商用氢氧化铝。第1部分:商用氢氧化铝/氧化物的相组成和结构特性

IF 1.3 Q4 ENGINEERING, CHEMICAL
A. P. Bebyakina, M. I. Farid, A. V. Boretskaya, S. R. Egorova, A. A. Lamberov
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引用次数: 0

摘要

氧化铝是石油炼制和石油化工中设计多相催化剂最常用的成分。氧化铝载体和催化剂的最佳特性(例如,比表面积、孔径、相和杂质组成)与烃类原料的类型和工艺过程相对应。鉴于进口替代的趋势,研究用于氧化铝合成的氢氧化铝原料的国内生产商的市场变得越来越重要。在这项工作中,通过x射线衍射、同时热重/差示扫描量热法、低温氮吸附和元素分析对国内商业氢氧化铝样品进行了研究。研究对象通常是相不均匀的,含有铁、硅和钙杂质。研究了以薄铝石为主结构的氢氧化铝的结晶度和相干散射区大小对合成氧化铝的结构特性的影响(在某些情况下,氢氧化铝含有拜耳石)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Commercial Aluminum Hydroxides. Part 1: Phase Composition and Textural Characteristics of Commercial Aluminum Hydroxides/Oxides

Commercial Aluminum Hydroxides. Part 1: Phase Composition and Textural Characteristics of Commercial Aluminum Hydroxides/Oxides

Aluminum oxides are the most common component used in the design of heterogeneous catalysts of oil refining and petrochemistry. The optimum characteristics of aluminum oxide supports and catalysts (e.g., specific surface area, pore size, and phase and impurity compositions) correspond to the type of hydrocarbon feedstocks and technological process. In light of the trend toward import substitution, it is becoming ever more relevant to study the market for domestic producers of aluminum hydroxide feedstocks used in the synthesis of aluminum oxides. In this work, domestic commercial samples of aluminum hydroxides are investigated via X-ray diffraction, simultaneous thermogravimetry/differential scanning calorimetry, low-temperature nitrogen adsorption, and elemental analysis. It is established that the objects of study are most often inhomogeneous in phase and contain iron, silicon, and calcium impurities. The effect of degree of crystallinity and the sizes of coherent scattering regions in aluminum hydroxides with a predominantly boehmite structure (and in some cases, aluminum hydroxides containing bayerite) on the textural characteristics of synthesized aluminum oxides is demonstrated.

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来源期刊
Catalysis in Industry
Catalysis in Industry ENGINEERING, CHEMICAL-
CiteScore
1.30
自引率
14.30%
发文量
21
期刊介绍: The journal covers the following topical areas: Analysis of specific industrial catalytic processes: Production and use of catalysts in branches of industry: chemical, petrochemical, oil-refining, pharmaceutical, organic synthesis, fuel-energetic industries, environment protection, biocatalysis; technology of industrial catalytic processes (generalization of practical experience, improvements, and modernization); technology of catalysts production, raw materials and equipment; control of catalysts quality; starting, reduction, passivation, discharge, storage of catalysts; catalytic reactors.Theoretical foundations of industrial catalysis and technologies: Research, studies, and concepts : search for and development of new catalysts and new types of supports, formation of active components, and mechanochemistry in catalysis; comprehensive studies of work-out catalysts and analysis of deactivation mechanisms; studies of the catalytic process at different scale levels (laboratory, pilot plant, industrial); kinetics of industrial and newly developed catalytic processes and development of kinetic models; nonlinear dynamics and nonlinear phenomena in catalysis: multiplicity of stationary states, stepwise changes in regimes, etc. Advances in catalysis: Catalysis and gas chemistry; catalysis and new energy technologies; biocatalysis; nanocatalysis; catalysis and new construction materials.History of the development of industrial catalysis.
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