removal, sludge production and quality of the treated wastewater were analysed and studied. COD removal efficiencies after a period of biomass adaptation were higher than 97% and 95% for the synthetic and real wastewater respectively. in both cases, the COD of the treated wastewater was lower than 50 mg.L-1. In spite of salt concentration in the real wastewater a biomass adaptation process occurs. In the overall operational period, a 0.058 gCOD(P).gCOD(T)(-1) and a 0.12 gCOD(P).gCOD(T)(-1) observed sludge yields were obtained for the MBR1 and MBR2 respectively. These values are. approximately 5 to 10 times lower than those measured in conventional activated sludge process. These results showed that the presence of particular and some of non-easily degradable compounds in the influent of MBR2 didn't limit the performance of MBR in term of COD removal achieved The. results have also confirmed the excellent permeate quality for water reuse from MBR systems.
机译:这项工作的目的是分析两个浸入式膜生物反应器的生物学性能,重点是生物量对复杂底物降解的适应性以及渗透物质量方面的性能。选择了两种进水:合成的复杂进水(乙酸盐/ Viandox(R),MBR1)和真正的海鲜加工废水(鱼糜制品,MBR2)。 MBR系统长时间运行,除采样外没有任何污泥提取。分析研究了有机物的去除,污泥的产生和所处理废水的质量。生物质适应一段时间后,合成废水和实际废水的COD去除效率分别高于97%和95%。在两种情况下,处理后的废水的COD均低于50 mg.L-1。尽管实际废水中的盐浓度很高,但仍会发生生物量适应过程。在整个运行期间,MBR1和MBR2的污泥产率分别为0.058 gCOD(P).gCOD(T)(-1)和0.12 gCOD(P).gCOD(T)(-1)。这些值是。比传统的活性污泥法测量的结果低约5至10倍。这些结果表明,在MBR2进水中存在特定的和一些不易降解的化合物,并不能限制MBR的COD去除性能。结果也证实了MBR系统中水回用的优异渗透质量。

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