• Bulletin of the Chinese Ceramic Society
  • Vol. 41, Issue 10, 3533 (2022)
BAI Min1, LONG Guangcheng1, XIE Youjun1, WANG Fan1, SHI Yingying1, and ZHOU Tianyang2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: Cite this Article
    BAI Min, LONG Guangcheng, XIE Youjun, WANG Fan, SHI Yingying, ZHOU Tianyang. Properties and Application of Non-Fired Bricks Prepared from Manganese Slag and Recycled Brick Aggregates[J]. Bulletin of the Chinese Ceramic Society, 2022, 41(10): 3533 Copy Citation Text show less
    References

    [2] WANG F, LONG G C, BAI M, et al. Application of electrolytic manganese residues in cement products through pozzolanic activity motivation and calcination[J]. Journal of Cleaner Production, 2022, 338: 130629.

    [6] LI B, SHU J C, WU Y H, et al. Enhanced removal of Mn2+ and NH+4-N in electrolytic manganese residue leachate by electrochemical and modified phosphate ore flotation tailings[J]. Separation and Purification Technology, 2022, 291.

    [7] WANG Y G, GAO S, LIU X M, et al. Preparation of non-sintered permeable bricks using electrolytic manganese residue: environmental and NH3-N recovery benefits[J]. Journal of Hazardous Materials, 2019, 378: 120768.

    [9] QIN J T, WANG J W, WANG H F, et al. Effect of aggregate addition on the properties of unburned brick of electrolytic manganese slag[J]. IOP Conference Series: Earth and Environmental Science, 2017, 94: 012173.

    [11] LAN J R, ZHANG S S, MEI T, et al. Mechanochemical modification of electrolytic manganese residue: ammonium nitrogen recycling, heavy metal solidification, and baking-free brick preparation[J]. Journal of Cleaner Production, 2021, 329: 129727.

    [13] LI C X, ZHANG Q W. Preparation and property of unfired brick using electrolytic manganese residue[J]. Journal of Physics: Conference Series, 2020, 1681(1): 012009.

    [14] ZHOU C B, DU B, WANG N F, et al. Preparation and strength property of autoclaved bricks from electrolytic manganese residue[J]. Journal of Cleaner Production, 2014, 84: 707-714.

    [18] BALASUBRAMANIAM T, KARTHIK P, SURESHKUMAR S, et al. Effectiveness of industrial waste materials used as ingredients in fly ash brick manufacturing[J]. Materials Today: Proceedings, 2021, 45: 7850-7858.

    [19] XU Y T, LIU X M, ZHANG Y L, et al. Investigation on sulfate activation of electrolytic manganese residue on early activity of blast furnace slag in cement-based cementitious material[J]. Construction and Building Materials, 2019, 229: 116831.

    [20] WANG Y G, ZHANG N, REN Y Y, et al. Effect of electrolytic manganese residue in fly ash-based cementitious material: hydration behavior and microstructure[J]. Materials (Basel, Switzerland), 2021, 14(22): 7047.

    [21] WANG F, LONG G C, BAI M, et al. Cleaner and safer disposal of electrolytic manganese residues in cement-based materials using direct electric curing[J]. Journal of Cleaner Production, 2022, 356: 131842.

    BAI Min, LONG Guangcheng, XIE Youjun, WANG Fan, SHI Yingying, ZHOU Tianyang. Properties and Application of Non-Fired Bricks Prepared from Manganese Slag and Recycled Brick Aggregates[J]. Bulletin of the Chinese Ceramic Society, 2022, 41(10): 3533
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