College of Resources and Environment, Hunan Agricultural University, Changsha 410128, China.
College of Environmental Science and Engineering, Hunan University, Changsha 410082, China.
Sci Rep. 2017 Mar 2;7:43831. doi: 10.1038/srep43831.
Highly efficient simultaneous removal of atrazine and Cu(II) was accomplished using synthesized polyacrylic acid-functionalized magnetic ordered mesoporous carbon (P-MMC) as compared to magnetic ordered mesoporous carbon (MMC) and ordered mesoporous carbon (OMC). The mutual effects and interactive mechanism of their adsorption onto P-MMC were investigated systematically by binary, preloading and thermodynamic adsorption procedures. In both binary and preloading systems, the adsorption of atrazine was inhibited to some extent by the presence of Cu(II) because of selective recognition and direct competition, but the presence of atrazine had negligible effect on Cu(II) desorption. With the coexistence of humic acid (0-20 mg L), both atrazine and Cu(II) sorption increased slightly in sole and binary systems. With the concentration of coexisting NaCl increasing from 0 to 100 mM, the adsorption capacity for Cu(II) slightly decreased, but as for atrazine adsorption, it decreased at first, and then increased slightly in sole and binary systems. P-MMC was applied to treat real environmental samples, and the sorption capacities for atrazine and Cu(II) in real samples were all more than 91.47% and 96.43% of those in lab ultrapure water, respectively. Finally, comprehensively considering the relatively good renewability and the superior behavior in the application to real water samples, P-MMC has potential in removal of atrazine, Cu(II) and possibly other persistent organic pollutants from wastewater.
与磁性有序介孔碳(MMC)和有序介孔碳(OMC)相比,合成的聚丙烯酸功能化磁性有序介孔碳(P-MMC)可高效同时去除莠去津和 Cu(II)。通过二元、预加载和热力学吸附程序系统地研究了它们在 P-MMC 上吸附的相互作用和相互作用机制。在二元和预加载系统中,由于选择性识别和直接竞争,莠去津的吸附在一定程度上受到 Cu(II)的抑制,但莠去津的存在对 Cu(II)的解吸几乎没有影响。在腐殖酸(0-20mg/L)共存的情况下,单一体系和二元体系中莠去津和 Cu(II)的吸附均略有增加。随着共存 NaCl 浓度从 0 增加到 100mM,Cu(II)的吸附容量略有下降,但对于莠去津吸附,在单一体系和二元体系中先下降后略有增加。P-MMC 被应用于处理真实环境样品,真实样品中莠去津和 Cu(II)的吸附容量分别比实验室超纯水中的吸附容量高 91.47%和 96.43%。最后,综合考虑相对较好的可再生性和在实际水样应用中的优越性能,P-MMC 有可能从废水中去除莠去津、Cu(II)和可能的其他持久性有机污染物。