个人概况: |

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姓 名: 黄艳芳 |
性 别: 女 |
出生年月: 1983.11 |
籍 贯: 河南许昌 |
最高学历: 博士研究生 |
从事专业: 关键金属超常富集与高纯制备 |
职 务: 无 |
职 称: 教 授 |
联系方式: |
办公电话: 0371-67785622 |
E-mail:hlele114@163.com |
通讯地址: |
河南省郑州市高新区科学大道100号郑州大学创新楼216 |
个人简历: |
本硕博均就读于中南大学,获工学博士学位。 |
教学情况: |
主讲三门本科生课程《矿物加工学》、《冶金计算机仿真模拟》、《大学生创新实验》 |
研究领域: |
废水净化处理 固废资源材料化 相似金属分离与提取 |
部分结项及在研项目如下: |
(1)国家自然科学基金面上项目,2024.01-2027.12,主持,第1 (2)国家自然科学基金联合基金重点项目,2023.01-2026.12,课题负责人 (3)河南省自然科学基金面上项目,2023.01-2024.12,主持,第1 (4)国家自然科学基金原创探索项目,2022.01-2022.12,参与,第2 (5)国家自然科学基金面上项目,2018.01-2021.12,主持,第1 (6)国家自然科学基金青年基金,2014.01-2016.12,主持,第1 (7)河南省高校科技创新人才计划项目,2020.01-2021.12,主持,第1 (8)河南省高校重点科研项目,2018.01-2019.12,主持,第1 (9)国家自然科学基金青年基金,2014.01-2016.12,参与,第2 |
部分发表论文: |
(1) A feasible strategy for separating oxyanions-loaded microfine Fe-MOF adsorbents from solution by bubble flotation,Chemical Engineering Journal,2023,454:140299. |
(2) Selectively stepwise separation and recovery of molybdenum and vanadium from simulated leaching solution of spent hydrodesulfurization catalysts, JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING, 2022, 10: 108462. |
(3) Adsorption behaviors of strategic W/Mo/Re from wastewaters by novel magnetic ferrite nanoparticles: Adsorption mechanism underlying selective separation, JOURNAL OF HAZARDOUS MATERIALS, 2022. |
(4) Clean and deep separation of molybdenum and rhenium from ultra-low concentration solutions via vapidly stepwise selective coagulation and flocculation precipitation, SEPARATION AND PURIFICATION TECHNOLOGY, 2021. |
(5) Study on the removal of hazardous Congo red from aqueous solutions by chelation flocculation and precipitation flotation process, CHEMOSPHERE, 2021. |
(6) Enhanced recycling and utilization of mullite from coal fly ash with a flotation and metallurgy process. Journal of Cleaner Production, 2018, 178, pp. 804-813. |
(7) A stepwise recovery of metals from hybrid cathodes of spent Li-ion batteries with leaching-flotation-precipitation process. Journal of Power Sources, 2016, 325: 555-564. |
(8) A facile disposal of Bayer red mud based on selective flocculation desliming with organic humics. Journal of Hazardous Materials, 2016, 301: 46–55. |
(9) A perspective of stepwise utilisation of Bayer red mud: Step two—Extracting and recovering Ti from Ti-enriched tailing with acid leaching and precipitate flotation. Journal of Hazardous Materials, 2016, 307: 318–327. |
(10) Exploring on aqueous chemistry of micron-sized lignite particles in lignite–water slurry: Effects of pH on humics dissolution. Fuel,2016, 181: 94–101. |