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高锰酸钾调理对制浆活性污泥脱水及流变行为的影响:机理与可行性

Effects of potassium permanganate conditioning on dewatering and rheological behavior of pulping activated sludge: mechanism and feasibility.

作者信息

Zhang Xin, Cai Hui, Shen Jun, Zhang Hui

机构信息

Jiangsu Provincial Key Lab of Pulp and Paper Science and Technology, Nanjing Forestry University Nanjing 210037 China

State Key Laboratory of Pulp and Paper Engineering, South China University of Technology Guangzhou 510640 China.

出版信息

RSC Adv. 2018 Dec 10;8(72):41172-41180. doi: 10.1039/c8ra07822j. eCollection 2018 Dec 7.

Abstract

The difficulties in sludge dewatering are associated with the high organic content, colloidal materials in sludge solids and the high hydrophilicity of extracellular polymeric substances (EPS). Based on the principle of advanced oxidation processes, waste pulping activated sludge was subjected to potassium permanganate (KMnO) oxidation pretreatment and then the influence and mechanism on sludge dewatering were comprehensively investigated in the present study. At lower KMnO dosage, changes of the physicochemical and rheological characteristics were that: (1) as the sludge disintegration degree increased, the total extractable EPS increased and then the bound water were released; (2) the rheological behavior showed that the yield stress and viscosity decreased while flowability increased and the positive thixotropic behavior weakened; (3) the particle size and microscopic structure were changed insignificantly. These changes resulted in damaging the gel-like environment and making the surface of sludge floc stripped but did not completely induce the floc breakage as a result of KMnO with lower redox potential. Thus, sludge dewaterability was improved with the optimum dosage of 16 g kg dry solid. On the perspective of environmental safety, KMnO conditioning on sludge dewatering is feasible.

摘要

污泥脱水困难与污泥中高有机含量、污泥固体中的胶体物质以及胞外聚合物(EPS)的高亲水性有关。基于高级氧化工艺原理,本研究对废纸浆活性污泥进行高锰酸钾(KMnO₄)氧化预处理,并全面研究其对污泥脱水的影响及作用机制。在较低的KMnO₄投加量下,物理化学和流变特性的变化如下:(1)随着污泥解体程度增加,总可提取EPS增加,进而释放出结合水;(2)流变行为表明,屈服应力和粘度降低,流动性增加,正触变性减弱;(3)粒径和微观结构变化不显著。这些变化破坏了凝胶状环境,使污泥絮体表面剥离,但由于KMnO₄氧化还原电位较低,并未完全导致絮体破碎。因此,当投加量为16 g/kg干固体时,污泥脱水性能得到改善。从环境安全性角度来看,KMnO₄调理污泥脱水是可行的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8994/9091972/ce913bed7bcf/c8ra07822j-f1.jpg

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