[1] |
SONG Baofeng, LI Heyu, WANG Li.
Study on the Performance and Environmental Effect of Alkali-Activated Fly Ash Based Copper
Tailings Filling Paste Test Blocks
[J]. Metal Mine, 2024, 53(4): 262-.
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[2] |
QIAO Longteng, SONG Zhifeng.
Hydration Process and Mechanical Properties of Alkali Excited Fly Ash Based Cementitious Materials
[J]. Metal Mine, 2023, 52(11): 179-185.
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[3] |
SUN Xinrui, WANG Xuezhi, XIN Ming, HE Jingjing.
Preparation of Non-autoclaved Aerated Concrete with Silica-manganese Slag Composite Fly Ash
[J]. Metal Mine, 2023, 52(01): 289-295.
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[4] |
YUAN Xuefeng, WANG Hua.
Study on Mechanical and Durability Properties of Nickel Slag and Fly Ash Based Geopolymer
[J]. Metal Mine, 2022, 51(11): 259-264.
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[5] |
SONG Di, PANG Laixue, YANG Da, LU Mingyang, ZHAO Yongqiang, CHEN Renshan.
Study on Preparation and Properties of Controlled Low Strength Materials with Alkali Activated Red Mud
[J]. Metal Mine, 2022, 51(09): 238-243.
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[6] |
ZHANG Ningning, SHI Zhongyu, HAN Rui, LI Zhen, YU Yuexian, PANG Tian, WU Meiqi, ZHAO Fuqiang.
Research Progress of "Engineering Type" and "Product Type" Resource Utilization of Coal Fly Ash
[J]. Metal Mine, 2022, 51(05): 26-36.
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[7] |
WANG Fengdan, XU Xiaochuan, GU Xiaowei, ZHANG Yannian, ZHANG Xinlong, WANG Qing.
Study on the Compressive Performance of Binary Solid Wastes Concrete Based on Different Mechanical Activation Methods
[J]. Metal Mine, 2022, 51(01): 65-70.
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[8] |
SUN Rui, WANG Dongmin, FANG Zhonghua, WU Yanan, ZHANG Shuangcheng, KANG Lizhong, LV Nan.
Study on the Steel Slag desulfurized Ash Based Solid Waste Cementitious Materials and Its Mortars Interface Transition Zone
[J]. Metal Mine, 2022, 51(01): 41-52.
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[9] |
LIU Wei, CHEN Tiejun, WANG Linjun, BI Sheng, WAN Junying, ZHANG Dawei.
Experimental Study on Preparation of Microcrystalline Cast Stone by High Temperature Melting Modification with Titanium Bearing Blast Furnace Slag
[J]. Metal Mine, 2020, 49(11): 113-117.
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[10] |
ZHANG Guo-Sheng, YANG Xiao-Bing, GUO Bin, CHEN Yan-Ting, TU Guang-Fu.
Study and Development Direction of a New Low Cost Filling Cementitious Material for Mining with Unclassified Tailings Filling Method
[J]. Metal Mine, 2020, 49(07): 1-9.
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[11] |
DI Mu-Nan, ZHU Hua-Jun, LIANG Guang-Wei, WU Qi-Sheng, GAO Sheng, HUA Su-Dong.
Effect of Modified Fly Ash on Mechanical Properties of Nickel Slag-based Geopolymer
[J]. Metal Mine, 2019, 48(09): 199-200.
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[12] |
WANG Yi-Jie, LI Ke-Qing, NI Wen, ZHANG Si-Qi, LI Jia.
The Study on Solidification of Heavy Metal Ions from Garbage Incineration Fly Ash Using Slag-based Cementitious Materials
[J]. Metal Mine, 2019, 48(07): 194-198.
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[13] |
YANG Hao, WANG Zhi-Qiang, ZHAN Bing-Gen.
Modification of Desulfurization Ash and Its Effect on Properties of Slag Based Filling Materials
[J]. Metal Mine, 2018, 47(11): 193-196.
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[14] |
YAN Qi-Hui, NI Wen, GAO Wei, LI Yun-Yun, ZHANG Yu-Ying.
Test of Solidification of Arsenic-containing Tailings Using Blast Furnace Slag-Steel Slag Based Cementitious Material
[J]. Metal Mine, 2018, 47(11): 189-192.
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[15] |
JING Jian-Fa, GUO Yu-Feng, ZHENG Fu-Qiang, XIE Xiao-Lin, YANG Ling-Zhi, CHEN Feng.
Development Status on Comprehensive Utilization of Ti-bearing Blast Furnace Slag
[J]. Metal Mine, 2018, 47(04): 185-191.
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