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首页> 外文期刊>Chemical Engineering and Processing >Preparation of 3D graphene/iron oxides aerogels based on high-gravity intensified reactive precipitation and their applications for photo-Fenton reaction
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Preparation of 3D graphene/iron oxides aerogels based on high-gravity intensified reactive precipitation and their applications for photo-Fenton reaction

机译:基于高重力的3D石墨烯/氧化铁Aerogels的制备及其对光芬反应的应用

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摘要

In this work, we reported the preparation of 3D graphene/iron oxides aerogels (IO/GA) by in situ growth of iron oxide nanoparticles (IC)) on the graphene oxides in high gravity rotating packed bed (RPB) followed by freeze drying treatments. The RPB was used to intensify the mass transfer and mixing during the adsorption and nucleation process of IO, guaranteeing highly homogeneous reaction conditions to the reactants. Thereafter, the 10 nanoparticles obtained in the RPB route (IO/GA-RPB) exhibited an average size of 6 nm with uniform size distribution. By contrast, the IO nanoparticles prepared from traditional stirred tank reactor (IO/GA-STR) showed much larger particle size (33 nm). The 3D structured IO/GA-RPB nanocomposites were demonstrated to be efficient heterogeneous photo-Fenton catalysts for the degradation of methyl-blue. The kinetic studies of the catalytic reaction systems in the temperature range of 293 K-323 K and pH value of 1-7 were performed. The reaction rate constants and apparent activation energy were determined. The related catalytic mechanism of the photo-Fenton reaction was investigated. The excellent catalytic efficiency of the 3D-foam-structured heterogeneous IO/GA-RPB catalyst, along with the knowledge of the kinetics data, make them promising for in scale-up applications of photo-Fenton reaction.
机译:在这项工作中,我们通过在高重力旋转填充床(RPB)中的石墨烯氧化物上,通过在高重旋转填充床(RPB)中的氧化铁纳米颗粒(IC))上进行三维石墨烯/氧化铁气动凝胶(IO / Ga)的制备,然后进行冷冻干燥处理。 RPB用于加强在IO的吸附和成核过程中的传质和混合,保证对反应物的高度均匀的反应条件。此后,在RPB途径(IO / GA-RPB)中获得的10个纳米颗粒表现出6nm的平均尺寸,具有均匀的尺寸分布。相比之下,由传统搅拌釜反应器(IO / GA-STR)制备的IO纳米颗粒显示出更大的粒度(33nm)。证明了3D结构化IO / GA-RPB纳米复合材料是有效的非均相光芬顿催化剂,用于降解甲基 - 蓝。催化反应体系在293k-323k和pH值为1-7的温度范围内的动力学研究。确定反应速率常数和明显的活化能量。研究了光芬顿反应的相关催化机制。 3D泡沫结构的非均相IO / GA-RPB催化剂的优异催化效率以及动力学数据的知识,使它们在光芬反应的扩大应用方面使其有望。

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