Nikolaev Institute of Inorganic Chemistry, Siberian Branch, Russian Academy of Sciences, 3 Acad. Lavrentiev Ave., Novosibirsk, Russia, 630090.
Department of Natural Sciences, Novosibirsk State University, 2 Ul. Pirogova, Novosibirsk, 630090, Russia.
Environ Sci Pollut Res Int. 2019 Mar;26(7):6368-6377. doi: 10.1007/s11356-018-3986-7. Epub 2019 Jan 7.
In this study, a simple submersible device was tested to remove and recover Cd(II), Cu(II), Pb(II), and Zn(II) from model wastewater and real natural water. To obtain this device, fine particles (< 0.1 mm) of a new hybrid adsorbent based on the mesoporous carbon and Fenton-modified humic acids were fixed onto a highly porous polymeric matrix. The hybrid adsorbent was characterized by various methods. The main mechanism for Cd(II), Cu(II), Pb(II), and Zn(II) adsorption by the hybrid adsorbent is chemosorption by surface functional groups, the total concentration of which was found to be 1.56 mmol g. The adsorption capacity depends on pH, and at pH 6.0, it has the following order (mmol g): Cu(II) (1.14) > Pb(II) (0.86) > Zn(II) (0.59) > Cd(II) (0.50). The possibility of applying a submersible device for the removal and recovery of these metals from multi-metal wastewaters and reservoirs was studied. A high efficiency of metal removal (95-99.9%) and recovery (85-99%) from wastewater remained in at least six consecutive adsorption-desorption cycles. Effective removal of metals from the water of a contaminated reservoir contributed to the rapid restoration of the phytoplankton organisms after their oppression by metals. Thus, the use of a submerged device with the new hybrid adsorbent can be an effective way of remediating wastewaters and natural waters contaminated with metals.
在这项研究中,测试了一种简单的潜水设备,以从模拟废水和实际天然水中去除和回收 Cd(II)、Cu(II)、Pb(II) 和 Zn(II)。为了获得这种设备,将基于中孔碳和芬顿改性腐殖酸的新型混合吸附剂的细颗粒(<0.1 毫米)固定在高多孔聚合物基质上。该混合吸附剂采用多种方法进行了表征。混合吸附剂吸附 Cd(II)、Cu(II)、Pb(II) 和 Zn(II) 的主要机制是通过表面官能团的化学吸附,其总浓度被发现为 1.56 mmol g。吸附容量取决于 pH 值,在 pH 值为 6.0 时,其顺序如下(mmol g):Cu(II)(1.14)> Pb(II)(0.86)> Zn(II)(0.59)> Cd(II)(0.50)。研究了潜水设备从多金属废水中去除和回收这些金属的应用可能性。从废水中去除和回收金属的效率很高(95-99.9%),在至少六个连续的吸附-解吸循环中,回收率为 85-99%。从受金属污染的水库水中有效去除金属有助于在金属对浮游植物生物的抑制作用解除后,快速恢复其生长。因此,使用带有新型混合吸附剂的潜水设备可以成为修复受金属污染的废水和天然水的有效方法。