何宏平 照片

何宏平

研究员 博导

所属大学: 中国科学院广州地球化学研究所

所属学院: 未知

邮箱:
hehp@gig.ac.cn

个人主页:
http://www.gig.cas.cn/sourcedb_gig_cas/zw/rck/200907/t20090716_2085932.html

个人简介

1967年10月出生,汉族,浙江东阳人,中共党员,研究员,博士生导师。1989年毕业于南京大学地质系,1991年和1999年分别在中科院地球化学所和中科院地质所获矿物学硕士和博士学位。2003-2004年在法国国立科技大学(INSA-Lyon)从事博士后研究工作,2005年为澳大利亚昆士兰理工大学访问学者。2006年8月至2009年4月任研究所科技处处长;2009年4月至2010年3月任所长助理兼科技处处长;2010年3月起任副所长兼纪委书记;2015年7月起任党委副书记(主持工作)兼副所长;2016年5月起任党委书记兼副所长

研究领域

1.粘土矿物学;2.环境矿物学;3.矿物结构与矿物化学;4.矿物表面物理化学;5. 矿物材料

粘土矿物学、环境矿物学、矿物结构与矿物化学、矿物表面物理化学、矿物材料。

学术兼职

国际粘土矿物协会(Contributions and Membership Committee, Clay Minerals Society)委员、亚洲粘土协会(Asian Clay Society)主席、中国矿物岩石地球化学学会副理事长、《Clays and Clay Minerals》和《Solid Earth Sciences》副主编,《Applied Clay Science》、《Journal of Asian Earth Sciences》、《矿物学报》、《矿物岩石地球化学通报》等学术期刊编委

近期论文

1. S.H. Ji, J.X. Zhu, H.P. He*, Q. Tao, R.L. Zhu, L.Y Ma, M. Chen, S.Y Li, and J.M. Zhou, Conversion of serpentine to smectite under hydrothermal condition: Implication for solid state transformation, American Mineralogist, 2018 (in press).

2. H.P. He*, S.H. Ji, Q. Tao, J.X. Zhu, T.H Chen, X.L Liang, Z.H Li, and H.L Dong, Transformation of halloysite and kaolinite into beidellite under hydrothermal condition, American Mineralogist, 2017, 102: 997–1005.

3. X.L Liang, G.L Wei, J.X, F.D Tan, H.P. He*, C.C Qu, H. Yin, J.X Zhu, R.L. Zhu, Z.H Qin, Adsorption isotherm, mechanism, and geometry of Pb(II) on magnetites substituted with transition metals, Chemical Geology, 2017, 470: 132-140.

4. W. Tan, H.P. He, C.Y. Wang, H. Dong, X.L. Liang, J.X. Zhu, Magnetite exsolution in ilmenite from the Fe-Ti oxide gabbro in the Xinjie intrusion (SW China) and sources of unusually strong remnant magnetization, American Mineralogist, 2016, 101: 2759–2767.

5. M. Chen, W. Shen, X.C. Lu, R.L. Zhu, H.P. He, J.X. Zhu, Jumping Diffusion of Water Intercalated in Layered Double Hydroxides, Journal of Physical Chemistry C, 2016, 120(23): 12924-12931.

6. X.L. Liang, P. Liu, H.P. He, G.L. Wei, T.H. Chen, W. Tan, F.D. Tan, J.X. Zhu, R.L. Zhu, The variation of cationic microstructure in Mn-doped spinel ferrite during calcination and its effect on formaldehyde catalytic oxidation, Journal of Hazardous Materials, 2016, 306: 305-312.

7. P. Liu, H.P. He, G.L. Wei, X.L. Liang, F.H. Qi, F.D. Tan, W. Tan, J.X. Zhu, R.L. Zhu, Effect of Mn substitution on the promoted formaldehyde oxidation over spinel ferrite: Catalyst characterization, performance and reaction mechanism, Applied Catalysis B: Environmental, 2016, 182: 476-484.

