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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Role of carbon substrates in facilitating energy reduction and resource recovery in a traditional activated sludge process: Investigation from a biokinetics modeling perspective
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Role of carbon substrates in facilitating energy reduction and resource recovery in a traditional activated sludge process: Investigation from a biokinetics modeling perspective

机译:碳基材在传统活性污泥过程中促进能量降低和资源回收中的作用:从生物机制建模视角调查

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摘要

Three activated sludge processes (ASPs) were modeled and driven by dissolved complex organics (F-ASP), propionic acid (P-ASP), and acetic acid (A-ASP), and various parameters were subsequently estimated. The energy depletion for carbon removal was 0.146, 0.120, and 0.119kWh/m~3 of treated wastewater for F-ASP, P-ASP, and A-ASP, respectively, suggesting that acetic acid can forward energy conservation. The ratio of substrate storage to oxidation in F-ASP, P-ASP, and A-ASP was 0, 0.25, and 0.52, respectively, further demonstrating that substrate eliminations from P-ASP and A-ASP were both dominated by substrate storage for polymer production, not by total oxidation; thus, they exhibited lower energy-consuming levels than F-ASP. Quantification of bioenergy production and nutrient acquisition from the excess sludge of the three ASPs were conducted subsequently, and A-ASP was found to facilitate phosphorus capture.
机译:通过溶解的复合物有机物(F-ASP),丙酸(P-ASP)和乙酸(A-ASP)进行建模和驱动三种活性污泥工艺(ASP),随后估计各种参数。 用于碳去除的能量耗尽为0.146,0.120和0.119kWh / m〜33 / m〜3,用于F-asp,p-asp和a-asp的处理废水,表明乙酸可以前进节能。 在F-ASP,P-ASP和A-ASP中氧化与氧化的比例分别为0,0.25和0.52,进一步证明来自P-ASP和A-ASP的基板消除均由基质存储支配 聚合物生产,而不是完全氧化; 因此,它们表现出比F-ASP的消耗水平较低。 随后进行了从三台ASP的过量污泥的生物能量生产和营养获取的量化,发现A-ASP促进磷捕获。

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