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Synthesis of Nano-Photocatalyst ZnO-Natural Zeolite to Degrade Procion Red

机译:纳米光催化剂ZnO-天然沸石的合成降解探净红色

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The development of textile factories has had a significant impact on the environment because dye wastewater is difficult to degrade. The handling of textile wastewater usually involves the adsorption method, in which pollutants only transfer to another phase. As an alternative solution, a photodegradation method was developed using photocatalyst material assisted by ultraviolet irradiation. In this photodegradation method, dye substances are broken down into components that are simpler and safer for the environment. The possibility of using sunlight as a radiation source makes this a particularly promising method for countries such as Indonesia. Procion red, one of the most commonly utilized synthetic dyes in the home textile or Batik industry, was used as a model pollutant in this study. The objectives of the present research were to synthesize and characterize a nano-photocatalyst of ZnO-natural zeolite with the capacity to degrade Procion red. This nano-photocatalyst was synthesized using the sol-gel method, by which Zn(CH3COO)2 2H2O was used as a precursor and combined with natural zeolite to increase its photocatalytic ability. The nano-photocatalyst was characterized using X-ray diffraction (XRD), scanning electron microscope/energy dispersive X-ray spectroscopy (SEM/EDX), and Brunauer-Emmett-Teller (BET). The activity of nano-photocatalyst ZnO-natural zeolite was compared to ZnO alone and natural zeolite alone in terms of its ability to degrade Procion red. An average photocatalyst crystallite diameter of 82 nm was achieved, proving that a nano-sized photocatalyst of ZnO-natural zeolite was successfully synthesized. BET characterization showed that nano-photocatalyst ZnO-natural zeolite had a specific surface area of 14.84 m2/g, a pore size of 32.71 nm, and a pore volume of 0.12 cm2/g. A peak Procion red degradation percentage of 96.23% was obtained using nano-photocatalyst ZnO-natural zeolite after 120 minutes of irradiation under sunlight applied to a Procion red concentration of 50 ppm.
机译:纺织工厂的发展对环境产生了重大影响,因为染料废水难以降解。纺织废水的处理通常涉及吸附方法,其中污染物仅转移到另一阶段。作为替代解决方案,使用紫外线辐照的光催化剂材料开发光降解方法。在这种光致原理中,染料物质被分解成更简单和对环境更安全的组件。作为辐射源使用阳光的可能性使这是印度尼西亚等国家的特别有希望的方法。 Procion Red是家庭纺织品或蜡染行业中最常用的合成染料之一,用作本研究中的模型污染物。本研究的目的是合成和表征ZnO-天然沸石的纳米光催化剂,其能力降解良好。使用溶胶 - 凝胶法合成该纳米光催化剂,通过其中使用Zn(CH 3 COO)2 2 H 2 O作为前体并与天然沸石合并以增加其光催化能力。使用X射线衍射(XRD),扫描电子显微镜/能量分散X射线光谱(SEM / EDX)和Brunauer-Emmett-Teller(Bet)的纳米光催化剂的特征在于。将纳米光催化剂ZnO-天然沸石的活性与单独的ZnO和天然沸石相比,仅在其降解良好的能力方面。实现了平均光催化剂晶体直径为82nm,证明了ZnO-天然沸石的纳米光催化剂被成功地合成。 β表征显示,纳米光催化剂ZnO-天然沸石的比表面积为14.84m 2 / g,孔径为32.71nm,孔体积为0.12cm 2 / g。在阳光下120分钟照射的阳光照射到50ppm的曝光中,使用纳米光催化剂ZnO-天然沸石获得了96.23%的峰值升降率为96.23%的百分比。

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