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污水有机物对活性炭吸附全氟化合物的影响。

Effect of effluent organic matter on the adsorption of perfluorinated compounds onto activated carbon.

机构信息

State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Nanjing 210046, PR China.

出版信息

J Hazard Mater. 2012 Jul 30;225-226:99-106. doi: 10.1016/j.jhazmat.2012.04.073. Epub 2012 May 6.

Abstract

Effect of effluent organic matter (EfOM) on the adsorption of perfluorooctane sulfonate (PFOS) and perfluorooctanoate (PFOA) onto powdered activated carbon (PAC) was quantitatively investigated at environmentally relevant concentration levels. The adsorption of both perfluorinated compounds (PFCs) onto PAC followed pseudo-second order kinetics and fitted the Freundlich model well under the given conditions. Intraparticle diffusion was found to be the rate-controlling step in the PFC adsorption process onto PAC in the absence and presence of EfOM. The presence of EfOM, either in PFC-EfOM simultaneous adsorption onto fresh PAC or in PFC adsorption onto EfOM-preloaded PAC, significantly reduced the adsorption capacities and sorption rates of PFCs. The pH of zero point of charge was found to be 7.5 for fresh PAC and 4.2 for EfOM-preloaded PAC, suggesting that the adsorbed EfOM imparted a negative charge on PAC surface. The effect of molecular weight distribution of EfOM on the adsorption of PFCs was investigated with two EfOM fractions obtained by ultrafiltration. The low-molecular-weight compounds (<1kDa) were found to be the major contributors to the significant reduction in PFC adsorption capacity, while large-molecular-weight compounds (>30kDa) had much less effect on PFC adsorption capacity.

摘要

环境相关浓度水平下,定量研究了污水有机物 (EfOM) 对粉末活性炭 (PAC) 吸附全氟辛烷磺酸 (PFOS) 和全氟辛酸 (PFOA) 的影响。在给定条件下,两种全氟化合物 (PFCs) 均通过拟二级动力学吸附到 PAC 上,且很好地符合 Freundlich 模型。在 EfOM 存在或不存在的情况下,发现颗粒内扩散是 PFC 在 PAC 上吸附过程的速率控制步骤。EfOM 的存在,无论是在 PFC-EfOM 同时吸附到新鲜的 PAC 上,还是在 PFC 吸附到 EfOM 预加载的 PAC 上,都显著降低了 PFCs 的吸附容量和吸附速率。零电荷点 pH 值被发现为新鲜 PAC 的 7.5 和 EfOM 预加载 PAC 的 4.2,表明吸附的 EfOM 赋予 PAC 表面负电荷。通过超滤获得的两种 EfOM 级分研究了 EfOM 分子量分布对 PFC 吸附的影响。发现低分子量化合物 (<1kDa) 是导致 PFC 吸附容量显著降低的主要因素,而高分子量化合物 (>30kDa) 对 PFC 吸附容量的影响较小。

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