Modification of Thin Film Composite Membrane by Chitosan-Silver Particles to Improve Desalination and Anti-Biofouling Performance

被引:10
作者
Magdalena Armendariz-Ontiveros, Maria [1 ]
Villegas-Peralta, Yedidia [1 ]
Elizabeth Madueno-Moreno, Julia [1 ]
Alvarez-Sanchez, Jesus [1 ]
Eduardo Devora-Isiordia, German [1 ]
Sanchez-Duarte, Reyna G. [1 ]
Jesus Madera-Santana, Tomas [2 ]
机构
[1] Inst Tecnol Sonora, Dept Ciencias Agua & Medio Ambiente, 5 Febrero 818 Sur, Obregon 85000, Mexico
[2] Ctr Invest & Desarrollo AC, Hermosillo 83304, Sonora, Mexico
关键词
chitosan; Ag; reverse osmosis membranes; bio-fouling; desalination; REVERSE-OSMOSIS MEMBRANES; ANTIMICROBIAL ACTIVITY; NANOPARTICLES; POLYMERIZATION; NANOCOMPOSITES;
D O I
10.3390/membranes12090851
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Reverse osmosis (RO) desalination is a technology that is commonly used to mitigate water scarcity problems; one of its disadvantages is the bio-fouling of the membranes used, which reduces its performance. In order to minimize this problem, this study prepared modified thin film composite (TFC) membranes by the incorporation of chitosan-silver particles (CS-Ag) of different molecular weights, and evaluated them in terms of their anti-biofouling and desalination performances. The CS-Ag were obtained using ionotropic gelation, and were characterized by Fourier transform infrared spectroscopy (FTIR), high-resolution scanning electron microscopy (HR-SEM), energy-dispersive X-ray spectroscopy (EDX), thermogravimetric analysis (TGA) and dynamic light scattering (DLS). The modified membranes were synthetized by the incorporation of the CS-Ag using the interfacial polymerization method. The membranes (MCS-Ag) were characterized by Fourier transform infrared spectroscopy (FTIR), atomic force microscopy (AFM) and contact angle. Bactericidal tests by total cell count were performed using Bacillus halotolerans MCC1, and anti-adhesion properties were confirmed through biofilm cake layer thickness and total organic carbon (%). The desalination performance was defined by permeate flux, hydraulic resistance, salt rejection and salt permeance by using 2000 and 5000 mg L-1 of NaCl. The MCS-Ag-L presented superior permeate flux and salt rejection (63.3% and 1% higher, respectively), as well as higher bactericidal properties (76% less in total cell count) and anti-adhesion capacity (biofilm thickness layer 60% and total organic carbon 75% less, compared with the unmodified membrane). The highest hydraulic resistance value was for MCS-Ag-M. In conclusion, the molecular weight of CS-Ag significantly influences the desalination and the antimicrobial performances of the membranes; as the molecular weight decreases, the membranes' performances increase. This study shows a possible alternative for increasing membrane useful life in the desalination process.
引用
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页数:20
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