Oxygen exchange mechanisms in zeolite chabazite under steaming conditions

被引:2
|
作者
Benes, Tereza [1 ]
Liu, Mingxiu [1 ]
Nachtigall, Petr [1 ]
Heard, Christopher J. [1 ]
机构
[1] Charles Univ Prague, Dept Phys & Macromol Chem, Hlavova 8, Prague 12843, Czech Republic
关键词
Zeolite; Hydrolysis; Oxygen exchange; ab initio molecular dynamics; Density functional theory; TOTAL-ENERGY CALCULATIONS; ELASTIC BAND METHOD; ULTRASOFT PSEUDOPOTENTIALS; ISOTOPIC EXCHANGE; WATER-MOLECULES; DEALUMINATION; HYDROLYSIS; ZSM-5; BOND; ALUMINUM;
D O I
10.1016/j.micromeso.2024.113007
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Under hydrothermal conditions, zeolite frameworks can readily incorporate oxygen from water, via reactive oxygen exchange. This indicates that zeolite frameworks are highly labile and reactive to water, even when stable against full hydrolytic dissolution. However, the routes by which oxygen is exchanged between water and framework have not been established. In this work, we identify the preferable oxygen exchange mechanisms in the zeolite chabazite (CHA) and compare them to hydrolysis and other framework healing mechanisms under the low water concentrations relevant for steaming conditions. We find that oxygen exchange occurs at defect sites that are created by the first hydrolysis step, both in Al-O and Si-O bonds and is competitive with subsequent hydrolysis and non-exchange framework healing processes. Furthermore, we determine the effect of increased water concentration, finding that for both Al-O and Si-O bonds, the second water can either moderately enhance or hinder both hydrolysis and O-exchange, depending on the geometry of the site. This implies that local water concentration is an important factor with varied effects on zeolite stability as a function of water loading. This work provides feasible routes of oxygen exchange in CHA, which together with hydrolytic pathways, govern the stability and mesoporosity of these important porous materials.
引用
收藏
页数:9
相关论文
共 50 条
  • [1] Zeolite (In)Stability under Aqueous or Steaming Conditions
    Heard, Christopher James
    Grajciar, Lukas
    Uhlik, Filip
    Shamzhy, Mariya
    Opanasenko, Maksym
    Cejka, Jiri
    Nachtigall, Petr
    ADVANCED MATERIALS, 2020, 32 (44)
  • [2] MULTICOMPONENT ION-EXCHANGE EQUILIBRIA IN CHABAZITE ZEOLITE
    ROBINSON, SM
    ARNOLD, WD
    BYERS, CH
    ACS SYMPOSIUM SERIES, 1991, 468 : 133 - 152
  • [3] Acid sites in zeolite Beta: effects of ammonium exchange and steaming
    Kuehl, GH
    Timken, HKC
    MICROPOROUS AND MESOPOROUS MATERIALS, 2000, 35-6 : 521 - 532
  • [4] In situ PXRD studies of Cs-ion exchange in the zeolite chabazite
    Parsons, D.
    Nearchou, A.
    Hriljac, J.
    ACTA CRYSTALLOGRAPHICA A-FOUNDATION AND ADVANCES, 2022, 78 : E256 - E257
  • [5] Influence of steaming and acid-leaching treatments on the hydrophobicity of HBEA zeolite determined under static conditions
    Batonneau-gener, Isabelle
    Yonli, Arsene
    Hazael-pascal, Solange
    Marques, Joao Pedro
    Lodes, Jose Madeira
    Guisnet, Michel
    Ribeiro, Fernando Ramoa
    Mignard, Samuel
    MICROPOROUS AND MESOPOROUS MATERIALS, 2008, 110 (2-3) : 480 - 487
  • [6] In-situ observation of crystal growth of zeolite ZSM-5 under steaming conditions by optical microscopy
    Sano, T.
    Kiyozumi, Y.
    Mizukami, F.
    Iwasaki, A.
    Ito, M.
    Watanabe, M.
    Microporous materials, 1993, 1 (05): : 355 - 357
  • [7] Chabazite and zeolite 13X for CO2 capture under high pressure and moderate temperature conditions
    Hong, Seung-Hwan
    Jang, Min-Seok
    Cho, Sung June
    Ahn, Wha-Seung
    CHEMICAL COMMUNICATIONS, 2014, 50 (38) : 4927 - 4930
  • [8] KINETIC FEATURES OF COTRANSPORT MECHANISMS UNDER ISOTOPE EXCHANGE CONDITIONS
    HOPFER, U
    LIEDTKE, CM
    MEMBRANE BIOCHEMISTRY, 1981, 4 (01): : 11 - 29
  • [9] Formation of a dense non-crystalline layer on the surface of zeolite Y crystals under high-temperature steaming conditions
    Iyoki, Kenta
    Yamaguchi, Yudai
    Endo, Akira
    Yonezawa, Yasuo
    Umeda, Tadashi
    Yamada, Hiroki
    Yanaba, Yutaka
    Yoshikawa, Takeshi
    Ohara, Koji
    Yoshida, Kaname
    Sasaki, Yukichi
    Okubo, Tatsuya
    Wakihara, Toru
    MICROPOROUS AND MESOPOROUS MATERIALS, 2018, 268 : 77 - 83
  • [10] Mechanisms of phase exchange under conditions of boiling on surfaces with porous coatings
    Borzenko, V.I.
    Malyshenko, S.P.
    Teplofizika Vysokikh Temperatur, 2001, 39 (05): : 769 - 777