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研究人员
唐洁 副教授
时间:2026-04-24
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字号: 默认 超大
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唐洁,汉族,199003生,副教授,工学博士,硕士生导师

l 联系方式Tangjie@lut.edu.cn

l 研究方向

1黏土矿物基功能吸附材料的设计与性能调控;

2、黏土矿物基储能材料的设计与储能机制研究;

3、废弃吸附剂综合利用研究

l 教育经历

20159-20186, 中国科学院兰州化学物理研究所材料学博士

20129-20156, 中国科学院兰州化学物理研究所材料工程硕士

20089- 20126, 兰州理工大学高分子材料与工程学士

l 工作经历

20231-至今, 兰州理工大学, 材料科学与工程学院, 副教授

20191- 202212, 兰州理工大学, 材料科学与工程学院, 讲师

l 科学研究

主要从事有关黏土矿物基功能复合材料的研究工作。针对凹凸棒石棒晶束解离纳米化、功能改性、结构调控和纳米复合等方面开展了系列应用研究工作。从环境保护和节约资源的角度出发,设计和制备了系列新型环境友好的凹凸棒石/碳复合材料,并将其应用于环境及能源领域。目前已在Journal of Energy Storage, Chemical Engineering Journal, Journal of Cleaner Production, Applied Clay Science, ACS Sustainable Chemistry & Engineering, Langmuir国内外知名学术刊物上发表学术论文20余篇,授权专利4件,撰写专著1部,参与国家自然科学基金7项。

  • 代表性成果

    主持或参加科研项目

    1)甘肃省教育厅, 青年博士支持项目, 2023QB-032, 废弃凹凸棒石吸附剂合成镍钴双氢氧化物基电极材料的性能调控与构效关系研究, 2023-09 2025-08, 8万元, 结题, 主持

    2)甘肃省科技厅, 青年科技基金, 23JRRA823, 基于废弃凹凸棒石再利用的镍钴双氢氧化物基电极材料的可控制备与构效调控, 2023-07 2025-06, 4万元, 结题, 主持

    3国家自然科学基金委员会, 地区科学基金项目,22066015,示踪纳米塑料的可控设计及物化性质对其体内命运的影响2021.01-2024.1240万元,结题,参与

    4)国家青年科学基金项目,21706267,中低内相乳液模板法多孔吸附剂的可控合成及其对铷、铯吸/脱附性能研究, 2018.1-2020.1226万元,在研,参加

    5)国家自然科学基金,41601303,凹凸棒石/生物炭及其老化对沙化土壤水氮运移行为的影响机理,2017.01-2019.1220万元,在研,参加

期刊论文

1Tang Jie; Chen Li; Kang Xiaoya; Liu Guang; Peng Yuanyou; Li Hangxuan; Ran Fen; Environment-tolerant montmorillonite-based hydrogel electrolyte for flexible all-in-one supercapacitor, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2025, 727: 138410.

2Wang Yumeng; Tang Jie; Sun Zhijiang; Kang Xiaoya; Peng Yuanyou; Ran Fen; Upcycling spent bleaching earth-derived attapulgite@carbon from heavy metal adsorption to supercapacitor electrodes, Journal of Energy Storage, 2025, 140: 118996.

3Tang Jie; Wang Yumeng; Peng Yuanyou; Sun Zhijiang; Liu Rui; Ran Fen; Waste Adsorbent-Derived Interconnected Hierarchical Attapulgite@Carbon/NiCo Layered Double Hydroxide Nanocomposites for Advanced Supercapacitors, Langmuir, 2023, 39: 2739-2750.

4Tang Jie; Wan Xiana; Zhang Long; A sustainable printed circuit board derived hierarchically porous carbon/polyaniline composites for supercapacitors, Ceramics International, 2023, 49: 11768-11778.

5Tang Jie; Mu Bin; Zong Li; Wang Aiqin; From waste hot-pot oil as carbon precursor to development of recyclable attapulgite/carbon composites for wastewater treatment, Journal of Environmental Sciences, 2019, 75: 346-358.

6Tang Jie; Mu Bin; Zong Li; Wang Aiqin; One-step synthesis of magnetic attapulgite/carbon supported NiFe-LDHs by hydrothermal process of spent bleaching earth for pollutants removal, Journal of Cleaner Production, 2018, 172: 673-685.

7Tang Jie; Zong Li; Mu Bin; Zhu Yongfeng; Wang Aiqin; Preparation and cyclic utilization assessment of palygorskite/carbon composites for sustainable efficient removal of methyl violet, Applied Clay Science, 2018, 161: 317-325.

8Tang Jie; Zong Li; Bin Mu; Yuru Kang; Aiqin Wang; Attapulgite/carbon composites as a recyclable adsorbent for antibiotics removal. Korean Journal of Chemical Engineering, 2018, 35: 1650-1661.

9Tang Jie; Mu Bin; Zong Li; Zheng Maosong; Wang Aiqin; Facile and green fabrication of magnetically recyclable carboxyl-functionalized attapulgite/carbon nanocomposites derived from spent bleaching earth for wastewater treatment, Chemical Engineering Journal, 2017, 322: 102-114.

10Tang Jie; Mu Bin; Wang Wenbo; Zheng Maosong, Wang Aiqin; Fabrication of manganese dioxide/carbon/attapulgite composites derived from spent bleaching earth for adsorption of Pb(II) and Brilliant green. RSC Advances, 2016, 6: 36534-36543.

11Tang Jie; Mu Bin; Zheng Maosong; Wang Aiqin; One-step calcination of the spent bleaching earth for the efficient removal of heavy metal ions, ACS Sustainable Chemistry & Engineering, 2015, 3: 1125-1135.

12Tang Jie; Mu Bin; Zong Li; Zheng Maosong; Wang Aiqin; Fabrication of attapulgite/carbon composites from the spent bleaching earth for the efficient adsorption of methylene blue. RSC Advances, 2015, 5: 38443-38451.

授权专利

1 王爱勤; 唐洁; 牟斌; 宗莉 ; 利用抗生素废水制备负载生物炭的凹凸棒石纳米复合材料的方法, 2018-1-30, 中国, ZL201510797556.2.

2王爱勤; 唐洁; 牟斌; 宗莉; 康玉茹 ; 一利用凹凸棒石脱色废土制备二氧化锰//凹凸棒纳米复合吸附剂的方法, 2018-4-13, 中国, ZL201510797495.X.