• Bulletin of the Chinese Ceramic Society
  • Vol. 42, Issue 11, 4072 (2023)
WU Jianxun1,*, JIANG Jian1, YANG Yonghao2, KONG Yu1..., ZHAN Xinyuan3, LUO Zhihao2 and CHEN Liang1|Show fewer author(s)
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  • 1[in Chinese]
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    DOI: Cite this Article
    WU Jianxun, JIANG Jian, YANG Yonghao, KONG Yu, ZHAN Xinyuan, LUO Zhihao, CHEN Liang. Mechanical Property of Bottom Ash-Tuff Based Geopolymer[J]. Bulletin of the Chinese Ceramic Society, 2023, 42(11): 4072 Copy Citation Text show less
    References

    [2] ZHANG Z GYANG FLIU J Cet al. Eco-friendly high strengthhigh ductility engineered cementitious composites (ECC) with substitution of fly ash by rice husk ash[J]. Cement and Concrete Research2020137: 106200.

    [5] WANG PHU Y ACHENG H F. Municipal solid waste (MSW) incineration fly ash as an important source of heavy metal pollution in China[J]. Environmental Pollution2019252: 461-475.

    [6] CHANGHO CSOOKOO L. Comparative study for the stabilization of heavy metals in the solid waste incineration ashes[J]. Proceeding of ICIPEC20029: 421-429.

    [13] NATH PSARKER P K. Effect of GGBFS on settingworkability and early strength properties of fly ash geopolymer concrete cured in ambient condition[J]. Construction and Building Materials201466: 163-171.

    [15] SINGH SASWATH M URANGANATH R V. Effect of mechanical activation of red mud on the strength of geopolymer binder[J]. Construction and Building Materials2018177: 91-101.

    [17] THAKUR A KPAPPU ATHAKUR V K. Synthesis and characterization of new class of geopolymer hybrid composite materials from industrial wastes[J]. Journal of Cleaner Production2019230: 11-20.

    [21] BOUBON RNELAYAH JTARDIF Set al. Corrosion products formed on MgZr alloy embedded in geopolymer used as conditioning matrix for nuclear waste: a proposition of interconnected processes[J]. Materials202114(8): 2017.

    [22] SAMUEL RPUPPALA A JBANERJEE Aet al. Improvement of strength and volume-change properties of expansive clays with geopolymer treatment[J]. Transportation Research Record: Journal of the Transportation Research Board20212675(9): 308-320.

    [26] ZHAN X YKIRKELUND G M. Electrodialytic remediation of municipal solid waste incineration fly ash as pre-treatment before geopolymerisation with coal fly ash[J]. Journal of Hazardous Materials2021412: 125220.

    [28] ZHU X YLI W KDU Zet al. Recycling and utilization assessment of steel slag in metakaolin based geopolymer from steel slag by-product to green geopolymer[J]. Construction and Building Materials2021305: 124654.

    [29] LAZORENKO GKASPRZHITSKII ASHAIKH Fet al. Utilization potential of mine tailings in geopolymers: physicochemical and environmental aspects[J]. Process Safety and Environmental Protection2021147: 559-577.

    [30] ZHAN X YWANG L AHU C Cet al. Co-disposal of MSWI fly ash and electrolytic manganese residue based on geopolymeric system[J]. Waste Management201882: 62-70.

    [31] WAN QRAO FSONG S Xet al. Geopolymerization reactionmicrostructure and simulation of metakaolin-based geopolymers at extended Si/Al ratios[J]. Cement and Concrete Composites201779: 45-52.

    WU Jianxun, JIANG Jian, YANG Yonghao, KONG Yu, ZHAN Xinyuan, LUO Zhihao, CHEN Liang. Mechanical Property of Bottom Ash-Tuff Based Geopolymer[J]. Bulletin of the Chinese Ceramic Society, 2023, 42(11): 4072
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