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ResumeWang Hao, School of Geosciences and resources, Chang'an University,lecturer, Social positionResearchComprehensive utilization of mineral materials and resources Open CourseMagnetoelectric beneficiation, chemical beneficiation, etc Research project1. Basic scientific research business expense project of Central University, 300102278109, preparation of graphene composite catalytic material and its organic matter catalytic degradation performance, 2018 / 01-2019 / 12, 50000 yuan, under research, presided over. 2. Youth fund project of National Natural Science Foundation of China, 51804037, preparation of graphene adsorption / catalysis composite material and purification performance and mechanism of fluorine-containing beneficiation wastewater, 2019 / 01-2021 / 12, 260000 yuan, under research and presided over. Thesis(1)Hao Wang,Qiming Feng,Kun Liu*,Zishun Li,Kesheng Zuo, Xuekun Tang, A novel technique for microcrystalline graphite beneficiation based on alkali-acid leaching process, Separation Science and Technology, 2018, https://doi.org/10.1080/01496395.2017.1405986 (2) Hao Wang,Qiming Feng,Kun Liu*, Zishun Li,Xuekun Tang,Guangze Li, Highly efficient fluoride adsorption from aqueous solution by nepheline prepared from kaolinite through alkali-hydrothermal process, Journal of Environmental Management, 2017, 196 :72-79 (3)Hao Wang,Qiming Feng,Xuekun Tang,Kesheng Zuo,Kun Liu*, Insights into Alkali-Acid Leaching of Sericite: Dissolution Behavior and Mechanism, Minerals, 2017, 7 (10):196 (4) Hao Wang,Qiming Feng,Kun Liu*, The dissolution behavior and mechanism of kaolinite in alkali-acid leaching process, Apply Clay Science, 2016, 132-133:273-280 (5)Hao Wang, Qiming Feng, Xuekun Tang, Kun Liu*, Preparation of high-purity graphite from a fine microcrystalline graphite concentrate: Effect of alkali roasting pre-treatment and acid leaching process, Separation Science and Technology, 2016, 51(14): 2465-2472 (6)Xuekun Tang,Qiming Feng,Kun Liu*, Zishun Li,Hao Wang, Fabrication of magnetic Fe3O4/silica nanofiber composites with enhanced Fenton-like catalytic performance for Rhodamine B degradation, Journal of Materials Science, 2018, 53(1):369-384 Technological AchievementsHonor RewardWork experience2017/02- to date, Chang'an University, Department of mineral resources |