首页> 外文会议>International Conference on Nanomaterials for Energy Conversion and Storage Applications >Enhanced Photocatalytic Activity of Nanocellulose Supported Zinc Oxide Composite for RhB Dye as well as Ciprofloxacin Drug under Sunlight/Visible Light
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Enhanced Photocatalytic Activity of Nanocellulose Supported Zinc Oxide Composite for RhB Dye as well as Ciprofloxacin Drug under Sunlight/Visible Light

机译:增强纳米纤维素的光催化活性支持RHB染料的氧化锌复合物以及阳光下的环氟氟苯胺药物/可见光

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Zinc oxide nanoparticles were synthesised from zinc acetate di-hydrate via co-precipitation method. Nanocellulose was isolated from agrowaste using chemo-mechanical treatments and characterized. Nanocellulose supported zinc oxide composites were prepared through in-situ method by adding different amounts of nanocellulose. The photocatalytic efficiency of pure Zno and nanocellulose supported ZnO was calculated using RhB dye under visible light and sun light. The composites which had nanocellulose in greater ratio showed higher degradation efficiency in sunlight rather than visible light for both; dye and drug. All the composites showed high rate of photodegradation compared to bare ZnO and bare nanocellulose. The enhancement in photocatalytic activity was observed maximum where the amount of cellulose was maximum. The maximum observed rate was 0.025 min~(-1) using Ciprofloxacin drug due to the increase in lifetime of Z4 sample delaying the electron and hole pair recombination. The degrading efficiency of nanocellulose supported zinc oxide (NC/ZnO) composite for RhB was found to be 35% in visible, 76% in sunlight and 75% for ciprofloxacin under sunlight.
机译:通过共沉淀法从乙酸锌二水合物合成氧化锌纳米颗粒。使用化学机械处理从Agrowaste中分离纳米纤维素并表征。通过添加不同量的纳米纤维素,通过原位方法制备纳米纤维素负载的氧化锌复合材料。在可见光和阳光下使用RHB染料计算纯ZnO和纳米纤维素负载ZnO的光催化效率。纳米纤维素以较大比的复合材料显示出阳光下的较高的降解效率,而不是两者的可见光;染料和药物。与裸ZnO和裸纳米纤维素相比,所有复合材料显示出高光降解率。观察到光催化活性的增强最大值,其中纤维素的量最大。由于Z4样品延迟延迟电子和空穴对重组的寿命的寿命增加,最大观察到的速率为0.025分钟〜(-1)。纳米纤维素负载氧化锌(NC / ZnO)复合材料的降解效率被发现为可见的35%,阳光下的76%和75%的阳光下的氧化环氧化嘧啶。

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