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首页> 外文期刊>Journal of Environmental Engineering >Treatment of Organic Wastewater Containing High Concentration of Sulfate by Crystallization-Fenton-SBR
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Treatment of Organic Wastewater Containing High Concentration of Sulfate by Crystallization-Fenton-SBR

机译:用结晶 - FENTON-SBR处理含有高浓度硫酸盐的有机废水

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In this study, a process consisting of cooling crystallization, Fenton reactions, and a sequencing batch reactor was investigated for the treatment of organic wastewater with high chemical oxygen demand (COD) and sulfate from a chemical company. Cooling crystallization was first employed to remove sulfate from the wastewater. At 4.0 degrees C, sulfate concentration was reduced from 212 to 96.0g/L, and total wastewater volume decreased by 49.1% through two-stage cooling crystallization. COD concentration was increased from 18.0 to 18.5g/L due to the precipitation of Na2SO4 crystals mainly containing crystal water. The effluent was then treated by Fenton reactions. At pH 2.0, 8.0mmol/L of ferric/ferrous, 40mL/L of 30% H2O2, and a duration of reaction of 60min, COD removal efficiency maximized at 77.9%, and COD concentration in the effluent leaving the Fenton reactions was 4,100mg/L. At last, the mixture of the effluent from the Fenton reactions and sewage at a volume ratio of 1:4 was treated by a sequencing batch reactor (SBR) in which the microorganisms were acclimated to be sulfate tolerant. The efficiency of COD removal by the SBR steadily exceeded 85%, and COD concentration leaving the SBR was below 150mg/L. These data showed that the three-step process was cost-effective for the treatment of high-salt organic wastewater.
机译:在该研究中,研究了由冷却结晶,芬顿反应和测序批量反应器组成的方法,用于处理具有高化学需氧量(COD)和化学公司的硫酸盐的有机废水。首先使用冷却结晶以从废水中除去硫酸盐。在4.0℃下,硫酸盐浓度从212降低至96.0g / L,并且通过两级冷却结晶减少了49.1%的总废水。由于主要含有水晶水的Na 2 SO 4晶体的沉淀,COD浓度从18.0增加到18.5g / L.然后通过芬顿反应治疗流出物。在pH 2.0,8.0mmol / L的铁/黑色金属/ L,40ml / L的30%H 2 O 2,60min反应的持续时间,COD去除效率最大化为77.9%,并且废水中的COD浓度留在芬顿反应中为4,100mg / l。最后,通过测序的批量反应器(SBR)处理从芬顿反应和体积比的污水中的污水混合物,其中将微生物驯化为耐受硫酸盐。 SBR稳定超过85%的COD去除效率,并且鳕鱼浓度离开SBR低于150mg / L.这些数据表明,三步过程对于治疗高盐有机废水是具有成本效益。

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