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Electrochemical treatment of sugar industry wastewater: process optimization by response surface methodology

机译:糖业废水的电化学处理:响应面法处理优化

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Wastewater from sugar industry has multiple combinations of organic and inorganic contaminants. It has an adverse impact on nearby environment and requires specific type of treatment to minimize the effect. To treat the sugar industry wastewater, an attempt has been made with the electrochemical process by using aluminum electrode. Four process parameters were selected, namely initial pH (pH 4-10), current density (44.5-133.5A/m(2)), electrode spacing (10-20mm), and experimental time (20-100min) to optimize the condition with surface response methodology. At optimum condition maximum, 69.2% chemical oxygen demand and 88.6% color reduction were archived at pH 7, current 1A, electrode distance 1.5cm and treatment time 60min. The coefficient of the model predicted (R-2) value of 0.87 and 0.48, and adjusted (R-2) value of 0.64 and 0.45 for chemical oxygen demand and color reduction were obtained. The physicochemical characteristic indicates that settling sludge has more inorganic material as compared to floating sludge; hence, settling sludge has low calorific value than floating sludge.
机译:来自糖业的废水有多种组合的有机和无机污染物。它对附近环境产生不利影响,需要特定类型的治疗以最大限度地减少效果。为了治疗糖业废水,通过使用铝电极采用电化学工艺进行了尝试。选择四个工艺参数,即初始pH(pH 4-10),电流密度(44.5-133.5A / m(2)),电极间距(10-20mm),实验时间(20-100min)优化条件表面响应方法。在最佳状态下,在pH7,电流1a,电极距离1.5cm和治疗时间60min时归档69.2%的化学需氧量和88.6%的颜色还原。获得了0.87和0.48的模型预测(R-2)值的系数,并且调节(R-2)值为0.64和0.45,用于化学需氧量和颜色还原。物理化学特性表明与浮泥相比,沉降污泥具有更多的无机材料;因此,沉降污泥的热值低于浮动污泥。

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