Bulletin of the Chinese Ceramic Society, Volume. 43, Issue 9, 3252(2024)
Study on Accelerated Weathering System of Coal Gangue Aggregate
[1] [1] JABOAN'G1SKA B, KITYK A V, BUSCH M, et al. The structural and surface properties of natural and modified coal gangue[J]. Journal of Environmental Management, 2017, 190: 80-90.
[4] [4] GAO W C, ZHANG X L, DU G Z, et al. Shrinkage model for concrete incorporating coal gangue coarse and fine aggregates[J]. Journal of Building Engineering, 2023, 80: 107865.
[5] [5] QUEROL X, IZQUIERDO M, MONFORT E, et al. Environmental characterization of burnt coal gangue banks at Yangquan, Shanxi Province, China[J]. International Journal of Coal Geology, 2008, 75(2): 93-104.
[6] [6] STRACHER G B, TAYLOR T P. Coal fires burning out of control around the world: thermodynamic recipe for environmental catastrophe[J]. International Journal of Coal Geology, 2004, 59(1-2): 7-17.
[7] [7] WU, YU Y G, HU X Y, et al. Experimental study of the effects of stacking modes on the spontaneous combustion of coal gangue[J]. Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, 2019, 123: 39-47.
[8] [8] YANG F L, YUN Y, LI G K, et al. Heavy metals in soil from gangue stacking areas increases children health risk and causes developmental neurotoxicity in zebrafish larvae[J]. The Science of the Total Environment, 2021, 794: 148629.
[9] [9] TRECHERA P, MORENO T, CRDOBA P, et al. Comprehensive evaluation of potential coal mine dust emissions in an open-pit coal mine in Northwest China[J]. International Journal of Coal Geology, 2021, 235: 103677.
[10] [10] QIN L, GAO X. Properties of coal gangue-Portland cement mixture with carbonation[J]. Fuel, 2019, 245(1): 1-12.
[14] [14] ZHANG Y N, MA G D, LIU Y. Mix design for thermal insulation concrete using waste coal gangue as aggregate[J]. Materials Research Innovations, 2015, 19(S5): S5-878-S5-884.
[15] [15] ZHOU M L, DOU Y W, ZHANG Y Z, et al. Effects of the variety and content of coal gangue coarse aggregate on the mechanical properties of concrete[J]. Construction and Building Materials, 2019, 220(30): 386-395.
[16] [16] GARCI A R, FRIAS M, ARRIBAS I, et al. Freeze-thaw effect on the durability of binary cements containing activated coal-mining waste[J]. Construction and Building Materials, 2018, 190(30): 140-149.
[17] [17] WANG Z S, ZHAO N. Properties of steel fiber reinforced coal gangue coarse aggregate concrete[J]. Wuhan University Journal of Natural Sciences, 2014, 19(3): 262-268.
[19] [19] WANG J M, QIN Q, HU S J, et al. A concrete material with waste coal gangue and fly ash used for farmland drainage in high groundwater level areas[J]. Journal of Cleaner Production, 2016, 112: 631-638.
[21] [21] MINYARD M L, BRUNS M A, LIERMANN L J, et al. Bacterial associations with weathering minerals at the regolith-bedrock interface, luquillo experimental forest, Puerto Rico[J]. Geomicrobiology Journal, 2012, 29(9): 792-803.
[22] [22] FANTONG W, KAMTCHUENG B T, YAMAGUCHI K, et al. Characteristics of chemical weathering and water-rock interaction in Lake Nyos Dam (Cameroon): implications for vulnerability to failure and re-enforcement[J]. Journal of African Earth Sciences, 2015, 101: 42-55.
[23] [23] PINYOL N, VAUNAT J, ALONSO E E. A constitutive model for soft clayey rocks that includes weathering effects[J]. Géotechnique, 2007, 57(2): 137-151.
[37] [37] SHI Z S, ZHAO H W, LIANG B, et al. Simulation test study on filling flow law of gangue slurry in goaf[J]. Scientific Reports, 2023, 13: 19117.
[38] [38] DU T, WANG D M, BAI Y J, et al. Optimizing the formulation of coal gangue planting substrate using wastes: the sustainability of coal mine ecological restoration[J]. Ecological Engineering, 2020, 143: 105669.
[39] [39] SUN J B, LIU S K, MA Z G, et al. Mechanical properties prediction of lightweight coal gangue shotcrete[J]. Journal of Building Engineering, 2023, 80: 108088.
