姓名: |
王爱勤 |
性别: |
男 |
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学科类别: |
材料化学 |
单位代码: |
121B62 |
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学历: |
博士 |
职称: |
研究员/博导 |
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电话: |
0931-4968118 |
传真: |
0931-8277088 |
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职务: |
甘肃省黏土矿物重点实验室主任 |
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电子邮件: |
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通讯地址: |
中国甘肃省兰州市天水中路18号中国科学院兰州化学物理研究所,730000 |
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个人简介: |
王爱勤,男,理学博士,研究员,博士生导师,国务院政府特殊津贴、全国创新争先奖和何梁何利基金科学与技术创新奖获得者。1986年7月毕业于兰州大学化学系,1999年6月毕业于中国科学院兰州化学物理研究所获博士学位,2002年在日本作JSPS高级访问学者。甘肃省黏土矿物重点实验室主任;甘肃省凹凸棒石产业技术创新战略联盟理事长;江苏省凹凸棒石产业技术研究院院长;中国非金属矿工业协会副会长;全国非金属矿产品及制品标准化技术委员会黏土与黏土矿物分技术委员会主任委员;江苏省硅酸盐学会固废及矿物资源化利用专业委员会主任委员;中国矿物岩石地球化学学会第十届理事会非金属矿物资源高效利用专业委员会副主任委员。 2002年入选甘肃省“555创新人才工程”第一层次人选;2011年入选江苏省“双创人才”计划;2012年度江苏盱眙县年度人物,中国科学院院地合作先进个人;2013年获中国产学研合作创新奖;2014年江苏省淮安市劳动模范;2015获淮安市首届“最美科技人”荣誉称号;2016年获中国科学院“优秀共产党员”称号和“朱李月华”优秀导师奖,入选中科院“特聘研究员”;2017年中国非金属矿工业协会“优秀科技人才”;2019年中国科学院兰州分院“优秀共产党员”,“兰州优秀科技工作者”;2020年首届“陇原最美科技工作者”,全国非金属矿产品及制品标准化工作先进个人;2021年入选甘肃省拔尖领军人才,全国建材行业标准化工作先进个人;2022年“绿色矿山突出贡献个人”奖。自2014年连续9年入选爱思唯尔(Elsevier)中国高被引学者(Most Cited Chinese Researchers)榜单,2022和2023年入选全球“高被引科学家(Highly Cited Researchers)”榜单。担任Applied Clay Science、Chemical Engineering Research and Design等杂志编委。 先后主持完成包括国家自然科学基金、863、中国科学院“西部行动”、江苏省重大成果转化和甘肃省“揭榜挂帅”等项目50余项;在国内外刊物上发表论文700余篇,出版专著8部;获授权中国发明专利150余件,美国发明专利4件;制订国家标准和行业标准6项;农业化学节水调控关键技术与系列新产品产业化开发及应用获2010年度国家科技进步二等奖;基于湿法凹凸棒石高值利用关键技术开发与应用获2018年度国家技术发明二等奖;获省部级成果奖15项。其中,凹凸棒石棒晶束解离关键技术创新及其产业化应用获2015年度江苏省科学技术一等奖;低品位凹凸棒石关键共性技术研发及应用获2017年度甘肃省技术发明一等奖; 黏土矿物基杂化颜料的构筑及其应用基础研究获2020年非金属矿科学技术一等奖。 |
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个人主页: |
https://www.researchgate.net/profile/Aiqin_Wang2/contributions |
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研究方向: |
(1) 凹凸棒石应用研究; (2) 黏土矿物高值化利用; (3) 有机-无机纳米复合材料; (4) 功能吸附材料。 |
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代表性成果: |
一、出版专著: (1)《非金属矿展望:前沿、需求和生命健康》,何宏平,周春晖等著,北京:科学出版社,2022年12月。 (2) Yongfeng Zhu, Aiqin Wang, Chapter 6-Pickering emulsions and foams stabilization based on clay minerals,《Clay Minerals and Synthetic Analogous as Emulsifiers of Pickering Emulsions》, Edited by Fernando Wypych, Rilton Alves de Freitas, Developments in Clay Science, 2022, 10, 169-227. Elsevier, 2022年8月 (3)《凹凸棒石新型功能材料及应用》,王爱勤,牟斌,张俊平,王文波,朱永峰著,北京:科学出版社,2021年12月。 (4)Yongfeng Zhu, Hui Yu, Bin Mu, and Aiqin Wang*, Advanced magnetic adsorbents prepared from emulsion template for water treatment. Meili L., Dotto G.L. (eds) Advanced Magnetic Adsorbents for Water Treatment. Environmental Chemistry for a Sustainable World book series, Vol 61. Springer, 2021, Cham. (5)《Nanomaterials From Clay Minerals: A New Approach to Green Functional Materials》, Edited by: Aiqin Wang, Wenbo Wang, A volume in Micro and Nano Technologies, Elsevier, 2019年8月. (6) Novel approaches to desing eco-friendly materials based on natural nanomaterials, Edited by: Aiqin Wang, Wenbo Wang, Hongfei Cheng and Chunhui Zhou, Published in Frontiers in Chemistry, Frontiers e-book, Lausanne, Switzerland, 2019. (7) Wenbo Wang, Aiqin Wang*, Nanoscale Clay Minerals for Functional Ecomaterials: Fabrication, Applications, and Future Trends, 《Handbook of Ecomaterials》, Editors: Dr. Leticia Myriam Torres Martínez, Dr. Oxana Vasilievna Kharissova, Dr. Boris Ildusovich Kharisov, 2018, Springer, Cham. doi: 10.1007/978-3-319-48281-1_125-1. (8) Bin Mu, Aiqin Wang*, Regeneration and recycling of spent bleaching earth, 《Handbook of Ecomaterials》, Editors: Dr. Leticia Myriam Torres Martínez, Dr. Oxana Vasilievna Kharissova, Dr. Boris Ildusovich Kharisov, 2018, Springer, Cham. doi:10.1007/978-3-319-48281-1_121-1. (9)《凹凸棒石棒晶束解离及其纳米功能复合材料》,王爱勤,王文波,郑易安,郑茂松,刘晓勤著,北京:科学出版社,2014年8月。 (10) Junping Zhang and Aiqin Wang*. Chapter 4, Polysaccharide-based composite hydrogels for removal of pollutants from water, 《Advanced Separations by Specialized Sorbents》, Ed. by Ecaterina Stela Dragan, CRC Press, September 17, 2014. (11) Yian Zheng , Aiqin Wang*,Chapter 6,Kapok Fiber: Structure and Properties, 《Biomass and Bioenergy》, Springer-Verlag Berlin and Heidelberg GmbH & Co. K, 2014. (12) Yian Zheng , Aiqin Wang*,Chapter 13,Kapok Fiber: Applications, 《Biomass and Bioenergy- Applications》,Springer-Verlag Berlin and Heidelberg GmbH & Co. K, 2014. (13) Aiqin Wang, Wenbo Wang. “Gum-g-copolymers: Synthesis, Properties and Applications” , 《Polysaccharide Based Graft Copolymers》(ISBN:978-3-642-36565-2), Ed. by Dr. Susheel Kalia and M.W. Sabaa, Springer-Verlag Berlin and Heidelberg GmbH & Co. K, 2013, pp149-203. (14)《农业化控节水技术原理及应用》,杨培岭,王勇,李云开,任树梅,王爱勤著,科学出版社,2010年6月。 (15) Aiqin Wang, Wenbo Wang. Superabsorbent materials. Kirk-Othmer Encyclopedia of Chemical Technology, John Wiley & Sons, Inc., 2009:1-34 (16)《甲壳素化学》,王爱勤主编,北京:科学出版社,2008年1月。 (17)《凹凸棒石黏土应用研究》,郑茂松,王爱勤,詹庚申编著,北京:化学工业出版社,2007年4月。 (18)《有机-无机复合高吸水性树脂》,王爱勤,张俊平著,北京:科学出版社,2006年10月。 (19)《农用保水剂应用原理与技术》,黄占斌,李茂松,夏春良,祝光富,朱书全,王爱勤,北京:中国农业出版社,2005年8月。 二、近年主持的主要项目: (1) 中国科学院兰州化学物理研究所盱眙凹土应用技术研发中心建设:江苏省重大创新载体建设项目,项目编号BY2010012,项目执行年限2010.08-2013.08; (2) 凹土基成核剂和三维网络吸附剂关键技术开发与产业化:江苏省重大成果转化资金,项目编号BA2011100,项目执行年限2011.10-2014.10; (3) 纳米凹凸棒黏土无机凝胶关键技术及产业化:中国科学院院地合作专项计划, 项目编号YDJDBNJ-2012-012,项目执行年限2012.01-2014.12; (4) 凹凸棒黏土棒晶均一化和可控生长关键技术研究,江苏省科技支撑计划(工业),项目编号BE2012113,项目执行年限2012.05-2014.05; (5) 凹凸棒黏土纳米新材料关键技术及产品开发:国家863项目,项目编号2013AA032003,项目执行年限2013.11-2016.11; (6) 模板胶束法三维网络纳米复合吸附剂的可控合成及其吸/脱附性能研究,国家自然科学基金,项目编号21377135,项目执行年限2014.01-2017.12; (7) 