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姓名 范大伟 性别:
职称 研究员 学历 博士研究生
电话 86-851-84399206 传真:
Email: fandawei@vip.gyig.ac.cn 邮编: 550081
地址 贵州省贵阳市观山湖区林城西路99号
简历:

(1) 教育简历:

2004.09-2009.05 中国科学院地球化学研究所,理学博士

2000.09-2004.07 成都理工大学地球科学学院,工学学士

(2) 工作简历:

2019.05—至今   中国科学院地球化学研究所,研究员,博士生导师

2012.05-2019.05 中国科学院地球化学研究所,副研究员

2018.02-2019.02 美国得州大学奥斯汀分校,访问学者

2012.08-2013.08 美国得州大学奥斯汀分校,访问学者

2009.05-2012.04 中国科学院地球化学研究所,助理研究员

研究方向:

1、地球内部物质科学

2、高压矿物学及晶体化学

3、金刚石压腔及同步辐射实验技术

承担科研项目情况:

1、中国科学院青年创新促进会专项基金(批准号:20184342018.01–2021.12),项目负责人;

2、中国科学院“西部之光”人才培养引进计划“西部青年学者”项目(A类):高温高压条件下绿帘石族矿物热弹性性质研究(2018.01–2020.12),项目负责人;

3、国家自然科学基金面上项目:高温高压条件下绿辉石热弹性性质研究(批准号:417720432018.01–2021.12),项目负责人;

4、国家自然科学基金委员会中国科学院大科学装置科学研究联合基金项目:高温高压条件下镁铝-铁铝-钙铝三端元石榴子石热弹性性质研究(批准号:U16321122017.01–2019.12),项目负责人;

5、国家自然科学基金面上项目:含水绿辉石、石榴石和金红石PVT 状态方程研究-榴辉岩造岩矿物含水对拆沉作用的影响(批准号:413741072014.01–2017.12),项目负责人;

6、中国科学院地球化学研究所青年创新科技人才培养计划项目:高温高压下含水瓦兹利石的弹性研究(2014.01–2016.12),项目负责人;

7、中国科学院西部之光人才培养计划西部博士资助项目:石榴石PVT状态方程研究-对地球内部成分结构的限制(2012.01–2014.12),项目负责人;

8、国家自然科学基金青年科学基金项目:水对上地幔主要造岩矿物 PVT 状态方程影响的实验研究(批准号:410040352011.01–2013.12) ,项目负责人;

9、中国科学院院长优秀奖启动基金项目:锰铝-铁铝系列石榴石的PVT状态方程(2010.05–2013.05),项目负责人;

10、贵州省科学技术基金项目:天然磷灰石热状态方程研究-对地球内部结构状态和微量元素的限制(批准号:黔科合J[2010]2231号,2010.01–2012.12),项目负责人;

11、中国科学院地球化学研究所领域前沿项目:上地幔副矿物PVT状态方程研究(2009.05–2011.05),项目负责人。

专家类别:
职务:
社会任职:
获奖及荣誉:

1、中国科学院青年创新促进会会员,2018

2中国科学院“西部青年学者”(A类),2017

3、贵州省“千”层次创新型人才,2015

4、中国科学院地球化学研究所青年创新科技人才,2013

5、中国科学院优秀博士论文奖,2011

6、中国科学院院长优秀奖,2009

 

代表论著:

2019

41. D. W. Fan*, J. G. Xu, C. Lu, S. N. Tkachev, B. Li, Z. L. Ye, S. J. Huang, V. B. Prakapenka, W. G. Zhou*. Elasticity of single-crystal low water-content hydrous pyrope at high pressure and high temperature conditions. American Mineralogist, 2019, https://doi.org/10.2138/am-2019-6897

40. D. W. Fan*, S. Y. Fu, J. Yang, S. N. Tkachev, V. B. Prakapenka, J. F. Lin*. (2019) . American Mineralogist, 104(2), 262-275

39. J. G. Xu, D. Z. Zhang, D. W. Fan*, P. Dera*, F. Shi, W. G. Zhou. (2019) Thermoelastic properties of eclogitic ternary garnets and omphacites: Implications for deep subduction of oceanic crust and density anomalies in the upper mantle. Geophysical Research Letters, 46, 179-188

38. B. Zhang, X. X. Hu, P. D. Asimow, X. Zhang, J. G. Xu, D. W. Fan*, W. G. Zhou. (2019) Crystal size distribution of amphibole grown from hydrous basaltic melt at 0.6-2.6 GPa and 860-970 °C. American Mineralogist,104(4), 525-535

2018

37. B. Li, J. G. Xu, W. Chen, Z. L. Ye, S. J. Huang, D. W. Fan*, W. G. Zhou, H. S. Xie (2018) Phase stability and thermoelastic properties of PbSO4 at high pressure and high temperature. Physics and Chemistry of Minerals, 45(9), 883-893

36.  J. G. Xu, D. Z. Zhang, D. W. Fan, J. Zhang, Y. Hu, X. Z. Guo, P. Dera*, W. G. Zhou (2018) Phase transitions in orthoenstatite and subduction zone dynamics: effects of water and transition metal ions. Journal of Geophysical Research-Solid Earth, 123(4), 2723-2737

