Journal of the Chinese Ceramic Society, Volume. 52, Issue 9, 2969(2024)

Construction and Filtration Performance of Mullite Fibrous Porous Ceramics by in-situ Catalysis of Fly Ash

FU Jinxiu1, MA Yuting1, MENG Qingbo2, FU Qianlong1, WANG Juan1, and LI Shuang1、*
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  • 1[in Chinese]
  • 2[in Chinese]
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    References(37)

    [1] [1] ZOU D, FAN Y Q. State-of-the-art developments in fabricating ceramic membranes with low energy consumption[J]. Ceram Int, 2021, 47(11): 14966–14987.

    [2] [2] DONG Y C, WU H, YANG F L, et al. Cost and efficiency perspectives of ceramic membranes for water treatment[J]. Water Res, 2022, 220: 118629.

    [3] [3] FU J, ZHAI F R, LI S. J Chin Ceram Soc, 2022, 50(6): 1572–1581.

    [4] [4] CHANG Q B, WANG Y Q, CERNEAUX S, et al. Preparation of microfiltration membrane supports using coarse alumina grains coated by nano TiO2 as raw materials[J]. J Eur Ceram Soc, 2014, 34(16): 4355–4361.

    [5] [5] LI S H, DU H Y, GUO A R, et al. Preparation of self-reinforcement of porous mullite ceramics through in situ synthesis of mullite whisker in flyash body[J]. Ceram Int, 2012, 38(2): 1027–1032.

    [6] [6] RASHAD M, SABU U, LOGESH G, et al. Mullite phase evolution in clay with hydrated or anhydrous AlF3[J]. J Eur Ceram Soc, 2020, 40(15): 5974–5983.

    [7] [7] ZHU L, DONG Y, HAMPSHIRE S, et al. Waste-to-resource preparation of a porous ceramic membrane support featuring elongated mullite whiskers with enhanced porosity and permeance[J]. J Eur Ceram Soc, 2015, 35(2): 711–721.

    [8] [8] DENG X, WANG J, ZHANG H, et al. J Chin Ceram Soc, 2016, 44(6): 901–907.

    [9] [9] CAO J J, DONG X F, LI L L, et al. Recycling of waste fly ash for production of porous mullite ceramic membrane supports with increased porosity[J]. J Eur Ceram Soc, 2014, 34(13): 3181–3194.

    [10] [10] FU M, LIU J, DONG X F, et al. Waste recycling of coal fly ash for design of highly porous whisker-structured mullite ceramic membranes[J]. J Eur Ceram Soc, 2019, 39(16): 5320–5331.

    [11] [11] CHEN M L, ZHU L, DONG Y C, et al. Waste-to-resource strategy to fabricate highly porous whisker-structured mullite ceramic membrane for simulated oil-in-water emulsion wastewater treatment[J]. ACS Sustain Chem Eng, 2016, 4(4): 2098–2106.

    [12] [12] DONG B B, YANG M Y, WANG F H, et al. Novel fabrication processing of porous alumina/mullite membrane supports by combining direct foaming, sol–gel, and tape-casting methods[J]. Mater Lett, 2019, 240: 140–143.

    [13] [13] ABDULLAYEV A, KLIMM D, KAMUTZKI F, et al. AlF3-assisted flux growth of mullite whiskers and their application in fabrication of porous mullite-alumina monoliths[J]. Open Ceram, 2021, 7: 100145.

    [14] [14] ZHU Z W, WEI Z L, SUN W P, et al. Cost-effective utilization of mineral-based raw materials for preparation of porous mullite ceramic membranes via in situ reaction method[J]. Appl Clay Sci, 2016, 120: 135–141.

    [15] [15] RASHAD M, BALASUBRAMANIAN M. Characteristics of porous mullite developed from clay and AlF3·3H2O[J]. J Eur Ceram Soc, 2018, 38(10): 3673–3680.

    [16] [16] ZHU L, DONG Y C, LI L L, et al. Coal fly ash industrial waste recycling for fabrication of mullite-whisker-structured porous ceramic membrane supports[J]. RSC Adv, 2015, 5(15): 11163–11174.

    [17] [17] CHEN G L, QI H, XING W H, et al. Direct preparation of macroporous mullite supports for membranes by in situ reaction sintering[J]. J Membr Sci, 2008, 318(1/2): 38–44.

    [18] [18] ALTERARY S S, MAREI N H. Fly ash properties, characterization, and applications: A review[J]. J King Saud Univ Sci, 2021, 33(6): 101536.

    [19] [19] YAO Z T, JI X S, SARKER P K, et al. A comprehensive review on the applications of coal fly ash[J]. Earth Sci Rev, 2015, 141: 105–121.

