绿色路线制备ZnO/NiFe2O4纳米催化剂及其对制革废水的光催化活性研究

K Usman, M. Abubakar, R. Abdullahi, R Muhammad, A. A. Muhammad, A. Usman
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引用次数: 0

摘要

以醋酸锌、氯化铁、氯化镍为前驱体,在不同焙烧温度下合成氧化锌和铁酸镍纳米颗粒,并将其应用于制革废水的处理。通过各种表征技术证明了氧化锌的生成。XRD研究表明,合成的纳米颗粒为立方相,测得的强峰平均晶粒尺寸约为30-56nm。SEM图像显示,合成的纳米颗粒在50nm左右呈颗粒状,形状大致为球形。能谱分析证实了合成样品的元素组成,表明氧和锌是主要元素。将合成的催化剂用于制革废水处理,经合成催化剂处理后的制革废水在日光照射下的水质参数发生了明显变化,符合(WHO)水质可接受范围。颜色、气味和外观改变为无色、无臭、透明。ph为7.4,总有机碳(TOC)为32(mg/dm3),浊度为2.5(NTU)。分析结果显示,与在黑暗条件下记录的处理过程相比,在阳光照射条件下获得的处理过程效率最高。与其他方法相比,该方法快速、成本低,安全、环保、可行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biosynthesis and Characterization of ZnO/NiFe2O4 Nanocatalyst via Green Route Using Anacadium occidentalelinn (cashew nut) and its photocatalytic activity for the treatment of tannery wastewater under sunlight irradiation
The Anacadium occidentalelinn (cashew nut) leaves extract have been excellently utilized as a reducing as well as capping agent for the synthesis of zincoxide and nickel ferrite nanoparticles using zinc acetate, and iron (lll) chloride, nickel chloride as precursor with a different calcined temperature at the furnace and its application in the treatment of tannery wastewater. The generation of zinc oxide was proved by various characterization techniques. XRD studies displayed that a cubic phase and the average crystallite size for the intense peak measured were about 30-56nm was exhibited by the synthesized nanoparticle SEM image showed that synthesized particle are granular around 50nm and roughly spherical in shape. EDS analysis proved the elemental composition of the synthesized sample and disclosed that oxygen as well as zinc are the dominant elements. The synthesized catalyst was used in the tannery wastewater treatment also the quality parameters of tannery wastewater after treatment with the synthesized catalyst under sunlight irradiation, significantly changed and found to be within acceptable range of quality water according to (WHO). The color, odor and appearance where changed to colorless, odorless, and clear. ph, 7.4 total organic carbon (TOC), 32(mg/dm3), turbidity, 2.5(NTU) respectively. The highest efficiency of the treatment process was attained under sunlight irradiation conditions in comparison to those which were recorded under dark conditions as revealed by the result of the analysis. This procedure is safe, environmentally friendly and viable due to its fast, low cost compared to other methods.
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