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Novel green hybrid processes for oily water photooxidation and purification from merchant ship

机译:从商船上对油性水进行光氧化和纯化的新型绿色混合工艺

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Two hybrid photooxidation systems consisting of two different reactors; photocatalytic reactor-ultrafiltration (PR-UF) and photocatalytic membrane reactor (PMR) have been investigated and compared for photolysis and separation of oily water. In both, oily water was irradiated by ultraviolet (UV) light. In PR, UV irradiation was made on the TiO2 photocatalyst suspended in oily water, followed by ultrafiltration (UF) to remove TiO2 particles and hydrocarbon residues. On the other hand, TiO2 was immobilized on the halloysite nanotube (HNT) and embedded in the UF membrane in PMR. In both systems, hydrocarbon concentration, chemical oxygen demand (COD), total dissolved solid (TDS), and hydrocarbon concentration were measured at each step of photooxydation and filtration. In UF, membrane flux, reduction in solute concentration, flux decline and flux recovery by backwashing were investigated. The experimental results showed that the reduction in TOC by PR-UF was similar to 10% higher than PMR. On the other hand, reduction in hydrocarbon concentration, COD and TDS was higher for PMR. The TiO2 concentration in UF permeate was 8 ppm and 0.2 ppm, respectively, for PR-UF and PMR. (C) 2016 Elsevier B.V. All rights reserved.
机译:由两个不同的反应器组成的两个混合光氧化系统;对光催化反应器-超滤(PR-UF)和光催化膜反应器(PMR)进行了研究,并进行了油水的光解和分离比较。在这两种情况下,油性水都被紫外线(UV)照射。在PR中,对悬浮在油性水中的TiO2光催化剂进行紫外线照射,然后进行超滤(UF)以去除TiO2颗粒和烃残留物。另一方面,TiO2固定在埃洛石纳米管(HNT)上并嵌入PMR的UF膜中。在这两个系统中,在光氧化和过滤的每个步骤中都测量了烃浓度,化学需氧量(COD),总溶解固体(TDS)和烃浓度。在超滤中,研究了膜通量,溶质浓度降低,通量下降和通过反冲洗的通量回收率。实验结果表明,PR-UF的TOC降低量比PMR高出10%。另一方面,PMR的碳氢化合物浓度,COD和TDS降低幅度更大。对于PR-UF和PMR,超滤透过物中的TiO2浓度分别为8 ppm和0.2 ppm。 (C)2016 Elsevier B.V.保留所有权利。

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