8. W. Tan, C.Y. Wang, H.P. He*, X.L. Liang, P. Liu, Mineralogy and origin of exsolution in Ti-Rich magnetite from different magmatic Fe-Ti oxidebearing intrusions, The Canadian Mineralogist, 2016, 54: 539-553.

9. W. Tan, C.Y. Wang, H.P. He*, C.M. Xing, X.L. Liang, H. Dong, Magnetite-rutile symplectite derived from ilmenite-hematite solid solution in the Xinjie Fe-Ti oxide-bearing, mafic-ultramafic layered intrusion (SW China), American Mineralogist, 2015, 100(10): 2348-2351.

10. H.P. He, Y.H. Zhong, X.L Liang, W. Tan, J.X. Zhu, C.Y. Wang, Natural Magnetite: an efficient catalyst for the degradation of organic contaminant. Scientific Reports, 2015, 5.

11. X.L. Liang, Z.S. He, W. Tan, P. Liu, J.X. Zhu, J. Zhang, H.P. He*, The oxidation state an microstructural environment of transition metals (V, Co and Ni) in magnetite: an XAFS study. Physics and Chemistry of minerals, 2015, 42(5): 373-383.

12. J.H. Zhou, E.S. Boek, J.X. Zhu, X.C. Lu, M. Sprik, H.P. He*, Molecular simulation study of hydrated Na-rectorite. Langmuir, 2015, 31(6): 2008-2013.

13. H.P. He, T. Li, Q. Tao, T.H. Chen, D. Zhang, J.X. Zhu, P. Yuan, R.L. Zhu, Aluminum ion occupancy in the structure of synthetic saponites: Effect on crystallinity. American Mineralogist, 2014, 99(1): 109-116.

14. H.P. He, L.Y. Ma, J.X. Zhu, R.L. Frost, B.K.G. Theng, F. Bergaya, Synthesis of organoclays: A critical review and some unresolved issues. Applied Clay Science, 2014, 100: 22-28.

15. Y.H. Zhong, X.L. Liang, Z.S. He, W. Tan, J.X. Zhu, P. Yuan, R.L. Zhu, H.P. He*, The constraints of transition metal substitutions (Ti, Cr, Mn, Co and Ni) in magnetite on its catalytic activity in heterogeneous Fenton and UV/Fenton reaction: From the perspective of hydroxyl radical generation. Applied Catalysis B-Environmental, 2014, 150: 612-618.

16. C.H. Tang, J.X. Zhu, Q. Zhou, J.M. Wei, R.L. Zhu, H.P. He, Surface heterogeneity of SiO2 Polymorphs: An XPS investigation of alpha-quartz and alpha-cristobalite. Journal of Physical Chemistry C, 2014, 118(45): 26249-26257.

17. L.N. Su, Q. Tao, H.P. He, J.X. Zhu, P. Yuan and R.L. Zhu, Silylation of montmorillonite surfaces: Dependence on solvent nature. Journal of Colloid and Interface Science, 2013, 391: 16-20.

18. H.P. He, Q. Tao, J.X. Zhu, P. Yuan, W. Shen, S.Q. Yang, Silylation of clay mineral surfaces. Applied Clay Science, 2013, 71: 15-20.

19. Y.H. Zhong, X.L. Liang, Y. Zhong, J.X. Zhu, S.Y. Zhu, P. Yuan, H.P. He*, J. Zhang, Heterogeneous UV/Fenton degradation of TBBPA catalyzed by titanomagnetite: Catalyst characterization, performance and degradation products. Water Research. 2012, 46(15): 4633-4644.

20. Q. Tao, J.X. Zhu, R.M. Wellard, T.E. Bostrom, R.L. Frost, P. Yuan, H.P. He, Silylation of layered double hydroxides via an induced hydrolysis method. Journal of Materials Chemistry. 2011, 21 (29):10711-10719.