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Synthesis of Hydrogels with Antifouling Properties As Membranes for Water Purification
Published on: April 7, 2017
Synergistic integration of adsorption and antibacterial activity in a quaternized cyclodextrin composite for water
Hongping Liao1, Xiangrong Feng1, Xin Wang2
1School of Life Sciences, Key Laboratory of Jiangxi Province for Functional Biology and Pollution Control in Red Soil Regions, Jinggangshan University, Ji'an 343009, China.
Abstract:
Traditional cyclodextrin-based synthetic materials fail to simultaneously address interrelated challenges, including adsorption and bacterial contamination, which restricted treatment efficiency in wastewater treatment (WWT). In this study, a quaternized cyclodextrin composite (CC-GTA) was synthesized via a two-step grafting method. The physicochemical structure of CC-GTA was comprehensively characterized to confirm the successful fabrication and investigate the characteristics. The CC-GTA exhibited excellent adsorption performance for bisphenol A (218.12 mg/g) via hydrophobic inclusion complexation and methyl orange (384.09 mg/g) by electrostatic attraction, respectively. Moreover, the super-hydrophilic surface (water contact angle = 13.9°) and abundant pore structure contributed to an 84% removal of bovine serum albumin. Moreover, CC-GTA demonstrated achieving antibacterial properties for Escherichia coli and Staphylococcus aureus with a maximum antibacterial efficiency of 98%, and still achieved an antibacterial efficiency of 95% in real wastewater. The antibacterial mechanism of CC-GTA was verified to involve electrostatic adhesion of bacterial cells and disruption of the cell membranes, causing cytoplasmic leakage and cell death. In summary, the synthesized eco-friendly composite CC-GTA integrated the dual functionalities of efficient adsorption and antibacterial activity, which provided a reliable material solution and technological pathway and showed great application potential in large-scale industrial for advanced WWT.
