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电纺丝素蛋白/TiO垫。农药污染水的光催化太阳能处理的制备、表征及效率

Electrospun silk fibroin/TiO mats. Preparation, characterization and efficiency for the photocatalytic solar treatment of pesticide polluted water.

作者信息

Aznar-Cervantes Salvador, Aliste Marina, Garrido Isabel, Yañez-Gascón María J, Vela Nuria, Cenis Jose L, Navarro Simón, Fenoll José

机构信息

Biotechnology Group, Murcia Institute of Agri-Food Research and Development C/Mayor s/n. La Alberca 30150 Murcia Spain.

Sustainability and Quality Group of Fruit and Vegetable Products, Murcia Institute of Agri-Food Research and Development C/Mayor s/n. La Alberca 30150 Murcia Spain

出版信息

RSC Adv. 2020 Jan 9;10(4):1917-1924. doi: 10.1039/c9ra09239k. eCollection 2020 Jan 8.

Abstract

The photocatalytic properties of silk fibroin (SF) incorporating TiO nanoparticles using an electrospinning technique were examined. Electrospun SF/TiO mats were successfully prepared and characterized by different techniques (XRD, FE-SEM, XPS, XDS, FTIR and BET). The photocatalytic efficiency of these materials were assessed by their ability to degrade four pesticides (boscalid, hexythiazox, pyraclostrobin and trifloxystrobin) in water exposed to solar irradiation. The effect of catalyst loading on the disappearance kinetics of the different pesticides was studied in order to determine the maximum degradation efficiency. The degradation rate significantly increases upon adding the TiO. However, no significant differences ( < 0.05) were observed when the TiO loading was increased from 25 to 50 mg for most compounds. Thus, SF mats with 25 mg of TiO were selected. Therefore, a new and simple approach to produce materials with photocatalytic activity, safety and potential application in the purification of water contaminated by pesticides has been developed.

摘要

研究了采用静电纺丝技术将二氧化钛纳米颗粒掺入丝素蛋白(SF)中的光催化性能。成功制备了静电纺丝SF/TiO垫,并通过不同技术(XRD、FE-SEM、XPS、XDS、FTIR和BET)对其进行了表征。通过这些材料在太阳辐射下对水中四种农药(啶酰菌胺、噻螨酮、吡唑醚菌酯和肟菌酯)的降解能力来评估其光催化效率。研究了催化剂负载量对不同农药消失动力学的影响,以确定最大降解效率。添加二氧化钛后降解率显著提高。然而,对于大多数化合物,当二氧化钛负载量从25mg增加到50mg时,未观察到显著差异(<0.05)。因此,选择了含有25mg二氧化钛的丝素蛋白垫。因此,已经开发出一种新的简单方法来生产具有光催化活性、安全性以及在净化受农药污染的水中具有潜在应用价值的材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8f6/9047524/54017a9022c3/c9ra09239k-f1.jpg

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