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热酸水解和热二氧化氯阶段对漂白废水生物降解性的影响。

Effect of hot acid hydrolysis and hot chlorine dioxide stage on bleaching effluent biodegradability.

作者信息

Gomes C M, Colodette J L, Delantonio N R N, Mounteer A H, Silva C M

机构信息

Federal University of Viçosa, 36570-000, Viçosa, MG, Brazil.

出版信息

Water Sci Technol. 2007;55(6):39-46. doi: 10.2166/wst.2007.210.

Abstract

The hot acid hydrolysis followed by chlorine dioxide (A/D*) and hot chlorine dioxide (D*) technologies have proven very useful for bleaching of eucalyptus kraft pulp. Although the characteristics and biodegradability of effluents from conventional chlorine dioxide bleaching are well known, such information is not yet available for effluents derived from hot acid hydrolysis and hot chorine dioxide bleaching. This study discusses the characteristics and biodegradability of such effluents. Combined whole effluents from the complete sequences DEpD, DEpD, A/DEpD and ADEpD, and from the pre-bleaching sequences DEp, DEp, A/DEp and ADEp were characterized by quantifying their colour, AOX and organic load (BOD, COD, TOC). These effluents were also evaluated for their treatability by simulation of an activated sludge system. It was concluded that treatment in the laboratory sequencing batch reactor was efficient for removal of COD, BOD and TOC of all effluents. However, colour increased after biological treatment, with the greatest increase found for the effluent produced using the AD technology. Biological treatment was less efficient at removing AOX of effluents from the sequences with D*, A/D* and AD as the first stages, when compared to the reference D stage; there was evidence of the lower treatability of these organochlorine compounds from these sequences.

摘要

热酸水解后接二氧化氯(A/D*)和热二氧化氯(D*)技术已被证明对桉木硫酸盐浆的漂白非常有用。尽管传统二氧化氯漂白废水的特性和生物降解性已为人熟知,但关于热酸水解和热二氧化氯漂白产生的废水的此类信息尚未可得。本研究讨论了此类废水的特性和生物降解性。通过量化其颜色、可吸附有机卤化物(AOX)和有机负荷(生化需氧量BOD、化学需氧量COD、总有机碳TOC),对来自完整序列DEpD、DEpD、A/DEpD和ADEpD以及预漂白序列DEp、DEp、A/DEp和ADEp的混合全废水进行了表征。还通过模拟活性污泥系统评估了这些废水的可处理性。得出的结论是,在实验室序批式反应器中进行处理对于去除所有废水的COD、BOD和TOC是有效的。然而,生物处理后颜色增加,使用AD技术产生的废水颜色增加最大。与参考D阶段相比,当以D*、A/D*和AD作为第一阶段时,生物处理在去除序列废水的AOX方面效率较低;有证据表明这些序列中的这些有机氯化合物的可处理性较低。

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