Bulletin of the Chinese Ceramic Society, Volume. 41, Issue 9, 3121(2022)
Research Progress on Preparation of Cement and Concrete from Gold Tailings
[2] [2] BARCELOS D A, PONTES F V M, DA SILVA F A N G, et al. Gold mining tailing: environmental availability of metals and human health risk assessment[J]. Journal of Hazardous Materials, 2020, 397: 122721.
[3] [3] RITCEY G M. Tailings management in gold plants[J]. Hydrometallurgy, 2005, 78(1/2): 3-20.
[4] [4] KIM Y, KIM M, SOHN J, et al. Applicability of gold tailings, waste limestone, red mud, and ferronickel slag for producing glass fibers[J]. Journal of Cleaner Production, 2018, 203: 957-965.
[5] [5] BAZIZ A, BOUZIDI N, ELICHE-QUESADA D. Recycling of gold mining reject from Amesmessa mine as ceramic raw material: microstructure and mechanical properties[J]. Environmental Science and Pollution Research International, 2021, 28(34): 46738-46747.
[6] [6] MASHIFANA T, SITHOLE T. Clean production of sustainable backfill material from waste gold tailings and slag[J]. Journal of Cleaner Production, 2021, 308: 127357.
[7] [7] FALL M, CLESTIN J C, POKHAREL M, et al. A contribution to understanding the effects of curing temperature on the mechanical properties of mine cemented tailings backfill[J]. Engineering Geology, 2010, 114(3/4): 397-413.
[8] [8] FALAGN C, GRAIL B M, JOHNSON D B. New approaches for extracting and recovering metals from mine tailings[J]. Minerals Engineering, 2017, 106: 71-78.
[17] [17] DENG D Q, LIU L, YAO Z L, et al. A practice of ultra-fine tailings disposal as filling material in a gold mine[J]. Journal of Environmental Management, 2017, 196: 100-109.
[18] [18] KIVENTER J, PIEKKARI K, ISTERI V, et al. Solidification/stabilization of gold mine tailings using calcium sulfoaluminate-belite cement[J]. Journal of Cleaner Production, 2019, 239: 118008.
[19] [19] YANG F H, LIANG X Y, ZHU Y, et al. Preparation of environmentally friendly and energy-saving autoclaved aerated concrete using gold tailings[J]. Journal of New Materials for Electrochemical Systems, 2019, 22(3): 159-164.
[24] [24] INCE C. Reusing gold-mine tailings in cement mortars: mechanical properties and socio-economic developments for the Lefke-Xeros area of Cyprus[J]. Journal of Cleaner Production, 2019, 238: 117871.
[31] [31] LI J J, HITCH M. Structural and chemical changes in mine waste mechanically-activated in various milling environments[J]. Powder Technology, 2017, 308: 13-19.
[32] [32] CHEN B J, PANG L F, ZHAO Y M, et al. Effect of activated gold tailings replacing fly ash on the properties of cement-based grouting material[J]. Journal of Materials in Civil Engineering, 2022, 34(5): 4022066.
[33] [33] ALLAHVERDI A, MALEKI A, MAHINROOSTA M. Chemical activation of slag-blended Portland cement[J]. Journal of Building Engineering, 2018, 18: 76-83.
[34] [34] LI D X, SONG X Y, GONG C C, et al. Research on cementitious behavior and mechanism of pozzolanic cement with coal gangue[J]. Cement and Concrete Research, 2006, 36(9): 1752-1759.
[35] [35] POURGHAHRAMANI P, PLSON B, FORSSBERG E. Multivariate projection and analysis of microstructural characteristics of mechanically activated hematite in different grinding mills[J]. International Journal of Mineral Processing, 2008, 87(3/4): 73-82.
[36] [36] YAO G, WANG Q, SU Y W, et al. Mechanical activation as an innovative approach for the preparation of pozzolan from iron ore tailings[J]. Minerals Engineering, 2020, 145: 106068.
[42] [42] WANG Q, LI J J, ZHU X N, et al. Approach to the management of gold ore tailings via its application in cement production[J]. Journal of Cleaner Production, 2020, 269: 122303.
[45] [45] VIGNESH S, REDDY B M R, NACHIAR S S, et al. Effect of partial replacement of natural sand with gold mine tailings on some properties of masonry mortars[J]. International Journal of Engineering Research, 2015, 41(4): 583-585.
[46] [46] AHMED T, ELCHALAKANI M, BASARIR H, et al. Development of ECO-UHPC utilizing gold mine tailings as quartz sand alternative[J]. Cleaner Engineering and Technology, 2021, 4: 100176.
[47] [47] WANG J N, YU R, XU W Y, et al. A novel design of low carbon footprint ultra-high performance concrete (UHPC) based on full scale recycling of gold tailings[J]. Construction and Building Materials, 2021, 304: 124664.
[48] [48] YAO G, LIU Q, WANG J X, et al. Effect of mechanical grinding on pozzolanic activity and hydration properties of siliceous gold ore tailings[J]. Journal of Cleaner Production, 2019, 217: 12-21.
[49] [49] FRANCO DE CARVALHO J M, DE MELO T V, FONTES W C, et al. More eco-efficient concrete: an approach on optimization in the production and use of waste-based supplementary cementing materials[J]. Construction and Building Materials, 2019, 206: 397-409.
[50] [50] CHENG Y H, HUANG F, QI S S, et al. Durability of concrete incorporated with siliceous iron tailings[J]. Construction and Building Materials, 2020, 242: 118147.
[51] [51] ESMAEILI J, ASLANI H, ONUAGULUCHI O. Reuse potentials of copper mine tailings in mortar and concrete composites[J]. Journal of Materials in Civil Engineering, 2020, 32(5): 04020084.
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ZHANG Xiao, WANG Huangqi, WANG Dongmin. Research Progress on Preparation of Cement and Concrete from Gold Tailings[J]. Bulletin of the Chinese Ceramic Society, 2022, 41(9): 3121
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Received: May. 20, 2022
Accepted: --
Published Online: Oct. 16, 2022
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CSTR:32186.14.