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[1]Deqing Zhu, Zhengqi Guo*, Feng Zhang, Jian Pan, Yu Wei. Insights on Pretreatment of Indian Hematite Fines in the Grate-Kiln Pelletizing Process: The Choice of Grinding Processes, Journal of Iron and Steel Research, International,2018,25:506-514.
[2]Deqing Zhu, Zhengqi Guo*, Feng Zhang. A study of pre-briquetting granulation sintering of the mixtures with high ratio of Brazilian specularite concentrate, Ironmaking&Steelmaking,2016,43(10): 721-729.
[3]Zhengqi Guo*, Jian Pan, Deqing Zhu*, Feng Zhang. Improving Beneficiation of Copper and Iron from Copper Slag by Modifying the Molten Copper Slag, Metals,2016,6(4): 86.
[4]Zhengqi Guo*, Jian Pan*, Deqing Zhu, Feng Zhang. Synchronous Upgrading Iron and Phosphorus Removal from High Phosphorus Oolitic Hematite Ore by High Temperature Flash Reduction, Metals,2016,6(6): 123.
[5]Zhengqi Guo*, Jian Pan, Deqing Zhu*, Feng Zhang.Mechanism of Mineral Phase Reconstruction for Improving the Beneficiation of Copper and Iron from Copper Slag, JOM,2016,68(9): 2341-2348.
[6]Zhengqi Guo, Deqing Zhu, Jian Pan, Feng Zhang. Improving Separation of Cu-Fe from Copper Slag by Modification of the Molten Slag, 8th International Symposium on High-Temperature Metallurgical Processing.2017.
[7]Deqing Zhu, Feng Zhang, Zhengqi Guo*, Jian Pan, Yu Wei. Grate-kiln pelletization of Indian hematite fines and its industrial practice, International Journal of Minerals Metallurgy and Materials,2017,24(5): 473-485.
[8]Zhengqi Guo*, Deqing Zhu*, Jian Pan, Yao, Weijie, Xu Wuqi, Chen Jinan. Effect of Na2CO3 Addition on Carbothermic Reduction of Copper Smelting Slag to Prepare Crude Fe-Cu Alloy, JOM,2017,69(9): 1688-1695.
[9]Zhengqi Guo*, Jian Pan*, Deqing Zhu, Feng Zhang. Co-reduction of Copper Smelting Slag and Nickel Laterite to Prepare Fe-Ni-Cu Alloy for Weathering Steel, JOM,2018,70(2): 150-154.
[10]Zhengqi Guo, Deqing Zhu*, Jian Pan, Feng Zhang. Industrial Tests to Modify Molten Copper Slag for Improvement of Copper Recovery, JOM,2018,70(4): 533-538.
[11]Zhengqi Guo*, Deqing Zhu*, Jian Pan, Feng Zhang. Mineralogical Characteristics and Preliminary Beneficiation of Nickel Slag from Reduction Roasting-Ammonia Leaching, Minerals,2018,7(6):98.
[12]Zhengqi Guo, Jian Pan*, Deqing Zhu*, Congcong Yang. Mechanism of composite additive in promoting reduction of copper slag to produce direct reduction iron for weathering resistant steel, Powder Technology ,2018,329: 55–64.
[13]Zhengqi Guo, Jian Pan*, Deqing Zhu*, Feng Zhang. Green and efficient utilization of waste ferric-oxide desulfurizer to clean waste copper slag by the smelting reduction-sulfurizing process, Journal of Cleaner Production,2018,199:891-899.
[14]Zhengqi Guo, Deqing Zhu*, Jian Pan*, Feng Zhang. Innovative methodology for comprehensive and harmless utilization of waste copper slag via selective reduction-magnetic separation process, Journal of Cleaner Production,2018,187 :910-922.
[15]Deqing Zhu, Liaoting Pan, Zhengqi Guo*, Jian Pan, Fang Zhang. Utilization of limonitic nickel laterite to produce ferronickel concentrate by the selective reduction-magnetic separation process. Adv. Powder. Techno., 2019, 30(2): 451-460.
[16]Deqing Zhu, Zhengqi Guo*,Jian Pan, Liaoting Pan, Smelting process of direct reduction iron bearing Ni and Cu to prepare Fe-Ni-Cu ternary alloy, Journal of Mining and Metallurgy,2019,55(3):325-330.
[17]Liaoting Pan, Deqing Zhu, Zhengqi Guo *, Jian Pan, Preparation of a Master Fe–Cu Alloy by Smelting of a Cu-Bearing Direct Reduction Iron Powder, Metals,2019,9(6):701-701.
[18]Liwei Li, Jian Pan, Deqing Zhu, Zhengqi Guo *, Jiwei Xu, Jianlei Chou, A novel process to upgrade the copper slag by direct reduction-magnetic separation with the addition of Na2CO3 and CaO, Powder Technology,2019,347:159-169.
[19]Li Siwei, Guo Zhengqi* ,Pan Jian, Zhu Deqing, Dong Tao, Lu Shenghu, Stepwise Utilization Process to Recover Valuable Components from Copper Slag, Minerals,2021,11(2):211-211.
[20]Guo Zhengqi, Zhu Deqing*, Pan Jian, Yang Congcong, Li Siwei*, Dong Tao, Tian Hongyu, Yan Xincheng, Efficient and green treatment of ultrapure magnetite to prepare powder metallurgy iron powders, Powder Technology,2021,378:19-28.
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