[42] [42] LI M, LI A L, ZHANG J X, et al. Effects of particle sizes on compressive deformation and particle breakage of gangue used for coal mine goaf backfill[J]. Powder Technology, 2020, 360: 493-502.
[45] [45] XU Y H, WU H J, DONG Z F, et al. Life cycle energy use efficiency and greenhouse gas emissions of circulating fluidized bed coal-fired plant with coal gangue and coal co-combustion[J]. Environment, Development and Sustainability, 2023: 1-23.
[47] [47] LI Y F, LIU S H, GUAN X M. Multitechnique investigation of concrete with coal gangue[J]. Construction and Building Materials, 2021, 301(1): 124114.
[49] [49] KARIMAEI M, DABBAGHI F, SADEGHI-NIK A, et al. Mechanical performance of green concrete produced with untreated coal waste aggregates[J]. Construction and Building Materials, 2020, 233: 117264.
[52] [52] HUANG M, DUAN J M, WANG J K. Research on basic mechanical properties and fracture damage of coal gangue concrete subjected to freeze-thaw cycles[J]. Advances in Materials Science and Engineering, 2021, 2021: 6701628.
[53] [53] ZHAO H, WANG S F, WANG R, et al. Utilization of raw coal gangue as coarse aggregates in pavement concrete[J]. Construction and Building Materials, 2023, 378(8): 131062.
[54] [54] HUO Y L, HUANG J G, LU D, et al. Durability of alkali-activated slag concrete incorporating silica fume and rice husk ash[J]. Journal of Building Engineering, 2023, 78: 107637.
[55] [55] MYADARABOINA H, LAW D, PATANIKUNI I. Very high volume fly ash concrete utilising microash and hydrated lime, with silica fume[J]. Advances in Cement Research, 2022, 34(9): 388-398.
[56] [56] HAN X, FENG J J, WANG B M. Relationship between fractal feature and compressive strength of fly ash-cement composite cementitious materials[J]. Cement and Concrete Composites, 2023, 139: 105052.
[57] [57] JI X, CHAN S Y N, FENG N. Fractal model for simulating the space-filling process of cement hydrates and fractal dimensions of pore structure of cement-based materials[J]. Cement and Concrete Research, 1997, 27(11): 1691-1699.
[58] [58] PFEIFER P, AVNIR D. Chemistry in noninteger dimensions between two and three. I. Fractal theory of heterogeneous surfaces[J]. The Journal of Chemical Physics, 1983, 79(7): 3558-3565.
[59] [59] NIU D, LI D, FU Q. A 3D-IFU model for characterising the pore structure of hybrid fibre-reinforced concrete[J]. Materials & Design, 2020, 188: 108473.
[62] [62] DONG E L, YU R, FAN D Q, et al. Absorption-desorption process of internal curing water in ultra-high performance concrete (UHPC) incorporating pumice: from relaxation theory to dynamic migration model[J]. Cement and Concrete Composites, 2022, 133: 104659.
[63] [63] FRIEDEMANN K, STALLMACH F, KRGER J. NMR diffusion and relaxation studies during cement hydration: a non-destructive approach for clarification of the mechanism of internal post curing of cementitious materials[J]. Cement and Concrete Research, 2006, 36(5): 817-826.
[64] [64] ZHANG L C, ZHOU J K. Fractal characteristics of pore structure of hardened cement paste prepared by pressurized compact molding[J]. Construction and Building Materials, 2020, 259: 119856.
[65] [65] JIN S S, ZHANG J X, HAN S. Fractal analysis of relation between strength and pore structure of hardened mortar[J]. Construction and Building Materials, 2017, 135: 1-7.
[67] [67] ZHAO Y, LIAN S L, BI J, et al. Study on freezing-thawing damage mechanism and evolution model of concrete[J]. Theoretical and Applied Fracture Mechanics, 2022, 121: 103439.
Get Citation
Copy Citation Text
GONG Tiantian, CHEN Xiao, ZHANG Yanjun, CHEN Zhijun, WANG Wenjun, ZHOU Mingkai. Study on Accelerated Weathering System of Coal Gangue Aggregate[J]. Bulletin of the Chinese Ceramic Society, 2024, 43(9): 3252
Received: Jan. 23, 2024
Accepted: --
Published Online: Nov. 5, 2024
The Author Email: Xiao CHEN (chenxiao1981@whut.edu.cn)
CSTR:32186.14.