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首页> 外文期刊>Indian Journal of Science and Technology >Photocatalytic Removal of Bismarck Brown G and Reactive Yellow 145 over Prepared (Co, Ni) 3 O 4 Spinel Catalyst
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Photocatalytic Removal of Bismarck Brown G and Reactive Yellow 145 over Prepared (Co, Ni) 3 O 4 Spinel Catalyst

机译:制备的(Co,Ni)3 O 4尖晶石催化剂对Bi斯麦棕G和活性黄145的光催化去除

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Background/Objectives: The current study is focused on the synthesis of spinel catalyst (Co, Ni) 3 O 4 . This catalyst was used in removal of two textile dyes from wastewater that are charged from local textile factory. Methods/Statistical Analysis: This catalyst was synthesized using co-precipitation method. The obtained materials was calcinated in a furnace oven at temperature of 600?C for four hours. Then produced catalysts were investigated using different techniques such as Powder X-Rays Diffraction (PXRD), Atomic Force Microscopic (AFM). The treated industrial wastewaters that were used in this study were collected from the local textile factory in Hilla city (Iraq). Findings: The photocatalytic activity of the synthesized catalysts was investigated by following the photo catalytic removal of both Bismarck Brown G, (BBG) dye and Reactive Yellow145 dye (RY145) from the industrial wastewaters at normal atmospheric conditions. After one hour of reaction, the efficiency of dye removal was 94.60% and 31.11% for Bismarck Brown G and Reactive Yellow 145 dye respectively. Applications/Improvements: This study gives promising results in concern with treatment of industrial wastewaters before they are charged into the nearest water streams or in some cases they can be recycled to be used for industrial purposes at the same factory or at any other industrial unit.
机译:背景/目的:目前的研究集中在尖晶石催化剂(Co,Ni)3 O 4的合成上。该催化剂用于从当地纺织厂收取的废水中去除两种纺织染料。方法/统计分析:该催化剂采用共沉淀法合成。将获得的材料在600℃的炉中煅烧4小时。然后使用不同的技术(例如粉末X射线衍射(PXRD),原子力显微镜(AFM))研究了生成的催化剂。本研究中使用的处理过的工业废水是从伊拉克希拉市当地一家纺织厂收集的。结果:在正常大气条件下,通过对工业废水中的Bi斯麦棕G(BBG)染料和活性黄145染料(RY145)进行光催化去除,研究了合成催化剂的光催化活性。反应一小时后,Bi斯麦棕G和活性黄145染料的去除效率分别为94.60%和31.11%。应用/改进:在将工业废水排入最近的水流之前,或者在某些情况下,它们可以在同一工厂或任何其他工业单元中再循环以用于工业目的,这项研究在处理工业废水方面给出了令人鼓舞的结果。

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