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Effects of anaerobic HRT and VFA loading on the kinetics and stoichiometry of enhanced biological phosphorus removal

机译:厌氧HRT和VFA负荷对增强生物磷去除的动力学和化学计量的影响

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Enhanced biological phosphorus removal (EBPR) can recover significant quantities of wastewater phosphorus. However, this resource recovery process realizes limited use largely due to process stability concerns. The research evaluated the effects of anaerobic HRT (tau(AN)) and VFA concentration-critical operational parameters that can be externally controlled-on EBPR performance. Evaluated alone, tau(AN) (1-4 h) exhibited no statistical effect on effluent phosphorus. However, PHA increased with VFA loading and biomass accumulated more phosphorus. Regarding resiliency, under increasing VFA loads PAOs hydrolyzed more phosphorus to uptake/catabolize VFAs; moreover, PHA synthesis normalized to VFA loading increased with tau(AN), suggesting fermentation. Kinetically, PAOs exhibited a Monod-like relationships for qPHA(AN) and qVFA(AN) as a function of anaerobic P release; additionally, qP(AE) exhibited a Monod-like relationship with end-anaerobic PHA concentration. A culminating analysis affirmed the relationship between enhanced aerobic P uptake, and net P removal, with a parameter (phosphorus removal propensity factor) that combines influent VFA concentration with tau(AN).Practitioner pointsEvaluated alone tau(AN) exhibits no statistical effect on effluent phosphorus in an EBPR configuration.Increased PHA synthesis, associated with increased VFAs and/or extended tau(AN,) enhances aerobic phosphorus removal.PHA synthesis normalized to VFA loading increased with tau(AN), suggesting fermentation in the EBPR anaerobic zone.Aerobic phosphorus uptake increases linearly with anaerobic phosphorus release, with the slope exceeding unity.Increased VFAs can be substituted for shorter anaerobic HRTs, and vice versa, to enhance EBPR performance.
机译:增强的生物磷去除(EBPR)可以恢复大量废水磷。然而,该资源恢复过程在很大程度上实现了有限的用途,因为过程稳定性问题。该研究评估了可以在EBPR性能外部控制的厌氧HRT(TAU(AN))和VFA集中关键操作参数的影响。单独评估,TAU(AN)(1-4小时)对出水磷没有统计学作用。然而,PHA随着VFA装载和生物量增加了更多的磷。关于弹性,在增加VFA载荷PAOS下水解更多的磷以吸收/分解VFA;此外,PHA合成标准化为VFA负载的载荷增加,提高了发酵。动力学,PAOS作为QPHA(AN)和QVFA(AN)的单一类似的关系,作为厌氧P释放的函数;另外,QP(AE)表现出与最终厌氧PHA浓度的单像性关系。最终的分析肯定了增强的有氧p摄取和净p去除之间的关系,该参数(磷去除倾角因子)与TAU(AN)相结合的影响.PRACTINCER POINTSVALEATED TAU(AN)对流出物没有统计学作用EBPR构型中的磷。增加VFA和/或延长Tau(AN,)增加的PHA合成,增强了有氧磷的去除。作用于TAU(AN)的VFA载荷增加,建议在EBPR厌氧区发酵.Aerobic磷吸收与厌氧磷释放线性增加,斜率超过团结。增加的VFA可以代替短厌氧HRT,反之亦然,以增强EBPR性能。

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