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Methods for quantification of biosorption in high-rate activated sludge systems

机译:高速激活污泥系统中生物吸附量化的方法

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The fundamental mechanism behind biosorption to recover carbon from wastewater through high rate activated sludge (HRAS) system is insufficiently studied. The most accepted method of quantifying biosorption capacity of activated sludge depends on higher settling velocity solids. As HRAS had different settling characteristics and in addition, raw wastewater fed to the HRAS system contained approximately 55% settleable organics, the conventional biosorption capacity test was not capable of accurately defining biosorption. Thus, we studied ex-situ aerobic yield as an alternative approach for determination of biosorption in batch systems. However this approach similarly to biosorption capacity was not sensitive enough to quantify differences between HRAS types, potentially due to enhanced storage mechanisms under the feast-famine approach. A viable method to determine biosorption in the batch system was based on measurement of ex-situ oxygen uptake rate (OUR) of HRAS over 40 h and the biosorption yield was considered as the area underneath the OUR curve normalized for solids concentration. In addition, in-situ based biosorption quantification was proposed in this study based on detailed measurement of carbon mass balances including contribution of extracellular polymeric substances. A clear relationship between biosorption yield and in-situ biosorption with carbon mass-balance, carbon redirection and solids retention time of HRAS systems was observed suggesting two viable methods for quantification of biosorption. (C) 2017 Elsevier B.V. All rights reserved.
机译:生物吸附背后的基本机制通过高速速率活性污泥(HRAS)系统从废水中恢复碳的基础机制。定量活性污泥的生物吸收能力最受欢迎的方法取决于更高的沉降速度固体。由于HRA具有不同的沉降特性,另外,饲到HRAS系统的原料废水含有大约55%的可沉降有机物,常规的生物吸收能力测试不能精确地定义生物吸附。因此,我们研究了ex-situ好氧产量作为批量系统中生物吸附的替代方法。然而,这种方法与生物吸收容量同样敏感,足以量化HRAS类型之间的差异,可能是由于盛宴的储存机制增强了储存机制。在批量系中确定生物吸附的可行方法是基于40小时的原位氧摄取率(我们)的测量,并且将生物吸收产率视为我们曲线下方的区域,用于固体浓度。此外,在本研究中提出了基于原位的生物吸收量,基于碳质量余量的详细测量,包括细胞外聚合物物质的贡献。观察到生物吸附屈服和原位生物吸附与HRAS系统的碳质量平衡,碳重定向和固体保留时间的明显关系,表明两种可行的生物吸附方法。 (c)2017 Elsevier B.v.保留所有权利。

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