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采用声解-过硫酸盐/过氧化氢氧化法处理成熟垃圾渗滤液:工艺参数优化

Mature landfill leachate treatment using sonolytic-persulfate/hydrogen peroxide oxidation: Optimization of process parameters.

作者信息

Tripathy Binay Kumar, Ramesh Gayathri, Debnath Animesh, Kumar Mathava

机构信息

Environmental and Water Resources Engineering Division, Department of Civil Engineering, Indian Institute of Technology Madras, Tamilnadu, India.

Department of Civil Engineering, National Institute of Technology Trichy, Tamilnadu, India.

出版信息

Ultrason Sonochem. 2019 Jun;54:210-219. doi: 10.1016/j.ultsonch.2019.01.036. Epub 2019 Jan 29.

Abstract

The suitability of stand-alone ultrasound (US) system, coagulation pre-treatment followed by US, hydrogen peroxide added US system (US-HO) and persulfate added US system (US-PS) for the treatment of matured landfill leachate was investigated. With US system, around 67% COD removal and an increase in BOD/COD ratio were observed (from 0.033 to 0.142) after 15 min at 30% US amplitude. However, the energy input required for landfill leachate treatment in US system was found to be very high due to the presence of fixed solids. Coagulation pretreatment using alum was carried out to improve the overall COD removal and reduce the cost of treatment. As a result, the COD removal was increased to 78% (42% in pretreatment and 36% in US) in 15 min. On the other hand, US-HO and US-PS hybrid systems have shown significant improvement in COD removals (93% and 86%, respectively) from raw leachate after 15 min. Subsequently, a three factor (i.e. PS dose (mg/L), HO dose (mol/L), and US amplitude (%)) 5-level design of experiment was used to maximize the COD removal efficiency by response surface methodology (RSM). The RSM model generated a quadratic equation to accurately analyze the influence of input variables on COD removal efficiency (R of 0.92). A maximum COD removal of 98.3% was predicted using the model and the corresponding optimal experimental condition were identified as follows: PS dose ∼4700 mg/L, HO dose ∼0.7 mol/L and US amplitude ∼49%. The overall observations reveals that PS and HO coupled with US system has a great prospective to treat mature landfill leachate.

摘要

研究了独立超声(US)系统、超声预处理后进行混凝、添加过氧化氢的超声系统(US-HO)和添加过硫酸盐的超声系统(US-PS)处理成熟垃圾渗滤液的适用性。使用US系统,在30%超声振幅下处理15分钟后,观察到约67%的化学需氧量(COD)去除率以及生化需氧量与化学需氧量之比(BOD/COD)的增加(从0.033增至0.142)。然而,由于存在固定固体,发现US系统处理垃圾渗滤液所需的能量输入非常高。采用明矾进行混凝预处理以提高总体COD去除率并降低处理成本。结果,15分钟内COD去除率提高到78%(预处理中为42%,超声处理中为36%)。另一方面,US-HO和US-PS混合系统在15分钟后对原渗滤液的COD去除率有显著提高(分别为93%和86%)。随后,采用三因素(即过硫酸盐剂量(mg/L)、过氧化氢剂量(mol/L)和超声振幅(%))五水平实验设计,通过响应面法(RSM)使COD去除效率最大化。RSM模型生成了一个二次方程,以准确分析输入变量对COD去除效率的影响(R为0.92)。使用该模型预测的最大COD去除率为98.3%,并确定了相应的最佳实验条件如下:过硫酸盐剂量约4700 mg/L、过氧化氢剂量约0.7 mol/L和超声振幅约49%。总体观察结果表明,过硫酸盐和过氧化氢与超声系统结合在处理成熟垃圾渗滤液方面具有很大的前景。

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