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Formation of Phases and Porous System in the Product of Hydrothermal Treatment of χ-Al2O3

机译:χ-Al2O3水热处理产物的相和多孔体系形成

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The presence of χ-Al2O3 resulting from thermal decomposition gibbsite as part of alumina catalysts is unfavorable because of its acid characteristics. One of the available techniques of χ-Al2O3 removal is crystallization under hydrothermal conditions into boehmite, which is a main precursor of active γ-Al2O3. The influence of products of the hydrothermal treatment of χ-Al2O3 obtaining in result of thermal decomposition gibbsite under T = 150–200 °C, P = 0.5–1.5 MPa and pH = 4.0–9.2 were studied. The hydrothermal treatment products in these conditions are gibbsite and boehmite phases which are formed coincidently by parallel ways. In the alkaline medium at pH = 8.0–9.2 three-dimensional parallelepiped boehmite crystals with the edge length > 200 nm are formed, at pH = 4.0 two-dimensional rhombic-shaped plates with thickness 20–100 nm and with the edge length ~ 80–500 nm are formed. Crystallization of coarse boehmite particles promotes the formation of large and closed mesoporous.
机译:由于热分解三水铝石作为氧化铝催化剂的一部分而导致的χ-Al2O3的存在是不利的,因为它具有酸性。去除χ-Al2O3的可用技术之一是在水热条件下结晶成勃姆石,勃姆石是活性γ-Al2O3的主要前体。研究了在T = 150–200°C,P = 0.5–1.5 MPa和pH = 4.0–9.2的条件下热分解三水铝石对水热处理产物χ-Al2O3的影响。在这些条件下的水热处理产物是菱镁矿和勃姆石相,它们是通过平行方式同时形成的。在pH = 8.0–9.2的碱性介质中,形成了边长> 200 nm的三维平行六面体勃姆石晶体,在pH = 4.0的情况下,形成了厚度为20–100 nm且边长为〜80的二维菱形板形成–500 nm。粗勃姆石颗粒的结晶促进大而封闭的介孔的形成。

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