    [20] [20] ISSAOUI M, LIMOUSY L. Low-cost ceramic membranes: Synthesis, classifications, and applications[J]. CR Chim, 2019, 22(2/3): 175–187.

    [21] [21] ABDULLAYEV A, BEKHEET M F, HANAOR D A H, et al. Materials and applications for low-cost ceramic membranes[J]. Membranes, 2019, 9(9): 105.

    [22] [22] LI C X, ZHOU Y, TIAN Y M, et al. Preparation and characterization of mullite whisker reinforced ceramics made from coal fly ash[J]. Ceram Int, 2019, 45(5): 5613–5616.

    [23] [23] DONG Y C, FENG X Y, FENG X F, et al. Preparation of low-cost mullite ceramics from natural bauxite and industrial waste fly ash[J]. J Alloys Compd, 2008, 460(1/2): 599–606.

    [24] [24] DONG Y C, MA L N, TANG C Y, et al. Stable superhydrophobic ceramic-based carbon nanotube composite desalination membranes[J]. Nano Lett, 2018, 18(9): 5514–5521.

    [25] [25] LIU J, DONG Y C, DONG X F, et al. Feasible recycling of industrial waste coal fly ash for preparation of anorthite-cordierite based porous ceramic membrane supports with addition of dolomite[J]. J Eur Ceram Soc, 2016, 36(4): 1059–1071.

    [26] [26] ZOU D, GONG Y, LIU Y, et al. One-step co-sintering of hierarchical mullite whisker/fiber membranes with gradient pore structures for effective filtration of dust-laden gas[J]. J Membrane Sci, 2023, 668: 121143.

    [27] [27] ZHANG J H, WU H D, ZHANG S X, et al. Preparation of mullite whiskers and their enhancement effect on ceramic matrix composites[J]. J Wuhan Univ Technol Mater Sci Ed, 2013, 28(3): 471–475.

    [28] [28] HUA K H, XI X A, XU L F, et al. Effects of AlF3 and MoO3 on properties of Mullite whisker reinforced porous ceramics fabricated from construction waste[J]. Ceram Int, 2016, 42(15): 17179–17184.

    [29] [29] YANG M M, LI J J, MAN Y R, et al. A three-dimensional mullite-whisker network ceramic with ultra-light weight and high-strength prepared by the foam-gelcasting method[J]. J Asian Ceram Soc, 2020, 8(2): 387–395.

    [30] [30] LI S, WEI C C, ZHOU L J, et al. Sol–gel derived zirconia membrane on silicon carbide substrate[J]. J Eur Ceram Soc, 2019, 39(13):3804–3811.

    [31] [31] MONDAL S, DE S. A fouling model for steady state crossflow membrane filtration considering sequential intermediate pore blocking and cake formation[J]. Sep Purif Technol, 2010, 75(2): 222–228.

    [32] [32] ZHANG G M, WANG Y C, FU Z Y, et al. Synthesis of mullite at low temperature and its chemical composition[J]. J Chin Ceram Soc, 2008,(11):1542–1547.

    [33] [33] RASHAD M, LOGESH G, SABU U, et al. A novel monolithic mullite microfiltration membrane for oil-in-water emulsion separation[J]. J Membr Sci, 2021, 620: 118857.

    [34] [34] OHYA H, KIM J J, CHINEN A, et al. Effects of pore size on separation mechanisms of microfiltration of oily water, using porous glass tubular membrane[J]. J Membr Sci, 1998, 145(1): 1–14.

    [35] [35] EOM J H, YEOM H J, KIM Y W, et al. Ceramic membranes prepared from a silicate and clay–mineral mixture for treatment of oily wastewater[J]. Clays Clay Miner, 2015, 63(3): 222–234.

    [36] [36] DAS D, NIJHUMA K, GABRIEL A M, et al. Recycling of coal fly ash for fabrication of elongated mullite rod bonded porous SiC ceramic membrane and its application in filtration[J]. J Eur Ceram Soc, 2020, 40(5): 2163–2172.

    [37] [37] VASANTH D, PUGAZHENTHI G, UPPALURI R. Fabrication and properties of low cost ceramic microfiltration membranes for separation of oil and bacteria from its solution[J]. J Membr Sci, 2011, 379(1/2): 154–163.

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    FU Jinxiu, MA Yuting, MENG Qingbo, FU Qianlong, WANG Juan, LI Shuang. Construction and Filtration Performance of Mullite Fibrous Porous Ceramics by in-situ Catalysis of Fly Ash[J]. Journal of the Chinese Ceramic Society, 2024, 52(9): 2969

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    Paper Information

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    Received: Jan. 21, 2024

    Accepted: --

    Published Online: Nov. 8, 2024

    The Author Email: Shuang LI (lishuang@sdut.edu.cn)

    DOI:10.14062/j.issn.0454-5648.20240052

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