[1] |
HAN Housheng, LI Yubiao, PAN Mengzhen, CHEN Kun, ZHANG Yuan, GU Yunxiang, XUE Lutao, JIAN Shouwei.
Experimental Study on Preparation of Lightweight Foamed Concrete by Low Silicon Iron Tailings
[J]. Metal Mine, 2024, 53(4): 269-.
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[2] |
HUANG Xuquan, WU Qinnan, ZHAO Xiaorong, DONG Jiangfeng, LI Qian.
Study on Mix Proportion Design and Performance of High Volume Phosphogypsum Road Base Material
[J]. Metal Mine, 2024, 53(3): 296-.
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[3] |
SHI Chunyu, YANG Siyuan, ZHOU Junwei, REN Liuyi, NI Gaoguo, LIU Cheng, BAO Shenxu.
Study on the Flotation Purification and Whitening Test of a Low-grade Phosphogypsum in Hubei Province
[J]. Metal Mine, 2024, 53(3): 117-.
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[4] |
ZHANG Weizhong, ZHOU Kai, KONG Dehua, WU Qianqian, KANG Qinrong, PAN Deng.
Study on Early Mechanical Strength Characteristics and Toughening Mechanism of
Polypropylene Fiber-Phosphogypsum Cement
[J]. Metal Mine, 2024, 53(2): 97-.
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[5] |
XIA Xue, ZHOU Lei, YANG Guohui, LIAO Zhihui, NIE Xiaoqin, DONG Faqin.
Adsorption Behavior and Mechanism of Phosphogypsum / Sulfur-fixing Ash Composite for Uranium (Ⅵ)
[J]. Metal Mine, 2023, 52(11): 81-90.
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[6] |
CHEN Yueyu, GUO Haiyan.
Effect of Iron Tailings Content on the Anti-deterioration Performance of Concrete under the Combined Action of Freeze-thaw Cycles and Sulfate Corrosion
[J]. Metal Mine, 2023, 52(07): 296-300.
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[7] |
LIU Dongmei, WANG Weiqi, PENG Yanzhou, SHI Hongyu, LI Dongsheng, WANG Bin.
Study on the Strength and Hydration Characteristics of Phosphogypsum-phosphorus Slag Composite Cementitious Material
[J]. Metal Mine, 2022, 51(09): 230-237.
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[8] |
PAN Jingwen, XIA Ling, SONG Shaoxian, ZHAO Yunliang, LI Hongqiang, ZHU Jiang.
Study on the Preparation of Recycled Aggregate Using Fine Iron Tailings
[J]. Metal Mine, 2022, 51(05): 232-236.
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[9] |
CHENG Heping, LU Lu.
Research on Road Usage Characteristics of Iron Tailings Asphalt Concrete Mixture
[J]. Metal Mine, 2022, 51(03): 232-236.
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[10] |
YANG Daokui, ZHANG Yannian, GU Xiaowei, CHEN Hao, HAN Dong, JIA Zitao.
Study on Compressive Strength of Concrete in Iron TailingsPhosphate SlagDesulfurization Ash Ternary Solid Waste System
[J]. Metal Mine, 2022, 51(01): 83-88.
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[11] |
YANG Bohan, ZHANG Yannian, GU Xiaowei, CUI Changqing, HAN Dong, YAN Fei.
Study on Compressive Strength and Microstructure of Multicomponent Solid Waste Concrete with Containing Iron Tailings as the Main Material
[J]. Metal Mine, 2022, 51(01): 76-82.
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[12] |
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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[13] |
WANG Ying, GU Xiaowei, ZHANG Yannian, YIN Shiqi, XU Xiaochuan, WANG Qing.
Analysis of Compressive Strength and Microstructure of Iron Tailings Sand Cement Mortar
[J]. Metal Mine, 2022, 51(01): 60-64.
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[14] |
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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[15] |
GU Xiaowei, WANG Shenyu, LIU Jianping, NING Baokuan, LIU Peng, ZHANG Yannian.
Preparation of Autoclaved Aerated Lightweight Concrete with Highsilicon Iron Tailings and Its Properties Study
[J]. Metal Mine, 2022, 51(01): 35-40.
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