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Evaluation of Granular Activated Carbon and an Activated Sludge for the Treatment of a Chemical Industry Refractory Wastewater

机译:颗粒活性炭和活性污泥处理化工难处理废水的评价

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This research compared contaminant removal from a thermophilic aerobic bioreactor effluent in an activated sludge system and granular activated carbon (GAC) system. Adsorption isotherms indicated that the adsorbability of the thermophilic effluent at low dissolved organic carbon (DOC) concentrations is much greater than the activated sludge effluent, while the effective diffusivity of DOC in the activated sludge system was approximately 30% greater than the thermophilic on GAC. The effluent DOC concentrations from the pilot activated sludge system were not only in line with the existing full scale GAC system, but also were less affected by drastic fluctuations in the thermophilic DOC effluent. Irrespective of the various operational conditions, the thermophilic effluent contained around 200 mg/l of refractory and/or slowly biodegradable DOC, as well as 100 mg/l of non-adsorbable DOC. A cost comparison showed that there is significant savings if the activated sludge system were to be implemented with an estimated simple payback period of 2.6 years as compared to the existing GAC system.
机译:这项研究比较了活性污泥系统和颗粒活性炭(GAC)系统中嗜热好氧生物反应器排出的污染物。吸附等温线表明,在低溶解有机碳(DOC)浓度下,嗜热废水的吸附能力比活性污泥废水大得多,而活性污泥系统中DOC的有效扩散率比GAC上嗜热废水大30%。中试活性污泥系统的废水DOC浓度不仅与现有的全尺寸GAC系统一致,而且受嗜热DOC废水的剧烈波动影响较小。无论各种操作条件如何,嗜热流出物都含有约200 mg / l的难降解和/或生物可缓慢降解的DOC,以及100 mg / l的不可吸收的DOC。成本比较表明,与现有的GAC系统相比,如果要以预计的2.6年的简单投资回收期实施活性污泥系统,将会节省大量资金。

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