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Decolorization Of Dark Brown Colored Coffee Effluent By Solar Photo-fen Ton Reaction: Effect Of Solar Light Dose On Decolorization Kinetics

机译:太阳光芬吨反应对深棕色咖啡废水的脱色:太阳光剂量对脱色动力学的影响

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The decolorization of dark brown colored coffee effluent by solar photo-Fenton process has been studied. Effects of accumulated solar light energy and dosage of Fenton reagents (iron and hydrogen peroxide) on the color removal have been examined. With increasing Fe dosage the rate of the decolorization increased but the enhancement was not pronounced beyond 10 mg L~(-1). Although addition of H_2O_2 increased the decolorization rate up to around 1000 mg L~(-1) of H_2O_2, further addition of H_2O_2 could not enhance the color removal. At excess dosages of Fenton reagents, the color removal was not improved due to their scavenging of hydroxyl radicals. It was found that the pseudo-first order decolorization kinetic constant based on the accumulated solar energy is a sole parameter unifying solar photo-Fenton decolorization processes under the different weather conditions. The kinetic constant can be readily used to calculate the amount of solar energy required to achieve a certain degree of color removal. The mineralization was rather slower as compared with the decolorization. The decolorization capability with solar irradiation was found to be comparable to UV light irradiation. The present results suggest that abundant solar energy driving decolorization of coffee effluent by photo-Fenton reaction is highly efficient.
机译:研究了太阳光-芬顿法对咖啡色废水进行脱色。已经研究了累积的太阳能能量和Fenton试剂(铁和过氧化氢)的用量对脱色的影响。随着铁剂量的增加,脱色率增加,但超过10 mg L〜(-1)则没有明显的增强作用。尽管加入H_2O_2可将脱色率提高到大约1000 mg L〜(-1)的H_2O_2,但进一步加入H_2O_2并不能增强脱色效果。在过量的Fenton试剂中,由于清除了羟基自由基,因此颜色去除效果没有得到改善。发现基于累积太阳能的伪一阶脱色动力学常数是统一不同天气条件下太阳光芬顿脱色过程的唯一参数。动力学常数可以很容易地用于计算实现一定程度的颜色去除所需的太阳能量。与脱色相比,矿化相当慢。发现在太阳辐射下的脱色能力与紫外光辐射相当。目前的结果表明,通过光芬顿反应驱动咖啡废液脱色的大量太阳能是高效的。

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