Ecole des Ponts ParisTech, Université Paris-Est Créteil, AgroParisTech, Laboratoire Eau Environnement et Systèmes Urbains, UMR MA 102, Créteil, France.
Ecole des Ponts ParisTech, Université Paris-Est Créteil, AgroParisTech, Laboratoire Eau Environnement et Systèmes Urbains, UMR MA 102, Créteil, France.
Water Res. 2020 Apr 1;172:115487. doi: 10.1016/j.watres.2020.115487. Epub 2020 Jan 8.
The presence of dissolved organic matter (DOM) in wastewater effluents is recognized as the main factor limiting the adsorption of organic micropollutants (OMPs) onto activated carbon. The degree of the negative effect that DOM, depending on its quality, exerts on OMPs adsorption is still unclear. The influence of the interactions between DOM and OMPs on their removal is also not fully understood. Adsorption isotherms and conventional batch tests were performed in ultra-pure water and in wastewater effluent to study the influence of DOM on the adsorption of 12 OMPs onto powdered activated carbon. Best fit of adsorption pseudo-isotherms was obtained with the Freundlich equation and showed, as expected, that OMPs adsorption was higher in ultra-pure water than in wastewater effluent due to the presence of DOM leading to pore blockage and competition for adsorption sites. LC-OCD analysis revealed that biopolymers and hydrophobic molecules were the most adsorbed fractions while humic acids were not removed after a contact time of either 30 min or 72 h. The presence of DOM had a negative impact on the removal of all OMPs after 30 min of adsorption, but similar removals to ultra-pure water were obtained for 6 OMPs after 72 h of adsorption. This demonstrated that competition between DOM and OMPs for adsorption sites was not a major mechanism as compared to pore blockage, which only slowed down the adsorption and did not prevent it. The charge of OMPs had a clear impact: the adsorption of negatively charged compounds was reduced in the presence of wastewater effluent due to repulsive electrostatic interactions with the adsorbed DOM and the PAC surface. On the other hand, the removal of positively charged compounds was improved. A 24 h pre-equilibrium between OMPs and DOM improved their removal onto PAC, which suggest that OMPs and DOM interacted in solution which decreased the negative effects caused by the presence of DOM, e.g. through co-adsorption of an OMP-DOM complex.
废水中溶解有机物 (DOM) 的存在被认为是限制有机微污染物 (OMPs) 被活性炭吸附的主要因素。DOM 对 OMPs 吸附的负面影响程度,取决于其质量,这一点仍不清楚。DOM 与 OMPs 之间的相互作用对它们去除的影响也不完全清楚。在超纯水和废水废水中进行了吸附等温线和常规批量试验,以研究 DOM 对 12 种 OMPs 被粉末活性炭吸附的影响。吸附伪等温线的最佳拟合是用 Freundlich 方程得到的,正如预期的那样,由于 DOM 的存在导致孔阻塞和吸附位点竞争,OMPs 在超纯水中的吸附高于在废水中。LC-OCD 分析表明,生物聚合物和疏水分子是最被吸附的部分,而腐殖酸在 30 分钟或 72 小时的接触时间后未被去除。在吸附 30 分钟后,DOM 的存在对所有 OMPs 的去除都有负面影响,但在吸附 72 小时后,6 种 OMPs 的去除率与超纯水相当。这表明,与孔阻塞相比,DOM 和 OMPs 之间的吸附位点竞争不是主要机制,孔阻塞只是减缓了吸附,而没有阻止吸附。OMPs 的电荷有明显的影响:由于与吸附的 DOM 和 PAC 表面的静电排斥相互作用,带负电荷的化合物在废水中的吸附减少。另一方面,带正电荷的化合物的去除得到了改善。OMPs 和 DOM 之间 24 小时的预平衡提高了它们在 PAC 上的去除率,这表明 OMPs 和 DOM 在溶液中相互作用,减少了 DOM 存在所造成的负面影响,例如通过 OMP-DOM 配合物的共吸附。