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The carbon source separation from fermented sewage sludge for stimulation of denitrification and bisphenol A removal

机译:来自发酵污水污泥的碳源分离,刺激脱硝和双酚去除

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摘要

Since biodegradable carbon source was helpful for both denitrification and cometabolic biodegradation of synthetic organic compounds, the study attempted to obtain a novel liquid carbon source from alkaline hydrolysates of co-fermented sludge and food wastes (HFSF) for the stimulation of denitrification and bisphenol A (BPA) removal in the biofilm system. The biofilm with function of denitrification was cultivated from sequencing batch biofilm reactor, having abundant denitrifiers (Acinetobacter, Paracoccus, Comamonas, Hyphomicrobium, Flavobacterium, etc.). Appropriate addition of HFSF in the systems with mature biofilm could significantly enhance denitrification and BPA removal, while no positive relation occurred. Optimum performances (with denitrification rate of 1.68mg(Lh)(-1), P-DN of 0.348gNg(-1) COD, BPA removal rates of 87.8 +/- 4.5%, and less than 100mgL(-1) COD) were obtained at COD/N ratio of 6.0. Optimum HRT was 12h to avoid nitrite and ammonium accumulation. Biofilm EPS increased as influent COD/N ratio raise from 2.0 to 6.0, which might be related with BPA removal.
机译:由于可生物降解的碳源对合成有机化合物的脱硝和Cometabolic生物降解有所帮助,因此试图从共发酵污泥和食品废弃物(HFSF)的碱性水解产物获得新的液体碳源,以刺激反硝化和双酚A( BPA)在生物膜系统中去除。通过测序分批生物膜反应器培养具有脱氮功能的生物膜,具有丰富的脱氮化(acineTobacter,Paracccus,Comamonas,旋霉菌,黄杆菌等)。在具有成熟生物膜的系统中加入HFSF可以显着增强脱氮和去除BPA,而不会发生阳性关系。最佳性能(具有1.68mg(LH)( - 1)的脱氮率( - 1),P-DN为0.348gng(-1)焦点,BPA去除率为87.8 +/- 4.5%,小于100mgL(-1)鳕鱼)在鳕鱼/氮比为6.0。最佳HRT为12h以避免亚硝酸盐和铵积累。生物膜EPS随着影响因素的COD / N比从2.0升至6.0增加,这可能与BPA移除有关。

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