Technische Universität Berlin, Chair of Water Quality Control, KF 4, Str. des 17. Juni 135, 10623, Berlin, Germany.
Technische Universität Berlin, Chair of Water Quality Control, KF 4, Str. des 17. Juni 135, 10623, Berlin, Germany.
Chemosphere. 2019 Dec;237:124415. doi: 10.1016/j.chemosphere.2019.124415. Epub 2019 Jul 20.
The adsorption of organic micropollutants (OMP) onto activated carbon (AC) in real waters is strongly affected by dissolved organic matter (DOM). This study examines the impact of DOM quantity and composition in terms of OMP desorption from different AC, by using four different water samples. In batch tests, an OMP concentration drop in the influent of an AC treatment system was simulated. These tests were conducted with six AC products with different internal pore structures. The tests were evaluated with respect to the extent of OMP desorption by interpreting corresponding OMP adsorption and desorption isotherms. For each tested AC and each evaluated OMP the isotherms in the different water samples were qualitatively very similar. Thus, despite different DOM composition very similar OMP desorption extents can be expected in different waters. Among the AC products a clear trend can be seen in all waters, namely that increasing pore size results in increasing desorption. The OMP desorption extent was quantified by a simple Freundlich equation-based approach, expressing the relative position of corresponding adsorption and desorption isotherms via the ratio K/K. Plotting K/K of any given substance for the different tested AC in one water over the average AC pore size shows a linear correlation. This confirms that the OMP desorption extent in real waters is strongly impacted by the AC pore structure. Furthermore, it indicates that the average AC pore size might be a good tool to assess the vulnerability of treatment systems towards desorption.
在实际水体中,有机微量污染物(OMP)在活性炭(AC)上的吸附受溶解有机物(DOM)的强烈影响。本研究通过使用四种不同的水样,考察了 DOM 数量和组成对不同 AC 中 OMP 解吸的影响。在批量试验中,模拟了 AC 处理系统进水口 OMP 浓度下降的情况。这些测试是用具有不同内部孔结构的六种 AC 产品进行的。通过解释相应的 OMP 吸附和解吸等温线,对这些测试进行了评估,以评估 OMP 解吸的程度。对于每种测试的 AC 和每种评估的 OMP,不同水样中的等温线在定性上非常相似。因此,尽管 DOM 组成不同,但可以预期在不同的水中会有非常相似的 OMP 解吸程度。在所研究的 AC 产品中,在所有水样中都可以看到一个明显的趋势,即孔径的增大导致解吸程度的增大。通过一种简单的基于 Freundlich 方程的方法定量描述了 OMP 解吸程度,该方法通过比率 K/K 表示相应吸附和解吸等温线的相对位置。对于给定物质,在一种水中,不同测试的 AC 的 K/K 与平均 AC 孔径作图显示出线性相关性。这证实了实际水体中的 OMP 解吸程度受 AC 孔结构的强烈影响。此外,它表明平均 AC 孔径可能是评估处理系统对解吸脆弱性的良好工具。