Architecting neonicotinoid-scavenging nanocomposite hydrogels for environmental remediation

被引:56
|
作者
Alammar, Abdulaziz [1 ]
Park, Sang-Hee [2 ]
Ibrahim, Izwaharyanie [3 ]
Arun, Deepak [4 ]
Holtzl, Tibor [5 ,6 ]
Dumee, Ludovic F. [7 ,8 ]
Lim, Hong Ngee [3 ]
Szekely, Gyorgy [1 ,2 ]
机构
[1] Univ Manchester, Dept Chem Engn & Analyt Sci, Sackville St, Manchester M1 3BB, Lancs, England
[2] King Abdullah Univ Sci & Technol KAUST, Adv Membrane & Porous Mat Ctr, Thuwal 239556900, Saudi Arabia
[3] Univ Putra Malaysia, Fac Sci, Dept Chem, Upm Serdang 43400, Selangor, Malaysia
[4] Saveetha Sch Engn, Saveetha Inst Med & Tech Sci, Chennai 602105, Tamil Nadu, India
[5] Budapest Univ Technol & Econ, Dept Inorgan & Analyt Chem, MTA BME Computat Driven Chem Res Grp, Muegyet Rkp 3, H-1111 Budapest, Hungary
[6] Furukawa Elect Inst Technol, Kesmark Utca 28-A, H-1158 Budapest, Hungary
[7] Deakin Univ, Geelong, Vic, Australia
[8] Inst Frontier Mat, Waurn Ponds, Vic 3216, Australia
关键词
Neonicotinoids; Water purification; Green solvents; Polymers of intrinsic microporosity; Graphene; INTRINSIC MICROPOROSITY; ADSORPTION; MEMBRANES; REMOVAL; POLYMERS; IMPACTS; SURFACE; BEADS; BEES;
D O I
10.1016/j.apmt.2020.100878
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The ubiquitous presence of neonicotinoid insecticides in the environment poses potential health concerns across all biomes, aquatic systems, and food chains. This global environmental challenge requires robust, advanced materials to efficiently scavenge and remove these harmful neonicotinoids. In this work, we engineered nanocomposite hydrogels based on sustainable cellulose acetate for water treatment. The nanocomposite hydrogels were incorporated with small quantities of polymers of intrinsic microporosity (PIM-1) and graphene oxide (GO). We prepared the hydrogels using green solvents such as Cyrene and MeTHF via simple dropwise phase inversion. High adsorption capacity and fast kinetic behavior toward acetamiprid, clothianidin, dinotefuran, imidacloprid, and thiamethoxam were observed. We also developed a rapid and sustainable ultrasound-assisted regeneration method for the hydrogels. Molecular dynamics of the complex quaternary system revealed the synergistic effects of the components, and the presence of PIM-1 was found to increase the GO surface area available for neonicotinoid scavenging. We demonstrated the robustness and practicality of the nanocomposites in continuous environmental remediation by using the hydrogels to treat contaminated groundwater from the Adyar river in India. The presented methodology is adaptable to other contaminants in both aqueous environments and organic media. (C) 2020 Elsevier Ltd. All rights reserved.
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页数:11
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