首页> 外文期刊>Journal of inorganic and organometallic polymers and materials >A Versatile Material: Perovskite Bismuth Ferrite Microparticles as a Potential Catalyst for Enhancing Fuel Efficiency and Degradation of Various Organic Dyes
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A Versatile Material: Perovskite Bismuth Ferrite Microparticles as a Potential Catalyst for Enhancing Fuel Efficiency and Degradation of Various Organic Dyes

机译:多功能材料:钙钛矿铋铁氧体微粒作为潜在催化剂,用于提高各种有机染料的燃料效率和降解

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The investigation of photocatalytic and fuel additive properties of bismuth ferrite (BiFeO3) microparticles is main objective of this work. Individual properties of bismuth and iron are synergistically reinforce in BiFeO3. X-ray diffraction spectroscopy is used to analyze the phase, phase purity and lattice structure of BiFeO3. Fuel additive and photocatalytic nature are linked to morphology and size of particles. Morphological analysis showed that rod like particles are arranged in the form of star like structures. Fuel additive role of BiFeO3 is analyzed by testing calorific value, flash point, fire point, surface tension, kinematic viscosity, cloud point and pour point of fuel loaded with 20, 40, 60 and 80 ppm additive. Amount of additive has affected all the properties of fuel. So additive role of BiFeO3 is analyzed which helps to decide whether BiFeO3 can be used as additive on large scale or not. Photocatalytic degradation of dyes is studied in aqueous medium using BiFeO3 as photocatalyst. Photocatalytic role of BiFeO3 is analyzed by measuring apparent rate constant (k(app)), percentage degradation and degradation time of all dyes. k(app) of dyes is as follows: CV (0.0371 min(-1)), RB5 (0.0186 min(-1)), MR (0.0159 min(-1)), MB (0.0147 min(-1)), EBT (0.0142 min(-1)), MX (0.0135 min(-1)), CR (0.0133 min(-1)), FG (0.0098 min(-1)) and SN (0.0088 min(-1)). Comparison of all these parameters helps to analyze that degradation of dyes is linked to their structure and nature.
机译:铋铁氧体(BIFEO3)微粒的光催化和燃料添加剂性能的研究是这项工作的主要目的。铋和铁的个性地性质在BifeO3中的协同增强。 X射线衍射光谱用于分析BIFEO3的相,相纯度和晶格结构。燃料添加剂和光催化性质与颗粒的形态和大小相关联。形态学分析表明,像颗粒一样的杆以恒星的形式排列。通过测试热值,闪光点,火点,表面张力,动力学粘度,浊点和倾注于装载20,40,60和80ppm添加剂的燃料的燃料添加剂的作用。添加剂的量影响了燃料的所有性质。因此分析了BifeO3的添加剂作用,有助于决定BifeO3是否可以在大规模上用作添加剂。使用BifeO3作为光催化剂在水性介质中研究染料的光催化降解。通过测量表观速率常数(K(APP)),百分比降解和所有染料的降解时间来分析BIFEO3的光催化作用。染料的K(APP)如下:CV(0.0371 min(-1)),RB5(0.0186分钟(-1)),MR(0.0159 min(-1)),Mb(0.0147分钟(-1)), EBT(0.0142 min(-1)),mx(0.0135 min(-1)),Cr(0.0133 min(-1)),Fg(0.0098 min(-1))和Sn(0.0088 min(-1))。所有这些参数的比较有助于分析染料的降解与它们的结构和性质相关联。

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