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通过增强三聚氰胺的生物降解作用来延长生物活性炭过滤器的使用寿命。

Prolonged lifetime of biological activated carbon filters through enhanced biodegradation of melamine.

机构信息

Environmental Technology, Wageningen University & Research, P.O. Box 17, 6700 AA Wageningen, the Netherlands.

Environmental Technology, Wageningen University & Research, P.O. Box 17, 6700 AA Wageningen, the Netherlands.

出版信息

J Hazard Mater. 2022 Jan 15;422:126840. doi: 10.1016/j.jhazmat.2021.126840. Epub 2021 Aug 8.

Abstract

Micropollutants can be removed in Biological Activated Carbon (BAC) filters through biodegradation, besides adsorption, when the conditions are favorable. In the present study, we build upon previous work on melamine biodegradation and activated carbon regeneration in batch experiments and assess the efficiency of this process in continuous flow lab-scale BAC filters. Melamine is frequently detected at low concentrations in surface water and is used here as a model micropollutant. BAC filters were inoculated with melamine degrading biomass and the contribution of biodegradation to melamine removal was assessed. Furthermore, we tested the effect of an additional carbon source (methanol) and the effect of contact time on melamine removal efficiency. We demonstrate that inoculation of activated carbon filters with melamine degrading biomass increases melamine removal efficiency by at least 25%. When an additional carbon source (methanol) is supplied, melamine removal is almost complete (up to 99%). Finally, through a nitrogen mass balance, we demonstrate that around 60% of the previously adsorbed melamine desorbs from the BAC surface when biodegradation rates in the liquid phase increase. Melamine desorption resulted in a partial recovery of the adsorption capacity.

摘要

微污染物可以通过生物活性炭(BAC)过滤器中的生物降解来去除,而当条件有利时,还可以通过吸附来去除。在本研究中,我们在批处理实验中对三聚氰胺生物降解和活性炭再生的先前工作基础上进行扩展,并评估该过程在连续流动实验室规模 BAC 过滤器中的效率。三聚氰胺在地表水经常以低浓度检测到,这里用作模型微污染物。用可生物降解的三聚氰胺的生物量接种 BAC 过滤器,并评估生物降解对三聚氰胺去除的贡献。此外,我们测试了添加碳源(甲醇)的效果以及接触时间对三聚氰胺去除效率的影响。我们证明,用可生物降解的三聚氰胺的生物量接种活性炭过滤器至少可将三聚氰胺的去除效率提高 25%。当添加碳源(甲醇)时,三聚氰胺的去除几乎是完全的(高达 99%)。最后,通过氮质量平衡,我们证明当液相中的生物降解速率增加时,约有 60%的先前吸附的三聚氰胺从 BAC 表面解吸。三聚氰胺解吸导致部分恢复了吸附能力。

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