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采用高级氧化工艺去除制浆造纸厂废水中的颜色、总有机碳和可吸附有机卤化物:一项对比研究。

Color, TOC and AOX removals from pulp mill effluent by advanced oxidation processes: a comparative study.

作者信息

Catalkaya Ebru Cokay, Kargi Fikret

机构信息

Department of Environmental Engineering, Dokuz Eylul University, Buca, Izmir, Turkey.

出版信息

J Hazard Mater. 2007 Jan 10;139(2):244-53. doi: 10.1016/j.jhazmat.2006.06.023. Epub 2006 Jun 13.

Abstract

Pulp mill effluent containing toxic chemicals was treated by different advanced oxidation processes (AOPs) consisting of treatments by hydrogen peroxide, Fenton's reagent (H2O2/Fe2+), UV, UV/H2O2, photo-Fenton (UV/H2O2/Fe2+), ozonation and peroxone (ozone/H2O2) in laboratory-scale reactors for color, total organic carbon (TOC) and adsorbable organic halogens (AOX) removals from the pulp mill effluent. Effects of some operating parameters such as the initial pH, oxidant and catalyst concentrations on TOC, color, AOX removals were investigated. Almost every method used resulted in some degree of color removal from the pulp mill effluent. However, the Fenton's reagent utilizing H2O2/Fe2+ resulted in the highest color, TOC and AOX removals under acidic conditions when compared with the other AOPs tested. Approximately, 88% TOC, 85% color and 89% AOX removals were obtained by the Fenton's reagent at pH 5 within 30 min. Photo-Fenton process yielded comparable TOC (85%), color (82%) and AOX (93%) removals within 5 min due to oxidations by UV light in addition to the Fenton's reagent. Fast oxidation reactions by the photo-Fenton treatment makes this approach more favorable as compared to the others used.

摘要

含有有毒化学物质的纸浆厂废水在实验室规模的反应器中通过不同的高级氧化工艺(AOPs)进行处理,这些工艺包括用过氧化氢、芬顿试剂(H₂O₂/Fe²⁺)、紫外线、UV/H₂O₂、光芬顿(UV/H₂O₂/Fe²⁺)、臭氧氧化和过氧单硫酸盐(臭氧/H₂O₂)处理,以去除纸浆厂废水中的颜色、总有机碳(TOC)和可吸附有机卤素(AOX)。研究了一些操作参数,如初始pH值、氧化剂和催化剂浓度对TOC、颜色、AOX去除率的影响。几乎每种使用的方法都能使纸浆厂废水的颜色有一定程度的去除。然而,与其他测试的AOPs相比,利用H₂O₂/Fe²⁺的芬顿试剂在酸性条件下能实现最高的颜色、TOC和AOX去除率。在pH值为5的情况下,芬顿试剂在30分钟内可实现约88%的TOC去除率、85%的颜色去除率和89%的AOX去除率。由于除了芬顿试剂外还有紫外线的氧化作用,光芬顿工艺在5分钟内可实现相当的TOC(85%)、颜色(82%)和AOX(93%)去除率。与其他方法相比,光芬顿处理的快速氧化反应使这种方法更具优势。

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