呂晉芳信息來源: 暫無 發布日期:2020-04-23 瀏覽次數:更新日期:2020.4.19
2005.09 -2009.07 昆明理工大學礦物加工工程本科AG8旗舰厅,獲學士學位AG8旗舰厅; 2009.09 -2011.12 昆明理工大學礦物加工工程碩士研究生,獲碩士學位; 2013.09-2017.12 昆明理工大學礦物加工工程博士研究生,獲博士學位; 2012.02-2016.12 昆明冶金研究院AG8旗舰厅,選礦工程師AG8旗舰厅; 2018.08 -至今 昆明理工大學礦物加工工程,講師AG8旗舰厅。
(1)國家自然科學基金青年項目,含鉻廢水中鋅鎳離子對鉻鐵礦成礦行為及磁學性能影響的機理研究,2020.01-2022.12,主持; (2)云南省科技計劃基礎研究青年項目,采礦剝離廢石同步吸附選礦廢水中砷離子和氟離子的應用基礎研究,2020.06-2023.05,主持; (3)云南省教育廳科學研究基金項目AG8旗舰厅,基于鐵氧體法深度凈化電鍍廢水及綜合回收有價金屬的基礎理論研究,2019.06-2021.05AG8旗舰厅,主持; (4)國家自然科學基金地區項目,基于多礦相氧化銅礦物晶體化學可控制備高效雜化捕收劑及其機理研究AG8旗舰厅,2020.01-2023.12AG8旗舰厅,參與; (5)國家自然科學基金地區項目,黏土釩礦不磨礦不焙燒直接常壓活化酸浸提釩的機制研究,2020.01-2023.12,參與; (6)國家自然科學基金地區項目AG8旗舰厅AG8旗舰厅,有色金屬復雜礦強化分選過程的交互作用理論與調控機制AG8旗舰厅AG8旗舰厅,2018.01-2021.12AG8旗舰厅,參與; (7)國家自然科學基金青年項目AG8旗舰厅,碳-硫混合氣氛強化氧化鋅硫化熱化學機理研究,2017.01-2019.12,參與; (8)國家自然科學基金面上項目AG8旗舰厅,復雜多金屬礦中銦、鍺AG8旗舰厅、銀載體礦物選擇性浮選的理論與應用,2012.01-2015.12AG8旗舰厅,參與AG8旗舰厅。
(1)一種含鉻混合廢水梯級凈化回收有價金屬的方法,發明專利,已授權AG8旗舰厅,授權號ZL201611102833.4; (2)一種回收氧化型脈錫礦泥尾礦中細粒和微細粒錫石的方法,發明專利,已授權,授權號ZL201310022911.X; (3)一種難處理氧化鋅物料熱化學表面改性-浮選回收鉛鋅方法AG8旗舰厅,發明專利,已授權,授權號ZL201611141161.8; (4)一種從電爐煉鋅爐底渣回收鐵和富集銅錫的方法,發明專利,已授權,授權號ZL 201710793712.7; (5)一種含有鈦鐵礦和鉻鐵礦礦石的分離方法,發明專利,已授權AG8旗舰厅,授權號ZL201310286228.7。
(1)Lv Jin-fang, Zhang Han-ping, Tong Xiong, et al. Innovative methodology for recovering titanium and chromium from a raw ilmenite concentrate by magnetic separation after modifying magnetic properties [J]. Journal of hazardous materials, 2017, 325: 251-260. (2)Lv Jin-fang, Tong Xiong, Zheng Yong-xing, et al. Study on the surface sulfidization behavior of smithsonite at high temperature [J]. Applied Surface Science, 2018, 437: 13-18. (3)Tong X, Lv Jin-fang*, Zheng Yong-xing, et al. DFT study on the interaction between S2and zincite (1010) surface [J]. Journal of the Taiwan Institute of Chemical Engineers, 2018,88: 18-24. (4)Lv Jin-fang, Zheng Yong-xing, Tong Xiong, et al. Mineralogy, physical characterization and magnetic separation performance of a raw ilmenite concentrate for its purification [J]. Russian Journal of Non-Ferrous Metals, 2017, 58(2): 101-108. (5)Lv Jin-fang; Xiong Tong; Yong-xing Zheng, et al., Reduction of Cr(Ⅵ) with a relative high concentration using different kinds of zero-valent iron powder: Focusing on the effect of carbon content and structure on the reducibility[J], Journal of central south university, 2018, 25,(9): 2119-2130. (6)Lv Jin-fang, Chuan-lin Fan, Xiong Tong, et al., Microcosmic sulfidization mechanism of S2 on the massicot (100) surface by DFT study [J], Applied Surface Science, 2019, 470: 135-142. (7)Lv Jin-fang, Xiong Tong, Xian Xie, et al., Kinetics of hexavalent chromium reduction by gray cast iron powder[J], Canadian Metallurgical Quarterly, 2019, 58(3): 262-271. (8)Lv Jin-fang, Xiong Tong, Yong-xing Zheng, et al., Removal behavior of Cu (Ⅱ) during Cr (VI) reduction by cast iron powder in absence and presence of ultrasound[J], Separation Science and Technology, 2019, 54(18): 3164-3173. |