35. B. Li, J. G. Xu, W. Chen, D. W. Fan*, Y. Q. Kuang, Z. L. Ye, W. G. Zhou, H. S. Xie (2018)Phase transition and thermoelastic behavior of cadmium sulfide at high pressure and high temperature. Journal of Alloys and Compounds, 743, 419-427

34.  X. X. Hu, B. Zhang, Y. Q. Kuang, W. Chen, D. W. Fan*, W. G. Zhou(2018) Expansivity of arsenopyrite (FeAsS) determined by in situ synchrotron X-ray diffraction experiment at high temperature and ambient pressure. High Temperatures-High Pressures, 47(4), 323-330

33. 范大伟, 李博, 陈伟, 许金贵, 匡云倩, 叶之琳, 周文戈*, 谢鸿森 (2018) 石榴子石族矿物状态方程研究进展. 高压物理学报, 32(1), 010101 (Invited Review Article)

2017

32. D. W. Fan, C. Lu, J. G. Xu, B. M. Yan, B. Yang, J. H. Chen* (2017) Effects of water on P-V-T equation of state of pyrope. Physics of the Earth and Planetary Interiors, 267, 9-1831. J. G. Xu, D. Z. Zhang, P. Dera, B. Zhang, D. W. Fan* (2017) Experimental evidence for the survival of augite to transition zone depths, and implications for subduction zone dynamics. American Mineralogist, 102(7), 1516–1524 (Highlights and Notable Papers)

 

30. D. W. Fan*, Y. Q. Kuang, J. G. Xu, B. Li, W. G. Zhou, H. S. Xie (2017) Thermoelastic properties of grossular-andradite solid solution at high pressures and temperatures. Physics and Chemistry of Minerals, 44(2), 137-147

2016

29. D. W. Fan*, Y. Q. Kuang, J. G. Xu, B. Zhang, H. S. Xie (2016) The influence of the hydrogen to the thermoelastic properties of the major rock-forming minerals of upper mantle. Acta Geologica Sinica (English Edition), 90(5), 1933-1934

28. J. G. Xu, Y. Q. Kuang, B. Zhang, Y. G. Liu, D. W. Fan*, X. D. Li, H. S. Xie (2016) Thermal equation of state of natural tourmaline at high pressure and temperature. Physics and Chemistry of Minerals, 43(5), 315-326

2015

27. D. W. Fan*, Z. Mao*, J. Yang, J. F. Lin (2015)Determination of the full elastic tensor of single crystals using shear wave velocities by Brillouin spectroscopy. American Mineralogist, 100(11-12), 2590-2601

26.  J. G. Xu, Y. Q. Kuang, B. Zhang, Y. G. Liu, D. W. Fan*, W. G. Zhou, H. S. Xie (2015) High pressure study of azurite Cu3(CO3)2(OH)2 by synchrotron radiation X-ray diffraction and Raman spectroscopy. Physics and Chemistry of Minerals, 42(10), 805-816

25. D. W. Fan*, J. G. Xu, Y. Q. Kuang, X. D. Li, Y. C. Li, H. S. Xie (2015) Compressibility and equation of state of beryl (Be3Al2Si6O18) by using a diamond anvil cell and in situ synchrotron X-ray diffraction. Physics and Chemistry of Minerals, 42(7), 529-539

24.  D. W. Fan*, J. G. Xu, M. N. Ma, J. Liu, H. S. Xie (2015) P-V-T equation of state of spessartine-almandine solid solution measured using a diamond anvil cell and in situ synchrotron X-ray diffraction. Physics and Chemistry of Minerals, 42(1), 63-72

23. D. W. Fan*, J. G. Xu, M. N. Ma, S. Y. Wei, B. Zhang, J. Liu, H. S. Xie (2015) P-V-T equation of state of Ca3Cr2Si3O12 uvarovite garnet by using a diamond-anvil cell and in-situ synchrotron X-ray diffraction. American Mineralogist, 100(2-3), 588-597

2014

22. D. W. Fan*, J. G. Xu, J. Liu, Y. C. Li, H. S. Xie (2014) Thermal equation of state of natural stibnite up to 25.7GPa and 533K. High Temperatures-High Pressures, 43(5), 351-359

21. D. W. Fan*, J. G. Xu, M. N. Ma, J. Liu, H. S. Xie (2014) P–V–T equation of state of molybdenite (MoS2) by a diamond anvil cell and in situ synchrotron angle-dispersive X-ray diffraction. Physica B-Condensed Matter, 451, 53-57

20. J. G. Xu, M. N. Ma, S. Y. Wei, X. X. Hu, Y. G. Liu, J. Liu, D. W. Fan*, H. S. Xie (2014) Equation of state of adamite up to 11 GPa: a synchrotron X-ray diffraction study. Physics and Chemistry of Minerals, 41(7), 547-554

19. D. W. Fan*, M. N. Ma, S. Y. Wei, Z. Q. Chen, B. S. Li, H. S. Xie (2014) High-pressure elastic behavior of Ca4La6(SiO4)6(OH)2 a synthetic rare-earth silicate apatite: a powder X-ray diffraction study up to 9.33 GPa. Physics and Chemistry of Minerals, 41(2), 85-90

