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活性炭处理2-氯苯酚过程中的吸附、解吸及生物再生

Adsorption, desorption and bioregeneration in the treatment of 2-chlorophenol with activated carbon.

作者信息

Aktaş Ozgür, Ceçen Ferhan

机构信息

Bogaziçi University, Institute of Environmental Sciences, 34342 Bebek, Istanbul, Turkey.

出版信息

J Hazard Mater. 2007 Mar 22;141(3):769-77. doi: 10.1016/j.jhazmat.2006.07.050. Epub 2006 Jul 28.

Abstract

This study aims to clarify the effect of activated carbon type on the extent of adsorbability, desorbability, and bioregenerability in the treatment of 2-chlorophenol. Four different activated carbon types; thermally activated and chemically activated powdered carbons (PAC), and their granular countertypes (GAC) with similar physical characteristics were used. Thermally activated carbons adsorbed 2-chlorophenol much better than chemically activated ones. However, adsorption was more reversible in the case of chemically activated ones. The use of powdered and granular activated carbon countertypes resulted in comparable adsorption and desorption characteristics. For each activated carbon type, 2-chlorophenol exhibited higher adsorbability and lower desorbability than phenol. Biodegradation of 2-chlorophenol took place very slowly when it was used as the sole carbon source in acclimated and non-acclimated activated sludges. Bioregeneration occurred only via desorption due to an initial concentration gradient and no further desorption took place due to low biodegradability. Bioregeneration of activated carbon loaded with 2-chlorophenol was not a suitable option when 2-chlorophenol was the only carbon source. It is suggested to remove 2-chlorophenol via adsorption onto activated carbon rather than applying biological treatment. Also in such cases, the use of thermally activated carbons with higher adsorption and lower desorption capacities is recommended rather than chemically activated carbons.

摘要

本研究旨在阐明活性炭类型对2-氯苯酚处理过程中吸附性、解吸性和生物再生性程度的影响。使用了四种不同类型的活性炭;热活化和化学活化的粉末活性炭(PAC),以及具有相似物理特性的粒状对应物(GAC)。热活化碳对2-氯苯酚的吸附效果比化学活化碳好得多。然而,化学活化碳的吸附更具可逆性。粉末状和粒状活性炭对应物的使用导致了相当的吸附和解吸特性。对于每种活性炭类型,2-氯苯酚比苯酚表现出更高的吸附性和更低的解吸性。当2-氯苯酚在驯化和未驯化的活性污泥中用作唯一碳源时,其生物降解非常缓慢。生物再生仅通过由于初始浓度梯度引起的解吸发生,并且由于低生物降解性没有进一步的解吸发生。当2-氯苯酚是唯一碳源时,负载2-氯苯酚的活性炭的生物再生不是一个合适的选择。建议通过吸附到活性炭上来去除2-氯苯酚,而不是采用生物处理。同样在这种情况下,建议使用具有更高吸附能力和更低解吸能力的热活化碳,而不是化学活化碳。

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