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Activation of Persulfate Using an Industrial Iron-Rich Sludge as an Efficient Nanocatalyst for Landfill Leachate Treatment

机译:使用工业含铁量高的污泥作为掩埋渗滤液处理的高效纳米催化剂活化过硫酸盐

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In this research, the performance of nanomaterials obtained from the converter sludge (CS) of Esfahan Steel Company, Iran was investigated for the activation of persulfate (PS). The experiments were conducted on real and synthetic leachates. CS showed high catalytic activity for removal of chemical oxygen demand COD and NH 3 because of its high iron oxide content. The effects of pH, CS dosage, and PS/COD ratio, temperature, and reaction time on the removal of COD and NH 3 were evaluated to optimize operational conditions (pH 2, CS dosage: 1.2 g L ?1 , PS/COD: 4, and reaction time: 60 min). Maximum COD and NH 3 removal efficiencies were 73.56 and 63.87%, respectively. Finally, the optimized process was applied for treatment of a real leachate sample. Although the treated leachate was not suitable to discharge into the environment, an increase in the 5-day biochemical oxygen demand (BOD 5 ) and biodegradability (BOD 5 /COD) of leachate after treatment indicated that the effluent can be biologically treated. As a consequence, it can be combined with sewage or can be returned to the landfill.
机译:在这项研究中,研究了从伊朗伊斯法罕钢铁公司的转炉污泥(CS)获得的纳米材料对过硫酸盐(PS)活化的性能。实验是对真实的和合成的渗滤液进行的。 CS由于具有较高的氧化铁含量,因此具有去除化学需氧量COD和NH 3的高催化活性。评估了pH,CS剂量,PS / COD比,温度和反应时间对COD和NH 3去除的影响,以优化操作条件(pH 2,CS剂量:1.2 g L?1,PS / COD: 4,反应时间:60分钟)。最大COD和NH 3去除效率分别为73.56和63.87%。最后,将优化的过程应用于处理实际渗滤液样品。尽管处理后的渗滤液不适合排放到环境中,但处理后渗滤液的5天生化需氧量(BOD 5)和生物降解能力(BOD 5 / COD)升高表明污水可以进行生物处理。结果,它可以与污水混合或可以返回垃圾填埋场。

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