State Key Laboratory of Chemical Resource Engineering , Beijing University of Chemical Technology , No. 15 Beisanhuan East Road , Beijing 100029 , China.
Beijing Center for Physical & Chemical Analysis , No. 27 Xisanhuan North Road , Beijing 100089 , China.
ACS Appl Mater Interfaces. 2018 Jul 5;10(26):22776-22785. doi: 10.1021/acsami.8b01557. Epub 2018 Jun 22.
It is of great and increasing interest to explore porous adsorption films to reduce heavy metal ions in aqueous solution. Here, we for the first time fabricated carbon paper@magnesium silicate (CP@MS) composite films for the high-efficiency removal of Zn and Cu by a solid-phase transformation from hydromagnesite-coated CP (CP@MCH) precursor film in a hydrothermal route and detailedly examined adsorption process for Zn and Cu as well as the adsorption mechanism. The suitable initial pH range is beyond 4.0 for the adsorption of the CP@MS to remove Zn under the investigated conditions, and the adsorption capacity is mainly up to the pore size of the porous film. The composite film exhibits excellent adsorption capacity for both of Zn and Cu with the corresponding maximum adsorption quantity of 198.0 mg g for Zn and 113.5 mg g for Cu, which are advantageous over most of those reported in the literature. Furthermore, the adsorption behavior of the CP@MS film follows the pseudo-second-order kinetic model and the Langmuir adsorption equation for Zn with the cation-exchange mechanism. Particularly, the CP@MS film shows promising practical applications for the removal of heavy metal ions in water by an adsorption-filtration system.
探索多孔吸附膜以减少水溶液中的重金属离子具有重要且日益增长的意义。在这里,我们首次通过水热法从水镁石涂层 CP(CP@MCH)前体膜制备了用于高效去除 Zn 和 Cu 的碳纸@硅酸镁(CP@MS)复合膜,并详细研究了 Zn 和 Cu 的吸附过程和吸附机制。在研究条件下,CP@MS 吸附去除 Zn 的合适初始 pH 值范围超过 4.0,吸附容量主要取决于多孔膜的孔径。该复合膜对 Zn 和 Cu 均表现出优异的吸附容量,Zn 的最大吸附量为 198.0mg/g,Cu 的最大吸附量为 113.5mg/g,优于文献中大多数报道的值。此外,CP@MS 膜对 Zn 的吸附行为符合准二级动力学模型和 Langmuir 吸附方程,其阳离子交换机制。特别地,CP@MS 膜通过吸附-过滤系统在去除水中重金属离子方面具有很有前景的实际应用。