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Synthesis, characterization and activity of an immobilized photocatalyst : natural porous diatomite supported titania nanoparticles

机译:固定化光催化剂的合成,表征和活性:天然多孔硅藻土负载的二氧化钛纳米粒子

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摘要

Diatomite, a porous non-metal mineral, was used as support to prepare TiO2/diatomite composites by a modified sol–gel method. The as-prepared composites were calcined at temperatures ranging from 450 to 950 _C. The characterization tests included X-ray powder diffraction (XRD), scanning electron microscopy (SEM) with an energy-dispersive X-ray spectrometer (EDS), high-resolution transmission electron microscopy (HRTEM), X-ray photoelectron spectroscopy (XPS), and nitrogen adsorption/desorption measurements. The XRD analysis indicated that the binary mixtures of anatase and rutile exist in the composites. The morphology analysis confirmed the TiO2 particles were uniformly immobilized on the surface of diatom with a strong interfacial anchoring strength, which leads to few drain of photocatalytic components during practical applications. In further XPS studies of hybrid catalyst, we found the evidence of the presence of Ti–O–Si bond and increased percentage of surface hydroxyl. In addition, the adsorption capacity and photocatalytic activity of synthesized TiO2/diatomite composites were evaluated by studying the degradation kinetics of aqueous Rhodamine B under UV-light irradiation. The photocatalytic degradation was found to follow pseudo-first order kinetics according to the Langmuir–Hinshelwood model. The preferable removal efficiency was observed in composites by 750 _C calcination, which is attributed to a relatively appropriate anatase/rutile mixing ratio of 90/10.
机译:硅藻土是一种多孔的非金属矿物,被用作载体,通过改进的溶胶-凝胶法制备TiO2 /硅藻土复合材料。所制备的复合物在450至950℃的温度范围内煅烧。表征测试包括X射线粉末衍射(XRD),带有能量色散X射线光谱仪(EDS)的扫描电子显微镜(SEM),高分辨率透射电子显微镜(HRTEM),X射线光电子光谱(XPS)和氮吸附/解吸测量。 XRD分析表明,复合物中存在锐钛矿和金红石的二元混合物。形态分析证实,TiO2颗粒均匀地固定在硅藻的表面上,具有很强的界面锚固强度,在实际应用中几乎没有光催化成分的流失。在进一步的混合催化剂XPS研究中,我们发现存在Ti–O–Si键和表面羟基百分比增加的证据。此外,通过研究罗丹明B水溶液在紫外光下的降解动力学,评价了合成的TiO2 /硅藻土复合材料的吸附能力和光催化活性。根据Langmuir-Hinshelwood模型,发现光催化降解遵循拟一级动力学。通过750℃煅烧观察到复合材料具有较好的去除效率,这归因于锐钛矿/金红石的相对合适的混合比为90/10。

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