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臭氧氧化和催化臭氧氧化预处理在造纸厂废水藻类处理中的优点。

Merits of ozonation and catalytic ozonation pre-treatment in the algal treatment of pulp and paper mill effluents.

作者信息

Balcioğlu I Akmehmet, Tarlan E, Kivilcimdan C, Saçan M Türker

机构信息

Boğaziçi University, Institute of Environmental Sciences, 34342 Bebek-Istanbul, Turkey.

出版信息

J Environ Manage. 2007 Dec;85(4):918-26. doi: 10.1016/j.jenvman.2006.10.020. Epub 2006 Dec 22.

Abstract

Since the performance of algal treatment for pulp mill effluent decreases with increasing color intensity and AOX content, which mainly originate from the chlorine bleaching of Kraft pulp, the separated CEH bleaching effluent was pre-treated by both the conventional and the heterogeneous catalytic ozonation processes. An increase in the BOD(5)/COD ratio from 0.11 to 0.28 and 87% color abatement in terms of Pt-Co were achieved by catalytic ozonation, which had the best treatment performance. Biodegradability enhancement of the CEH effluent correlated well with a decrease in toxicity, high-molecular-weight-compound content, and AOX abatement. By the pre-treatment of the CEH bleaching effluent, the overall efficiencies of algal treatment of the combined pulp mill effluent in terms of the fractional removal of COD and color were increased from 76% and 53% to 86-90% and 96-99%, respectively. Effects of both the conventional and the catalytic ozonation pre-treatments on subsequent biological treatment were close to each other and they reduced the filling period of the Sequential Batch Reactor (SBR) cycle from 8 to 5 days.

摘要

由于藻类处理纸浆厂废水的性能会随着颜色强度和可吸附有机卤化物(AOX)含量的增加而降低,而这些主要源自硫酸盐浆的氯漂,因此对分离出的CEH漂白废水进行了常规和非均相催化臭氧化工艺的预处理。通过催化臭氧化实现了生化需氧量(BOD₅)与化学需氧量(COD)的比值从0.11提高到0.28,以及以铂钴计的87%的脱色率,该方法具有最佳的处理性能。CEH废水生物降解性的提高与毒性降低、高分子量化合物含量降低以及AOX的去除密切相关。通过对CEH漂白废水进行预处理,联合纸浆厂废水藻类处理在COD和颜色去除率方面的整体效率分别从76%和53%提高到了86 - 90%和96 - 99%。常规和催化臭氧化预处理对后续生物处理的效果相近,它们将序批式反应器(SBR)周期的填充期从8天缩短至5天。

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