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Integration of biofiltration and advanced oxidation processes for tertiary treatment of an oil refinery wastewater aiming at water reuse

机译:生物过滤和高级氧化工艺相结合,用于炼油厂废水的三次处理,旨在实现水的回用

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The combination of biological and chemical oxidation processes is an interesting approach to remove ready, poor, and non-biodegradable compounds from complex industrial wastewaters. In this study, biofiltration followed by H2O2/UV oxidation (or microfiltration) and final reverse osmosis (RO) step was employed for tertiary treatment of an oil refinery wastewater. Biofiltration alone allowed obtaining total organic carbon (TOC), chemical oxygen demand (COD), UV absorbance at 254 nm (UV254), ammonium, and turbidity removal of around 46, 46, 23, 50, and 61 %, respectively. After the combined biological-chemical oxidation treatment, TOC and UV254 removal amounted to 88 and 79 %, respectively. Whereas, the treatment performance achieved with different UV lamp powers (55 and 95 W) and therefore distinct irradiance levels (26.8 and 46.3 mW/cm(2), respectively) were very similar and TOC and UV254 removal rates were highly affected by the applied C/H2O2 ratio. Silt density index (SDI) was effectively reduced by H2O2/UV oxidation, favoring further RO application. C/H2O2 ratio of 1:4, 55 W UV lamp, and 20-min oxidation reaction corresponded to the experimental condition which provided the best cost/benefit ratio for TOC, UV254, and SDI reduction from the biofilter effluent. The array of treatment processes proposed in this study has shown to be adequate for tertiary treatment of the oil refinery wastewater, ensuring the mitigation of membrane fouling problems and producing a final effluent which is suitable for reuse applications.
机译:生物和化学氧化过程的结合是一种从复杂的工业废水中去除现成的,不良的和不可生物降解的化合物的有趣方法。在这项研究中,先进行生物过滤,然后再进行H2O2 / UV氧化(或微过滤)和最终反渗透(RO)步骤,以对炼油厂废水进行三级处理。单独进行生物过滤可以分别获得总有机碳(TOC),化学需氧量(COD),254 nm处的UV吸光度(UV254),铵和大约46%,46%,23%,50%和61%的浊度去除率。结合生化氧化处理后,TOC和UV254的去除率分别达到88%和79%。鉴于使用不同的紫外线灯功率(55和95 W)所获得的处理性能非常相似,因此不同的辐照度水平(分别为26.8和46.3 mW / cm(2))非常相似,并且所施加的紫外线对TOC和UV254的去除率影响很大。 C / H2O2比。 H2O2 / UV氧化可有效降低粉尘密度指数(SDI),有利于进一步的RO应用。 C / H2O2比为1:4、55 W紫外线灯和20分钟的氧化反应符合实验条件,该条件为生物滤池废水中的TOC,UV254和SDI降低提供了最佳成本/效益比。这项研究中提出的一系列处理方法已显示出足够用于炼油厂废水的三次处理,确保减轻了膜污染问题并产生了适合再利用的最终废水。

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