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Adsorption and bioadsorption of granular activated carbon (GAC) for dissolved organic carbon (DOC) removal in wastewater

机译:颗粒活性炭(GAC)的吸附和生物吸附以去除废水中的溶解有机碳(DOC)

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摘要

In this study, the performances of GAC adsorption and GAC bioadsorption in terms of dissolved organic carbon (DOC) removal were investigated with synthetic biologically treated sewage effluent (BTSE), synthetic primary treated sewage effluent (PTSE), real BTSE and real PTSE. The main aims of this study are to verify and compare the efficiency of DOC removal by GAC (adsorption) and acclimatized GAC (bioadsorption). The results indicated that the performance of bioadsorption was significantly better than that of adsorption in all cases, showing the practical use of biological granular activated carbon (BGAC) in filtration process. The most significance was observed at a real PTSE with a GAC dose of 5 g/L, having 54% and 96% of DOC removal by adsorption and bioadsorption, respectively. In addition, it was found that GAC adsorption equilibrium Was Successfully predicted by a hybrid Langmuir-Freundlich model whilst integrated linear driving force approximation (LDFA) + hybrid isotherm model could describe well the adsorption kinetics. Both adsorption isotherm and kinetic coefficients determined by these models will be useful to model the adsorption/bioadsorption process in DOC removal of BGAC filtration system. (C) 2008 Elsevier Ltd. All rights reserved.
机译:在这项研究中,利用合成的生物处理污水(BTSE),合成的初级处理污水(PTSE),真实的BTSE和真实的PTSE,研究了GAC吸附和GAC生物吸附在溶解有机碳(DOC)去除方面的性能。这项研究的主要目的是验证和比较通过GAC(吸附)和适应的GAC(生物吸附)去除DOC的效率。结果表明,在所有情况下,生物吸附性能均明显好于吸附性能,表明生物颗粒活性炭(BGAC)在过滤过程中的实际应用。在具有5 g / L的GAC剂量的实际PTSE上观察到了最显着的意义,通过吸附和生物吸附分别去除了54%和96%的DOC。此外,发现混合朗格缪尔-弗伦德里希模型成功预测了GAC吸附平衡,而集成线性驱动力逼近(LDFA)+混合等温线模型可以很好地描述吸附动力学。由这些模型确定的吸附等温线和动力学系数都将用于模拟BGAC过滤系统的DOC去除过程中的吸附/生物吸附过程。 (C)2008 Elsevier Ltd.保留所有权利。

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