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Kinetics of heterotrophic biomass and storage mechanism in wetland cores measured by respirometry

机译:呼吸测定法测定湿地核心中异养生物质的动力学及其存储机理

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Although oxygen uptake rate has been widely used in activated sludge for measuring kinetic and stoichiometric parameters or for wastewater characterization, its application in constructed wetlands (CWs) cores has been recently proposed. The aim of this research is to estimate the kinetic and stoichiometric parameters of the heterotrophic biomass in CW cores. Respirometric tests were carried out with pure carbonaceous substrate and real wastewater. Endogenous respiration was about 2 gO_2 m~(-3) h~(-1) (per unit of bed volume), while the kinetic parameters obtained for COD oxidation were very high (maximum rate per unit of bed volume of 10.7-26.8 gCOD m~(-3) h~(-1)) which indicates high biodegradation potential in fully aerobic environment. Regarding to stoichiometric parameter, the maximum growth yield, YH, was 0.56-0.59 mgCOD/mgCOD, while the storage yield, Y_(STO), was 0.75-0.77 mgCOD/mgCOD. The storage mechanism was observed in CW cores during COD oxidation, which leads to the transformation of the external soluble substrate in internal storage products, probably as response to intermittent loads applied in CW systems, transient concentrations of readily biodegradable substrate and alternance of feast/famine periods.
机译:尽管氧气吸收率已广泛用于活性污泥中以测量动力学和化学计量参数或用于废水表征,但最近已提出将其应用于人工湿地(CWs)岩心中。这项研究的目的是估计连续波堆芯中异养生物质的动力学和化学计量参数。对纯碳质底物和实际废水进行了呼吸测定。内源性呼吸约为2 gO_2 m〜(-3)h〜(-1)(每床体积),而获得的COD氧化动力学参数非常高(每床体积最大速率为10.7-26.8 gCOD) m〜(-3)h〜(-1))表示在完全有氧环境中具有很高的生物降解潜力。关于化学计量参数,最大生长产量YH为0.56-0.59 mgCOD / mgCOD,而储存产量Y_(STO)为0.75-0.77 mgCOD / mgCOD。在化学需氧量氧化过程中,在连续波堆芯中观察到了存储机制,这导致内部存储产品中的外部可溶性底物发生了转变,这可能是由于连续波系统中施加的间歇性负载,易生物降解的底物的瞬时浓度以及盛宴/饥荒的交替期。

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