活性炭诱导压舱絮凝在提高活性污泥沉降性中的应用

Yongbum Kim, Hye-Soon Yang, Young-Hwa Choi
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引用次数: 0

摘要

实验分析了活性炭源型压载絮凝剂(BF)对活性污泥沉降性和水力旋流器回收BF的影响。采用两种BF (M-I:直径125 ~ 250 μm, M-II:直径250 ~ 425 μm)和三种不同SS浓度(2,300 ~ 7,100 mg/L)的活性污泥进行研究。当高炉投加量从0.14 ~ 1.3 g-BF/g-SS变化时,最低SS浓度污泥(2,300 mg/L)的SV30(沉淀30min后污泥体积)可提高24-31%。而对于SS浓度最高的污泥(7100 mg/L), SV30的改善要高得多,达到44-48%。在3种模型(Vesilind、Takacs和Cho模型)中,投加高炉污泥的沉降特性以Vesilind模型最好。HC可有效分离高炉,分离效率达70 ~ 90%,两次使用可达到95%以上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of activated carbon induced ballasted flocculation for improving activated sludge settleability
The effects of activated carbon originated Ballasted Flocculant (BF) on the settleability of activated sludge and the recovery of BF by Hydro-cyclone (HC) were analyzed experimentally. Two kinds of BF (M-I: 125-250 μm, M-II: 250-425 μm in dia.) and three kinds of activated sludges with different SS concentration (2,300-7,100 mg/L) were applied for this study. With the dosage variation of BF from 0.14 to 1.3 g-BF/g-SS, we could obtain 24-31% improvement in SV30 (Sludge Volume after 30min sedimentation) for the lowest SS concentration sludge (2,300 mg/L). Whereas the SV30 improvement was much higher as 44-48% for the highest SS concentration sludge (7,100 mg/L). The settling characteristics of the sludge with BF followed Vesilind model the best among three models (Vesilind, Takacs and Cho model). HC could effectively separate BF with the separation efficiency of 70-90% and over 95% separation efficiency could be obtained when the HC was applied twice.
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