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Effects of different sludge disintegration methods on sludge moisture distribution and dewatering performance

机译:不同污泥分解方法对污泥水分分布和脱水性能的影响

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A key step in sludge treatment is sludge dewatering. However, activated sludge is generally very difficult to be dewatered. Sludge dewatering performance is largely affected by the sludge moisture distribution. Sludge disintegration can destroy the sludge structure and cell wall, so as change the sludge floc structure and moisture distribution, thus affecting the dewatering performance of sludge. In this article, the disintegration methods were ultrasound treatment, K2FeO4 oxidation and KMnO4 oxidation. The degree of disintegration (DDCOD), sludge moisture distribution and the final water content of sludge cake after centrifuging were measured. Results showed that three disintegration methods were all effective, and K2FeO4 oxidation was more efficient than KMnO4 oxidation. The content of free water increased obviously with K2FeO4 and KMnO4 oxidations, while it decreased with ultrasound treatment. The changes of free water and interstitial water were in the opposite trend. The content of bounding water decreased with K2FeO4 oxidation, and increased slightly with KMnO4 oxidation, while it increased obviously with ultrasound treatment. The water content of sludge cake after centrifuging decreased with K2FeO4 oxidation, and did not changed with KMnO4 oxidation, but increased obviously with ultrasound treatment. In summary, ultrasound treatment deteriorated the sludge dewaterability, while K2FeO4 and KMnO4 oxidation improved the sludge dewaterability. (C) 2014 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:污泥处理的关键步骤是污泥脱水。但是,活性污泥通常很难脱水。污泥的脱水性能在很大程度上受污泥水分分布的影响。污泥的分解会破坏污泥的结构和细胞壁,从而改变污泥的絮状结构和水分分布,从而影响污泥的脱水性能。在本文中,崩解方法为超声处理,K2FeO4氧化和KMnO4氧化。测量离心后的分解度(DDCOD),污泥水分分布和污泥饼的最终含水量。结果表明,三种崩解方法均有效,K2FeO4氧化比KMnO4氧化更有效。随着K2FeO4和KMnO4的氧化,游离水含量明显增加,而超声处理则降低。游离水和间隙水的变化趋势相反。结合水的含量随K2FeO4氧化而降低,随KMnO4氧化而略有增加,而超声处理则明显增加。离心后污泥饼中的水含量随K2FeO4氧化而降低,而随KMnO4氧化而不变,但经超声处理后明显增加。总之,超声处理使污泥的脱水性恶化,而K2FeO4和KMnO4的氧化改善了污泥的脱水性。 (C)2014中国科学院生态环境研究中心。由Elsevier B.V.发布

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