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Mechanism and Parameter Optimization of Fenton’s Reagent Integrated with Surfactant Pretreatment to Improve Sludge Dewaterability

机译:Fenton试剂与表面活性剂预处理相结合改善污泥脱水性能的机理和参数优化

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摘要

Sludge dewatering can effectively reduce the volume and mass of sludge for subsequent treatment and disposal. The work validated the potential of Fenton’s reagent combined with dodecyl dimethyl benzyl ammonium chloride (DDBAC) in improving sludge dewaterability and proposed the mechanism of joint conditioning. The composite conditioner dosage was optimized using response surface methodology. Results indicated the good conditioning capability of the composite conditioners. The optimum dosages for H2O2, Fe2+, and DDBAC were 44.6, 39.6, and 71.0 mg/g, respectively, at which a sludge cake water content of 59.67% could be achieved. Moreover, a second-order polynomial equation was developed to describe the behavior of joint conditioning. Analysis of the reaction mechanism showed that Fenton oxidation effectively decomposed extracellular polymeric substance (EPS), including loosely bound EPS (LB-EPS) and tightly bound EPS (TB-EPS), into dissolved organics, such as proteins and polysaccharides. The process facilitated the conversion of the bound water into free water. Furthermore, DDBAC further released the bound water through solubilization of TB-EPS and LB-EPS after the Fenton reaction. The bound water content of the sludge conditioned with Fenton’s reagent decreased from 3.15 to 1.36 g/g and further decreased to 1.08 g/g with the addition of DDBAC. High-performance liquid chromatography analysis verified that the composite conditioning could oxidize and hydrolyze EPS into low-molecular-mass organics (e.g., formic and acetic acid), thereby facilitating the release of bound water.
机译:污泥脱水可以有效减少污泥的体积和质量,以便后续处理和处置。这项工作验证了Fenton试剂与十二烷基二甲基苄基氯化铵(DDBAC)结合在改善污泥脱水性方面的潜力,并提出了联合调节的机理。使用响应表面方法优化了复合调理剂的用量。结果表明复合调理剂具有良好的调理能力。 H2O2,Fe 2 + 和DDBAC的最佳剂量分别为44.6、39.6和71.0 mg / g,在此条件下,污泥饼含水量可达到59.67%。此外,开发了一个二阶多项式方程来描述关节条件的行为。对反应机理的分析表明,芬顿氧化能有效地分解胞外聚合物(EPS),包括松散结合的EPS(LB-EPS)和紧密结合的EPS(TB-EPS),分解成溶解的有机物,例如蛋白质和多糖。该方法促进了结合水向游离水的转化。此外,在芬顿反应后,DDBAC通过溶解TB-EPS和LB-EPS进一步释放了结合水。用Fenton试剂处理的污泥的结合水含量从3.15降低到1.36 g / g,并在添加DDBAC的情况下进一步降低到1.08 g / g。高效液相色谱分析证明,该复合调理剂可以将EPS氧化并水解为低分子量有机物(例如甲酸和乙酸),从而促进结合水的释放。

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