18. 范大伟*, 许金贵, 魏舒怡, 陈志强, 谢鸿森 (2014) 天然绿帘石原位高压同步辐射X射线衍射研究. 高压物理学报, 28(3), 257-261

2013

17. D. W. Fan*, M. N. Ma, S. Y. Wei, Z. Q. Chen, H. S. Xie (2013) High pressure elastic behavior of synthetic Mg3Y2(SiO4)3 garnet to 9 GPa. Advances in Materials Science and Engineering, 2013, 502702

16. D. W. Fan*, M. N. Ma, S. Y. Wei, Z. Q. Chen, H. S. Xie (2013) In-situ Synchrotron powder X-ray diffraction study of vanadinite at room temperature and high pressure. High Temperatures-High Pressures, 42(5), 441-449

15. D. W. Fan*, M. N. Ma, S. Y. Wei, B. S. Li, Z. Q. Chen, H. S. Xie (2013) In-situ Synchrotron X-ray diffraction study of scorodite at high pressure. High Temperatures-High Pressures, 42(3), 203-209

14.  D. W. Fan*, S. Y. Wei, J. Liu, Y. C. Li, H. S. Xie (2013) X-ray diffraction study of calcium-lead fluorapatite solid solution at high pressure: the composition dependence of the bulk modulus and its pressure derivative. High Temperatures-High Pressures, 42(2), 69-80

13. S. Y. Wei, M. N. Ma, D. W. Fan*, J. Yang, W. G. Zhou, B. S. Li, Z. Q. Chen, H. S. Xie (2013) Compressibility of mimetite and pyromorphite at high pressure. High Pressure Research, 33(1), 27-34

12. D. W. Fan*, S. Y. Wei, H. S. Xie (2013) An in situ high-pressure X-ray diffraction experiment of hydroxyapophyllite. Chinese Physics B, 22(1), 010702

11. 范大伟*, 魏舒怡, 刘景, 谢鸿森 (2013) 天然黄铜矿原位高温高压X射线衍射研究. 高压物理学报, 27(6), 828-832

2012

10.  D. W. Fan*, M. N. Ma*, S. Y. Wei, Z. Q. Chen, H. S. Xie (2012) Synchrotron X-ray diffraction study of phenacite at high pressure. Chinese Physics C, 36(2), 179-183

2011

9. D. W. Fan, M. N. Ma, W. G. Zhou*, S. Y. Wei, Z. Q. Chen, H. S. Xie (2011) X-ray diffraction study of arsenopyrite at high pressure. Physics and Chemistry of Minerals, 38(2), 95-99

8. D. W. Fan*, S. Y. Wei, J. Liu, Y. C. Li, H. S. Xie (2011) High Pressure X-Ray Diffraction Study of a Grossular–Andradite Solid Solution and the Bulk Modulus Variation along this Solid Solution. Chinese Physics Letters, 28(7), 076101

7. D. W. Fan*, S. Y. Wei, W. G. Zhou, J. Liu, Y. C. Li, H. S. Xie (2011) Synchrotron X-ray diffraction study of haüyne at high pressure. Physica B-Condensed Matter, 406(23), 4404-4406

6. D. W. Fan*, M. N. Ma, J. J. Yang, S. Y. Wei, Z. Q. Chen, H. S. Xie (2011) In Situ High-Pressure Synchrotron X-Ray Difraction Study of Clinozoisite. Chinese Physics Letters, 28(12), 126103

2010

5. D. W. Fan*, W. G. Zhou*, S. Y. Wei, Y. G. Liu, M, N, Ma, H. S. Xie (2010) A simple external resistance heating diamond anvil cell and its application for synchrotron radiation x-ray diffraction. Review of Scientific Instruments, 81(5), 053903

4.  D. W. Fan, W. G. Zhou*, S. Y. Wei, J. Liu, S. Jiang, H. S. Xie (2010) Phase Relations and Pressure Volume Temperature Equation of State of Galena. Chinese Physics Letters, 27(8), 086401

2009

3.  D. W. Fan, W. G. Zhou*, C. Q. Liu, F. Wan, Y. S. Xing, J. Liu, Y. C. Li, H. S. Xie (2009) Phase Transition and EoS of Cinnabar (α-HgS) at High Pressure and High Temperature. Chinese Physics Letters, 26(4), 046402

2. D. W. Fan, W. G. Zhou*, C. Q. Liu, Y. G. Liu, F. Wan, Y. S. Xing, J. Liu, L. G. Bai, H. S. Xie (2009) Thermal equation of state of (Fe0.86Mg0.07Mn0.07)3Al2Si3O12 almandine. Mineralogical Magazine, 73(1), 95-102

2008

1. D. W. Fan, W. G. Zhou*, C. Q. Liu, Y. G. Liu, X. Jiang, F. Wan, J. Liu, X. D. Li, H. S. Xie (2008) Thermal equation of state of natural chromium spinel up to 26.8 GPa and 628 KJournal of Materials Science, 43(16), 5546-5550