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Quantification of the Inert Chemical Oxygen Demand of Raw Wastewater and Evaluation of Soluble Microbial Product Production in Demo- Scale Upflow Anaerobic Sludge Blanket Reactors under Different Operational Conditions

机译:在不同操作条件下的模拟规模上流厌氧污泥毯反应器中原废水的惰性化学需氧量的定量和可溶性微生物产物生产的评估

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This paper investigates the production of soluble microbial products (SMPs) in demonstration-scale upflow anaerobic sludge blanket reactors operated under different conditions and fed with raw wastewater. The results showed that 9.2 ± 1.3% of the influent soluble chemical oxygen demand (COD) could be considered inert to anaerobic treatment and that the amount of COD produced by biomass varied from 30 to 70 mg·L~(-1), accounting for 45 to 63% of the soluble effluent COD. The accumulation of SMP appeared to be dependent on the hydraulic retention time (HRT) applied to the reactors, with a larger accumulation of SMP observed at the lowest HRT (5 hours); this may have been due to stress conditions caused by high upflow velocity (1.1 m·h~(-1)). In terms of residual COD characterization, ultrafiltration results showed that higher amounts of high molecular weight compounds were found when HRT was the lowest (5 hours), and that the molecular weight distribution depended on the operational condition of the reactors. Biodegradability tests showed that the low and high molecular weight SMPs were only partially degraded anaerobically (10 to 60%) and that the high molecular weight SMPs were difficult to degrade aerobically.
机译:本文研究了示范规模的上流厌氧污泥毯式反应器在不同条件下运行并进料了原废水的过程中可溶性微生物产物(SMP)的生产。结果表明,进水可溶性化学需氧量(COD)的9.2±1.3%被认为对厌氧处理是惰性的,生物量产生的COD量在30至70 mg·L〜(-1)之间变化,可溶性废水COD的45%至63%。 SMP的积累似乎取决于施加到反应堆的水力停留时间(HRT),在最低的HRT(5小时)观察到较大的SMP积累。这可能是由于高流速(1.1 m·h〜(-1))引起的应力条件所致。就残留的COD表征而言,超滤结果表明,当HRT最低(5小时)时,发现了更多的高分子量化合物,并且分子量分布取决于反应器的运行条件。生物降解性测试表明,低分子量和高分子量SMPs只能部分厌氧降解(10%到60%),而高分子量SMPs很难被好氧降解。

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