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电化学预处理对过氧化氢和次氯酸钙对废活性污泥化学需氧量溶出和解体的影响。

Effects of hydrogen peroxide and calcium hypochlorite on chemical oxygen demand solubilization and disintegration of waste activated sludge by electro-chemical pretreatment.

机构信息

Civil Engineering Faculty, Environmental Engineering Department, Yildiz Technical University, Istanbul, Turkey.

出版信息

Environ Technol. 2024 Jan;45(3):508-522. doi: 10.1080/09593330.2022.2114856. Epub 2022 Sep 1.

Abstract

The combination of electrochemical (EC) pretreatment with hydrogen peroxide (HP) and calcium hypochlorite (CHC) was investigated in this study for their effect on soluble chemical oxygen demand (CODs) and disintegration degree (DD) of waste activated sludge (WAS). For this aim, response surface methodology (RSM) and Box-Behnken design (BBD) were applied the determination of the optimum operational conditions. Operational conditions were varied between 0.2 and 2.0 mmol/g SS for HP and CHC dosages, 1-5 A for the applied current, 2-10 for the initial pH, and 15-45 min for the treatment time. Obtained results for each treatment were accurate and significant with correlation coefficients (R2) of 0.8639% and 0.9189% for EC combined with HP pretreatment and EC combined with CHC pretreatment, respectively. According to the obtained results, CODs increased in comparison to the raw sludge (168 mg/L) noting that CODs for EC - CHC (1155 ± 21 mg/L) was higher than EC - HP (811.5 ± 15 mg/L) at optimized conditions (for EC-HP pretreatment: HP dosage: 0.34 mmol/g TSS, Applied current:5 A, Initial pH:10, Time: 45 min, For EC-CHC pretreatment: CHC dosage: 0.23 mmol/g TSS, Applied current:4.83 A, Initial pH:10, Time: 40 min). Besides, the DD in terms of COD, total nitrogen (TN) and total organic carbon (TOC) (DDCOD, DDTN and DDTOC) registered increased values after the application of the EC treatment with both oxidants. The highest DDCOD, DDTN and DDTOC values were obtained with EC-CHC pretreatment for 11.34%, 20.34% and 9.18% respectively compared to EC-HP pretreatment (DDCOD: 7.37%, DDTN: 15.18% and DDTOC: 6.94%).

摘要

电化学(EC)预处理与过氧 化氢(HP)和次氯酸钠(CHC)联合使用,研究其对溶解性化学需氧量(CODs)和废活性污泥(WAS)解体程度(DD)的影响。为此,应用响应面法(RSM)和 Box-Behnken 设计(BBD)确定最佳操作条件。操作条件在 HP 和 CHC 剂量为 0.2-2.0mmol/gSS、电流为 1-5A、初始 pH 值为 2-10 和处理时间为 15-45min 之间变化。每种处理的结果都很准确且具有显著意义,EC 与 HP 预处理结合的相关系数(R2)为 0.8639%,EC 与 CHC 预处理结合的相关系数(R2)为 0.9189%。根据实验结果,与原污泥(168mg/L)相比,CODs 增加,而 EC-CHC(1155±21mg/L)的 CODs 高于 EC-HP(811.5±15mg/L),在优化条件下(EC-HP 预处理:HP 剂量:0.34mmol/gTSS,施加电流:5A,初始 pH 值:10,时间:45min,EC-CHC 预处理:CHC 剂量:0.23mmol/gTSS,施加电流:4.83A,初始 pH 值:10,时间:40min)。此外,在施加 EC 处理后,以 COD、总氮(TN)和总有机碳(TOC)表示的 DD(DDCOD、DDTN 和 DDTOC)值均有所增加。与 EC-HP 预处理相比,EC-CHC 预处理的 DDCOD、DDTN 和 DDTOC 值最高,分别为 11.34%、20.34%和 9.18%。

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