江苏凹土产业关键技术创新体系与示范服务平台建设:中国科学院科技服务网络计划(STS计划),项目执行年限2016.01-2017.12; (8) 钴蓝/黏土矿物纳米复合杂化颜料的创制与产业化:中国科学院STS区域重点项目,项目执行年限2016.07-2019.07; (9) 凹凸棒石霉菌毒素吸附剂研发及产业化:江苏省科技成果转化专项资金,项目编号BA2016134,项目执行年限2016.04-2019.03; (10) 多维度凹凸棒石构筑功能新材料应用基础研究,甘肃省自然科学基金重大项目,项目编号18JR4RA001, 项目执行年限2018.01-2020.12; (11) 窑街煤电油页岩半焦综合利用产业化关键技术研究,兰州市十大科技创新项目,项目编号 2019-3-1,项目执行年限 2019.09-2021.09; (12) 替抗用凹凸棒石杂化材料的创制与产业化,中国科学院STS区域重点项目,项目编号 KFJ-STS-QYZX-086,项目执行年限 2020.01-2021.12; (13) 混维凹凸棒石转白和伴生矿物利用关键制备技术,甘肃省科技厅重大专项“揭榜挂帅”项目,项目编号21ZD2JA002,项目执行年限2021.06-2023.06; (14) 凹凸棒石在混凝土3D打印应用关键技术研究,中国科学院对外合作重点项目,项目编号121B62KYSB20200021,项目执行年限2021.01-2023.12 三、近期发表代表性论文: (24) 王爱勤*, 卢玉沈, 牟斌, 张弘, 汪琴, 惠爱平, 混维凹凸棒石黏土全矿物利用研究现状与展望, 科学通报, 2022, 67, 1-14. (23) Jiang Xu, Wenbo Wang, Yushen Lu, Hong Zhang, Yuru Kang, Bin Mu, Ye Qian, Aiqin Wang*, Scale-up disaggregation of palygorskite crystal bundles via ultrasonic process for using as potential drilling fluid, Ultrasonics Sonochemistry, 2022, 89, 106128. (22) Hao Yang, Bin Mu*, Shue Li, Aiqin Wang*, Utilization of sea sand for preparation of high-performance CoAl2O4 composite pigments via a cleaner mechanochemistry route, ACS Sustainable Chemistry & Engineering, 2022, 10, 9553-9564. (21) Yushen Lu, Aiqin Wang*, From structure evolution of palygorskite to functional material: A review, Microporous and Mesoporous Materials, 2022, 333, 111765. (20) Fangfang Yang, Aiqin Wang*, Recent researches on antimicrobial nanocomposites and hybrid materialsbased on sepiolite and palygorskite, Applied Clay Science, 2022, 219,106454. (19) Yushen Lu, Hui Yu, Yongfeng Zhu, Bin Mu, Aiqin Wang*, Recovering metal ions from oxalic acid leaching palygorskite-rich clay wastewater to fabricate layered mixed metal oxide/carbon composites for high-efficient removing Congo red, Chemosphere, 2021, 290, 132543. (18) Xiaowen Wang, Bin Mu*, Jiang Xu, Aiqin Wang*, Reversible thermochromic superhydrophobic BiVO4 hybrid pigments coatings with self-cleaning performance and environmental stability based on kaolinite, ACS Applied Materials & Interfaces, 2021, 13, 3228-3236. (17) Yan Liu, Yongfeng Zhu, Yongsheng Wang, Zhengjun Quan, Li Zong, Aiqin Wang*, Synthesis and application of eco-friendly superabsorbent composites based on xanthan gum and semi-coke, International Journal of Biological Macromolecules, 2021, 179, 230-238. (16) Shue Li,Bin Mu,Xiaowen Wang,Aiqin Wang*, Recent researches on natural pigments stabilized by clay minerals: A review, Dyes and Pigments, 2021, 109322. (15) Wenkai Dong, Yushen Lu, Wenbo Wang*, Mingming Zhang, Yanmei Jing, Aiqin Wang*, A sustainable approach to fabricate new 1D and 2D nanomaterials from natural abundant palygorskite clay for antibacterial and adsorption, Chemical Engineering Journal, 2020,382,122984。 (14) Yongfeng Zhu, Wenbo Wang, Hui Yu, Aiqin Wang*, Preparation of porous adsorbent via pickering emulsion template for water treatment: A Review, Journal of Environmental Sciences, 2020,88,217-236. (13) Taotao Lu, Yongfeng Zhu, Wenbo Wang, Yanxing Qi*, Aiqin Wang*, Interconnected superporous adsorbent prepared via yeast-based Pickering HIPEs for high-efficiency adsorption of Rb+, Cs+ and Sr2+, Chemical Engineering Journal, 2019, 361, 1411-1422. (12) Xiaowen Wang, Bin Mu*, Aiping Hui, Qin Wang, Aiqin Wang*, Low-cost bismuth yellow hybrid pigments derived from attapulgite. Dyes and Pigments, 2018, 149, 521-530. (11) Anjie Zhang, Bin Mu*, Zhihe Luo, Aiqin Wang*, Bright blue halloysite/CoAl2O4 hybrid pigments: Preparation, characterization and application in water-based painting. Dyes and Pigments, 2017, 139, 473-481. (10) Wenbo Wang, Aiqin Wang*. Recent progress in dispersion of palygorskite crystal bundles for nanocomposites. Applied Clay Science, 2016, 119, 18-30. (9) Yian Zheng, Aiqin Wang. Superadsorbent with three-dimensional networks: From bulk hydrogel to granular hydrogel. European Polymer Journal, 2015, 72, 661-686. (8) Wenbo Wang, Guangyan Tian, Zhifang Zhang, Aiqin Wang*. A simple hydrothermal approach to modify palygorskite for high-efficient adsorption of Methylene blue and Cu(II) ions. Chemical Engineering Journal, 2015, 265, 228-238. (7) Wenbo Wang, Fangfang Wang, Yuru Kang, Aiqin Wang*. Au nanoparticles decorated Kapok fiber by a facile noncovalent approach for efficient catalytic decoloration of Congo Red and hydrogen production. Chemical Engineering Journal, 2014, 237, 336-343. (6) Bin Mu, Yuru Kang, Aiqin Wang*. Preparation of a polyelectrolyte-coated magnetic attapulgite composite for the adsorption of precious metals. Journal of Materials Chemistry A, 2013, 1, 4804-4811. (5) Yian Zheng, Yuntao Xie, Aiqin Wang*. Rapid and wide pH-independent ammonium-nitrogen removal using a composite hydrogel with three-dimensional networks. Chemical Engineering Journal, 2012, 179, 90-98. (4) Jixiang Xu, Junping Zhang, Qin Wang, Aiqin Wang*. Disaggregation of palygorskite crystal bundles via high-pressure homogenization. Applied Clay Science, 2011, 54, 118-123. (3) Wenbo Wang, Aiqin Wang*. Synthesis and swelling properties of pH-sensitive semi-IPN superabsorbent hydrogels based on sodium alginate-g-poly(sodium acrylate) and polyvinylpyrrolidone. Carbohydrate Polymers, 2010, 80(4), 1028-1036. (2) Hao Chen, Aiqin Wang*. Adsorption characteristics of copper(II) ions from aqueous solution onto poly(acrylamide)/attapulgite composite. Journal of Hazardous Materials, 2009, 165, 223-231. (1) Li Wang, Aiqin Wang*. Adsorption properties of Congo red from aqueous solution onto surfactant-modified montmorillonite. Journal of Hazardous Materials, 2008, 160, 173-180. |