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Mendeleev Communications, 2021, Volume 31, Issue 3, Pages 385–387
DOI: https://doi.org/10.1016/j.mencom.2021.04.034
(Mi mendc938)
 

This article is cited in 7 scientific papers (total in 7 papers)

Communications

Influence of hydrothermal conditions on the phase transformations of amorphous alumina

A. N. Mukhamed'yarova, S. R. Egorova, O. V. Nosova, A. A. Lamberov

Alexander Butlerov Institute of Chemistry, Kazan Federal University, Kazan, Russian Federation
Full-text PDF (497 kB) Citations (7)
Abstract: Amorphous Al2O3 transforms into the pseudoboehmite and boehmite phases of AlO(OH) under hydrothermal conditions. Specific surface area, pore volume and the amount of acidic sites decrease upon complete conversion of amorphous Al2O3 into boehmite.
Keywords: amorphous alumina, hydrothermal treatment, alumina catalyst, porous system, amount of acidic sites.
Document Type: Article
Language: English
Supplementary materials:
Supplementary_data_1.pdf (1.1 Mb)


Citation: A. N. Mukhamed'yarova, S. R. Egorova, O. V. Nosova, A. A. Lamberov, “Influence of hydrothermal conditions on the phase transformations of amorphous alumina”, Mendeleev Commun., 31:3 (2021), 385–387
Linking options:
  • https://www.mathnet.ru/eng/mendc938
  • https://www.mathnet.ru/eng/mendc/v31/i3/p385
  • This publication is cited in the following 7 articles:
    1. Onajite T. Abafe Diejomaoh, Jude A. Onwudili, Keith E. Simons, Priscila Maziero, “On-purpose production of propane fuel gas from the hydrothermal reactions of n-butanol over Pt/Al2O3 catalyst: A parametric and mechanistic study”, Fuel, 365 (2024), 131140  crossref
    2. Chengqian Zhang, Youzhi Liu, Yuliang Li, Shuwei Guo, Shufei Wang, Shangyuan Cheng, “Study on the Continuous Whole Process Preparation of Peptizable Pseudoboehmite by High Gravity Strengthening Reaction of CO2 and Heat Transfer”, ACS Omega, 9:43 (2024), 43570  crossref
    3. Yan Gao, Qiubo Li, Wei Wu, Qiwei Wang, Yizhe Su, Junxi Zhang, Deyuan Lin, Xiaojian Xia, “Atmospheric corrosion acceleration effect on commercial aluminum alloys in current-carrying condition”, ACMM, 71:2 (2024), 114  crossref
    4. Jude A. Onwudili, Cristiane A. Scaldaferri, “Catalytic upgrading of intermediate pyrolysis bio-oil to hydrocarbon-rich liquid biofuel via a novel two-stage solvent-assisted process”, Fuel, 352 (2023), 129015  crossref
    5. Yuntian Wan, Zhixiang Liu, Jian Ye, Lulu Wang, Yan Yan, Jiangdong Dai, Xue Lin, “Interfacial engineering of bimetallic sulfides-based Al2O3 pellets with remarkably boosted peroxymonosulfate activation”, Journal of Environmental Chemical Engineering, 10:3 (2022), 107605  crossref
    6. Debo Liu, Baofeng Zhang, Wei Song, “Improving the Anti-Corrosion and Anti-Wear Performance of Anodic Coating on the Surface of AA 5052 via Hydro-Thermal Treatment”, Materials, 15:4 (2022), 1447  crossref
    7. Aliya N. Mukhamed'yarova, Bulat I. Gareev, Danis K. Nurgaliev, Firdavs A. Aliev, Alexey V. Vakhin, “A Review on the Role of Amorphous Aluminum Compounds in Catalysis: Avenues of Investigation and Potential Application in Petrochemistry and Oil Refining”, Processes, 9:10 (2021), 1811  crossref
    Citing articles in Google Scholar: Russian citations, English citations
    Related articles in Google Scholar: Russian articles, English articles
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