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首页> 外文期刊>European Polymer Journal >Dendrimer supported Fe/Ni bimetallic composites immobilized in polyethersulfone membranes for effective degradation of arginine containing microcystins
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Dendrimer supported Fe/Ni bimetallic composites immobilized in polyethersulfone membranes for effective degradation of arginine containing microcystins

机译:Dendimer支持的Fe / Ni双金属复合材料固定在聚醚砜膜中,以有效降解含有微囊藻的精氨酸

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摘要

The degradation study on arginine containing microcystins (MCY - LR, MCY - YR and MCY - RR) was conducted using poly (propylene imine) dendrimers (G2 and G3) supported Fe/Ni bimetallic composites immobilized in polyethersulfone (PES) membrane. The membrane composites namely PES/G21FeNi, PES/G22FeNi, PES/G31FeNi and PES/G32FeNi were synthesized characterized for FTIR, SEM (with EDS) and AFM studies. Batch degradation studies to remove microcystins from standard and extracted solutions were carried out at the pH of 7.2 +/- 0.03 for an equilibrium time of 90 min. The degradation efficiency greater than 80% was achieved for the standard solutions of all the three microcystin congeners and extracted solution of MCY - LR. The compliance of pseudo first order kinetics was approved from the regression coefficients. The linear model applied using JMP software implied the validation of 96.7% due to variables. The possible degradation mechanism was explored in the study based on the adsorption followed by degradation of microcystins as a consequence of Fe/Ni participation on the platform of dendrimers.
机译:使用聚砜(PES)膜固定在聚醚砜(PES)膜中的支撑Fe / Ni双金属复合材料,进行了含有微囊藻(MCY-LR,MCY - YR和MCY-RR)的精氨酸的降解研究。膜复合材料即PES / G21FENI,PES / G22FENI,PES / G31FENI和PES / G32FENI,其特征在于FTIR,SEM(带EDS)和AFM研究。分批降解研究以从标准和提取的溶液中除去微囊杆菌的pH为7.2 +/- 0.03的pH为90分钟的均衡时间。对于所有三种微囊藻蛋白同源物的标准溶液和MCY - LR的提取溶液,实现了大于80%的降解效率。伪第一订单动力学的符合性来自回归系数。使用JMP软件应用的线性模型暗示由于变量引起的96.7%。根据吸附在研究中探讨了可能的降解机制,然后通过在树枝状大分子平台上进行FE / NI参与的Micrystins降解微囊藻。

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