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The treatment of spent caustic in the wastewater of olefin units by ozonation followed by electrocoagulation process

机译:臭氧氧化-电凝法处理烯烃单元废水中的废碱

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The ozonation and electrocoagulation (EC) process were considered as possible methods for the treatment of spent caustic in olefin units of Arak petrochemical company in Iran. At first, the COD (chemical oxygen demand) and sulfide was removed by ozonation process and the effect of temperatures, reaction time and pH were investigated on COD removal efficiency. The experiments were designed by Taguchi method. The COD was decreased from 9600 to 3030 mg/l in ozonation at optimum conditions and the sulfide was oxidized to sulfate. At a later stage, the influence of carbon dioxide injection on reduction of the pH in the real alkaline wastewater was investigated. In the final step, the residual amounts of COD and sulfide compounds are removed by EC. The effect of the electrical current density, pH and operating time were explored on the removal of COD in EC process and the optimum conditions were obtained at 40 mA/cm(2), 9 and 60 min, respectively. The COD was reduced from 3030 to 250 mg/l. At optimum conditions for COD removal, the sulfide content was reduced from 2400 to 650 mg/l in ozonation and 650 to 50 mg/l in EC process, respectively. The results showed that the ozonation followed by EC process is a good and economic technique and about 97.4% of initial COD and 97.9% of sulfide content was removed in the combined process.
机译:臭氧和电凝(EC)工艺被认为是处理伊朗Arak石化公司烯烃装置中废碱的可能方法。首先,通过臭氧化工艺去除了COD(化学需氧量)和硫化物,并研究了温度,反应时间和pH对COD去除效率的影响。实验采用田口法设计。在最佳条件下,在臭氧处理中,COD从9600降至3030 mg / l,硫化物被氧化为硫酸盐。在稍后阶段,研究了注入二氧化碳对实际碱性废水中pH降低的影响。在最后一步中,通过EC去除了残留的COD和硫化物。探讨了电流密度,pH和操作时间对EC过程中COD去除的影响,并分别在40 mA / cm(2),9和60分钟时获得了最佳条件。 COD从3030降至250 mg / l。在最佳的COD去除条件下,在臭氧处理中硫化物含量从2400降至650 mg / l,在EC工艺中硫化物含量从650降至50 mg / l。结果表明,采用EC工艺进行臭氧化处理是一种良好且经济的技术,在合并工艺中去除了约97.4%的初始COD和97.9%的硫化物。

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