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唐慧敏

信息来源: 发布日期:2026-09-14

个人概况

               


   名: 唐慧敏

   别:

出生年月: 1994.12

   贯: 安徽省滁州

最高学历: 博士研究生

从事专业:材料科学与工程、冶金工程

   务:无

   称: 讲师

联系方式:

办公打电话:          

手机:

E-mail:tanghuimin@zzu.edu.cn

通讯地址:河南省郑州市科学大道100号郑州大学


个人简历:(只写简历,获奖等放在获奖情况栏里)

1、教育背景

32020-09 2025-06,中南大学,钢铁冶金,博士

22017-09 2020-06,中南大学,钢铁冶金,硕士

32013-09 2017-06,河北地质大学,矿物加工工程,学士

2、工作经历

12026-03 至今 郑州大学,材料科学与工程学院、中原关键金属实验室(郑州大学),讲师

教学情况

参与研究生课程《材料与冶金基础理论概述》、《关键金属与材料》教学

研究领域:(内容简要,不写具体研究项目)

稀有金属提取与分离;功能材料制备;微波冶金;矿产资源综合利用

部分结项及在研项目如下:(代表性,总数不超过10项)

1)国家自然科学基金青年项目,主持,在研

2)全国重点实验室开放课题,主持,在研

获奖情况:

1)中国有色金属工业科学技术奖,一等奖,2025.9/16

部分发表论文:(代表性论文,最多10篇,11篇以后的将会被删减)

[1] Huimin Tang, Zhiwei Peng, Zhizhong Li, Yutian Ma, Jian Zhang, Lei Ye, Liancheng Wang, Mingjun Rao, Guanghui Li, Tao Jiang. Recovery of platinum-group metals from spent catalysts by microwave smelting. Journal of Cleaner Production, 2021, 318:128266.

[2] Huimin Tang, Zhiwei Peng⁕, Foquan Gu, Lei Yang, Weiguang Tian, Qiang Zhong, Mingjun Rao, Guanghui Li, Tao Jiang. Chromium-promoted preparation of forsterite refractory materials from ferronickel slag by microwave sintering. Ceramics International, 2021, 47(8): 10809-10818.

[3] Huimin Tang, Zhiwei Peng⁕, Foquan Gu, Lei Ye, Jian-Yang, Hwang, Mingjun Rao, Guanghui Li, Tao Jiang. Alumina-enhanced valorization of ferronickel slag into refractory materials under microwave irradiation, Ceramics International, 2020, 46 (5): 6828-6837.

[4] Huimin Tang, Zhiwei Peng⁕, Wenxing Shang, Lei Ye, Jun Luo, Mingjun Rao, Guanghui Li. Preparation of refractory materials from electric furnace ferronickel slag and blast furnace ferronickel slag: A comparison. Journal of Environmental Chemical Engineering, 2022, 10(3): 107929.

[5] Huimin Tang, Zhiwei Peng⁕, Ran Tian, Lei Ye, Jian Zhang, Mingjun Rao, Guanghui Li. Recycling of platinum-group metals from spent automotive catalysts by smelting. Journal of Environmental Chemical Engineering, 2022, 10(6): 108709.

[6] Huimin Tang, Zhiwei Peng⁕, Liancheng Wang, Wenxing Shang, Anzulevich, Mingjun Rao, Guanghui Li. Facile synthesis of zinc ferrite as adsorbent from high‑zinc electric arc furnace dust. Powder Technology, 2022, 405: 117479.

[7] Huimin Tang, Zhiwei Peng⁕, Ran Tian, Lei Ye, Jian Zhang, Mingjun Rao, Guanghui Li. Platinum group metals: Demand, supply, application and their recycling from spent automotive catalysts. Journal of Environmental Chemical Engineering, 2023, 11(5): 110237.

[8] Huimin Tang, Ran Tian, Zhiwei Peng⁕, Zexi Gong, Tong Zhang, Guanwen Luo, Qiang Zhong, Mingjun Rao. Co-utilization of electric arc furnace dust and copper slag for preparing zinc ferrite based on microwave roasting. Journal of Environmental Chemical Engineering, 2024, 12(1): 111533.

[9] Huimin Tang, Zhiwei Peng⁕, Tianle Yin, Lingyun Yi, Mingjun Rao. Differential reduction behaviors of nickel and iron components in laterite ore under microwave irradiation. Journal of Environmental Chemical Engineering, 2024, 12(3): 112688.

[10] Zhiwei Peng, Wanlong Fan, Huimin Tang⁕, Chaojun Xiang, Lei Ye, Tianle Yin, Mingjun Rao. Direct conversion of blast furnace ferronickel slag to thermal insulation materials. Construction and Building Materials, 2024, 412: 134499.

部分出版著作:


部分专利:

[1] 一种微波热解废计算机电路板回收有价金属的方法. ZL202011194884.03/15.

[2] 一种微波预煅烧-烧结微波两步法强化复相耐火材料性能的方法. ZL202011483267.23/15.

[3] 一种利用含锌电炉粉尘合成铁酸锌材料的方法. ZL202110320846.33/15.

[4] 一种微波处理低品位红土镍矿制备高品位镍产品的方法. ZL202210003706.83/15.

[5] 一种实现红土镍矿高效选择性冶炼产品的方法. ZL202210241344.63/10.

[6] 一种微波强化预还原-熔炼生产铬镍不锈钢母液的方法. ZL202310046247.63/11.

[7] 一种碳热还原-磁选生产铬镍合金的方法. ZL202310046248.03/11.

[8] 一种利用铜渣和电炉粉尘制备铁酸锌材料的方法. ZL202311436839.53/9.

[9] 一种难熔金属碳氮化物的制备方法. CN202611204687X2/6.


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