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基于聚酰胺织物-水凝胶-氧化锌颗粒的复合材料设计,用作吸附剂和光催化剂。

Design of a Composite Based on Polyamide Fabric-Hydrogel-Zinc Oxide Particles to Act as Adsorbent and Photocatalyst.

作者信息

Atanasova Daniela, Irikova Miglena, Staneva Desislava, Grabchev Ivo

机构信息

Department of Textile, Leader and Fuels, University of Chemical Technology and Metallurgy, 1756 Sofia, Bulgaria.

Faculty of Medicine, Sofia University St. "Kliment Ohridski", 1407 Sofia, Bulgaria.

出版信息

Materials (Basel). 2022 Sep 25;15(19):6649. doi: 10.3390/ma15196649.

Abstract

Surface-initiated photopolymerization has been run to synthesize a hydrogel with ZnO particles distributed uniformly along its structure, which has been loaded onto a polyamide fabric. Three samples have been obtained at different concentrations of zinc nitrate (10% (sample PA10); 20% (sample PA20) and 30% (sample PA30) of the weight of the fabric, respectively)) and subjected to gravimetric analysis, scanning electron microscopy and transmission electron microscopy. The effect of the adsorption parameters of the composite material on the removal Drimaren Rot K-7B dye from water has been studied. The Freundlich isotherm describes this process better than the Langmuir isotherm. As the results of the adsorption kinetics show, the process fits well with a pseudo-second-order equation and depends both on the boundary layer and on the structure of the adsorbent itself. The thermodynamic parameters have demonstrated that the process is endothermic and physical. When exposed to ultraviolet light, the discoloration of the dye solution accelerates due to the photocatalytic properties of the composite materials. The addition of HO also speeds up further the process, while the reuse of the materials slows it down, gradually changing the kinetic parameters. The reaction has been attributed to first-order kinetic model, when the active centers of the materials and the number of oxidative radicals formed are numerous and to the second-order kinetic model at a lower reaction activity. Moreover, 52% decolorization of the dye solution (50 mg L) in the dark was achieved from composite material PA 30 (13.3 g L) in 120 min and 89% under UV light irradiation. The HO addition (0.14 mmol L) enhanced it up to 98%. In the second and third use of the photocatalyst, the dye removal decreased to 80% and 60%. Composite material PA30 exhibits antibacterial activity against Gram-negative bacteria , being most effective at eliminating Gram-positive bacteria

摘要

通过表面引发光聚合反应合成了一种水凝胶,其中氧化锌颗粒沿其结构均匀分布,并负载在聚酰胺织物上。分别以不同浓度的硝酸锌(占织物重量的10%(样品PA10)、20%(样品PA20)和30%(样品PA30))制备了三个样品,并进行了重量分析、扫描电子显微镜和透射电子显微镜分析。研究了该复合材料的吸附参数对水中Drimaren Rot K - 7B染料去除效果的影响。Freundlich等温线比Langmuir等温线更能描述这一过程。吸附动力学结果表明,该过程符合拟二级方程,并且既取决于边界层,也取决于吸附剂本身的结构。热力学参数表明该过程是吸热的物理过程。当暴露于紫外光下时,由于复合材料的光催化性能,染料溶液的褪色加速。添加过氧化氢也进一步加快了这一过程,而材料的重复使用则使其减慢,动力学参数逐渐变化。当材料的活性中心和形成的氧化自由基数量众多时,该反应归因于一级动力学模型,而在较低反应活性下则归因于二级动力学模型。此外,在黑暗中,复合材料PA 30(13.3 g/L)在120分钟内可使50 mg/L的染料溶液脱色52%,在紫外光照射下可达89%。添加过氧化氢(0.14 mmol/L)可将其提高至98%。在光催化剂的第二次和第三次使用中,染料去除率分别降至80%和60%。复合材料PA30对革兰氏阴性菌具有抗菌活性,对革兰氏阳性菌的消除效果最为显著

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