首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Synthesis and photocatalytic activity of BiOCl/diatomite composite photocatalysts: Natural porous diatomite as photocatalyst support and dominant facets regulator
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Synthesis and photocatalytic activity of BiOCl/diatomite composite photocatalysts: Natural porous diatomite as photocatalyst support and dominant facets regulator

机译:BioCl /硅藻土复合光催化剂的合成和光催化活性:天然多孔硅藻土作为光催化剂载体和显性刻面稳压器

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摘要

BiOCl/diatomite composite with enhanced photocatalytic property for the degradation of liquid Tetracycline hydrochloride (TC) and gaseous formaldehyde (HCHO) were successfully prepared by a facile hydrothermal method at different pH value. The structure and morphology characterizations of BiOCl/diatomite composite exhibit that diatomite not only acts as a natural porous support of photocatalyst but also acts as dominant facets regulator at pH = 3 when the doping amount is change, owing to the surface electrical property of the diatomite and interaction between diatomite and BiOCl. This interaction is certified by XPS and FT-IR which indicate that Bi in layer structure of [Bi2O2](2+) group interacts with the O in Si-O-Si bond when the formation of BiOCl with the participation of diatomite. The BET characterization confirms that the increasing amount of diatomite enables the composite with more reaction points for light harvest and molecule adsorption than pure BiOCl. Furthermore, TC and formaldehyde are targeted as degradation objects to test the photocatalytic property of BiOCl/diatomite composite. The optimum photocatalytic property are BiOCl(3-1.2) and BiOCl(12-0.6) at TC degradation and BiOCl (3-0.3) and BiOCl(12-0.6) at formaldehyde elimination, which is much better than that of pure diatomite or BiOCl. The difference of optimum photocatalysts in liquid and gaseous phase systems can be attributed to the photoelectric performances of BiOCl/diatomite composite, which were characterized by DRS, PL, transient photocurrents and the electrochemical impedance spectroscopy technique. (C) 2019 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:通过在不同pH值下通过容易水热法制备具有增强的光催化性能的BioCl /硅藻土复合性具有增强的光催化性,用于盐酸盐酸盐盐酸盐(Tc)和气态甲醛(Hcho)。 BioCl /硅藻土复合材料的结构和形态表征表明,硅藻土不仅是光催化剂的天然多孔载体,而且当掺杂量变化时,在pH = 3时,由于硅藻土的表面电特性,在pH = 3时起到主要刻面调节剂硅藻土和生物合体之间的相互作用。该相互作用通过XPS和FT-IR认证,表明[Bi2O2](2+)组的层结构中的BI在Si-O-Si键在硅藻土的参与时与o在Si-O-Si键中相互作用。所述表征证实,抗氨基酯的增加使复合材料能够具有比纯BioCl更高的光收获和分子吸附的反应点。此外,Tc和甲醛靶向降解物体,以测试BioCl /硅藻土复合物的光催化性能。最佳光催化性质是在甲醛消除的TC降解和BioCl(3-0.3)和BioCl(3-0.3)的BioCl(3-1.2)和BioCl(12-0.6),比纯硅藻土或BioCl更好。液相和气相系统中最佳光催化剂的差异可归因于BioCl /硅藻土复合材料的光电性能,其特征在于DRS,PL,瞬态光电流和电化学阻抗谱技术。 (c)2019年日本粉末技术学会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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