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Strategies to improve biological oxidation of real wastewater using cavitation based pre-treatment approaches

机译:基于空化的预处理方法改善真实废水生物氧化的策略

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摘要

The present work demonstrates the effective application of pretreatment based on cavitation to improve biological oxidation of real municipal and industrial wastewater. The optimum pretreatment conditions based on ultrasonic cavitation for treatment of municipal wastewater were observed as power dissipation of 90 W, a duty cycle of 70% and H2O2 dosage of 0.2 g/L resulting in about 24.9% COD reduction. The use of modified sludge and ultrasonic pretreatment for biological oxidation resulted in significant reduction in treatment time (36 h) than the treatment time (60 h) required for biological oxidation using untreated sludge as inoculum. Also, significantly enhanced biodegradability index (BI) from 0.33 to 0.6 was achieved using pretreatment for biological oxidation process. For the treatment of real industrial wastewater, different pretreatment approaches based on hydrodynamic cavitation (HC) in combination with H2O2, ozone or Fenton were investigated. The pretreatment using best approach of HC + Fenton resulted in 44.2% of COD reduction in total whereas only 28.1% of COD reduction was achieved for the untreated effluent being applied in the biological oxidation. Overall, the present work demonstrated the effectiveness of the pretreatment based on cavitation for the improved treatment of municipal and industrial wastewaters.
机译:本作者展示了基于空化以改善真实城市和工业废水的生物氧化的预处理的有效应用。基于超声波空化处理城市废水的最佳预处理条件被观察为90W,占空比70%,H 2 O 2剂量为0.2g / l,导致约24.9%COD减少。使用改性污泥和超声预处理的生物氧化导致治疗时间(36小时)显着降低,而不是使用未处理的污泥作为接种物的生物氧化所需的处理时间(60小时)。此外,使用对生物氧化方法的预处理实现了0.33至0.6的显着增强的生物降解性指数(Bi)。为了治疗真正的工业废水,研究了基于流体动力空化(HC)的不同预处理方法与H 2 O 2,臭氧或FENTON组合。使用HC + Fenton的最佳方法的预处理导致44.2%的COD减少总共,而仅在生物氧化中施加未处理的流出物,仅达到28.1%的COD降低。总体而言,目前的作品证明了预处理的有效性,基于空化的城市和工业废水的改进治疗。

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