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Treatment of simulated biomass gasification wastewater of varying strength in a three stage rotating biological contactor

机译:三相旋转生物接触器处理不同强度模拟生物质气化废水

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Wastewater generated during wet scrubbing of producer gas formed in biomass gasifiers consist mainly of phenolics, heterocyclics, mono and polynuclear aromatic hydrocarbons (PAHs). The concentration of organics in such wastewater is reported to vary over a wide range depending on gasifier operating conditions and water recycling practices. Such variations may impact the performance of biological treatment processes due to the toxic nature of constituents. Treatment of simulated biomass gasification wastewater of varying strength in a rotating biological contactor (RBC), bioaugmented with a novel bacteria, Exiguobacterium aurantiacum, and operated at constant hydraulic retention time (HRT) of 24 h revealed consistently high removal efficiency in the range of 91-92% for organic loading rate (OLR) of 6.7-16.1 g-COD/m~2/d. Increase in OLR to 39.5 g-COD/m~2/d caused a marked drop in COD removal efficiency (83%). Greater than 74% removal was observed for all the components although the influent concentration of phenolics and heterocyclics were much higher compared to the PAHs. Abiotic loss in absence of the biofilm was consistently low (12-20% COD removal). Treatment was accompanied by significant reduction in acute toxicity. The biofilm consisting of E aurantiacum and mixed microbial consortium thus have a good potential for removal of these toxic constituents.
机译:在生物质气化炉中湿法洗涤生产气的过程中产生的废水主要包括酚类,杂环类,单核和多核芳香烃(PAH)。据报道,根据气化炉的运行条件和水循环利用的实践,这种废水中有机物的浓度变化很大。由于成分的毒性,这种变化可能影响生物处理过程的性能。在旋转生物接触器(RBC)中处理不同强度的模拟生物质气化废水,并用新型细菌增强了金黄色葡萄球菌(Exiguobacterium aurantiacum)进行了生物处理,并在24 h的恒定水力停留时间(HRT)下运行,显示出始终如一的高去除效率,范围为91有机负荷率(OLR)为6.7-16.1 g-COD / m〜2 / d时为-92%。 OLR增加至39.5 g-COD / m〜2 / d导致COD去除效率显着下降(83%)。尽管酚和杂环的进水浓度比PAHs高得多,但所有组分的去除率均超过74%。在没有生物膜的情况下,非生物损失一直很低(COD去除率为12-20%)。治疗伴随着急性毒性的显着降低。因此,由紫a和微生物联合体组成的生物膜具有去除这些有毒成分的良好潜力。

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