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姓名 汤艳杰 性别:
职称 研究员 学位 博士
电话 010-82998536 传真: 010-62010846
Email: tangyanjie@mail.igcas.ac.cn 邮编: 100029
地址 北京市朝阳区北土城西路19号,手机新2会员端
更多信息:
 
简历:

  博士,研究员,博士生导师。1973年生,1997年毕业于西安地质学院获学士学位,2000年毕业于长安大学获硕士学位,2003年在手机新2会员端广州地球化学研究所获博士学位。主要从事大陆岩石圈地幔演化、深部地质过程与浅部效应等方面的研究。将新兴的Li同位素体系与传统的岩石地球化学方法相结合、应用到岩石圈地幔演化研究中,揭示了华北克拉通岩石圈地幔经历地壳衍生熔体和软流圈熔体的多期改造过程,发现熔体改造作用在全球大陆岩石圈地幔中普遍存在,古老、难熔的岩石圈地幔由于熔体改造而变得相对年轻和饱满,深化了对大陆岩石圈地幔演化规律的认识;发现火山岩中营养元素含量变化与陆地生物群演化的相关性,揭示了区域构造和深部过程对陆地生态系统的影响。担任中国矿物岩石地球化学学会地幔专业委员会委员。2010年获侯德封青年科学家奖,2014年获中科院杰出科技成就奖(“华北克拉通破坏研究集体”主要完成者),2017年获国家杰出青年基金和手机新2会员端二等奖(排名第四)。

学习经历:
  • 1993.09-1997.07,西安地质学院,地质勘察专业,学士学位
  • 1997.09-2000.07,长安大学(原西安地质学院),矿物学、岩石学、矿床学,硕士学位
  • 2000.09-2003.07,手机新2会员端广州地球化学研究所,矿物学、岩石学、矿床学,博士学位

工作经历:

  • 2003.07-2006.12,手机新2会员端,博士后
  • 2006.12-2013.12,手机新2会员端,副研究员
  • 2005.09-2005.11,日本冈山大学地球物质科学研究中心,访问研究
  • 2007.10-2007.12,日本冈山大学地球物质科学研究中心,访问研究
  • 2013.12-至今,手机新2会员端,研究员
 
学科类别:
岩石地球化学
 
研究方向:

深源岩石成因与岩石圈地幔演化、深部地质过程与浅表效应、同位素地球化学

 
职务:
 
社会任职:
 
承担科研项目情况:
  1. 手机新2会员端基金青年基金:太行山地区新生代玄武岩的岩石地球化学特征及其地球动力学意义(2006-2008);
  2. 手机新2会员端基金面上项目:地幔橄榄岩捕虏体的锂同位素地球化学研究(2008-2010);
  3. 手机新2会员端基金面上项目:华北典型地区玄武岩的锂同位素特征及其意义(2011-2013);
  4. 国家杰出青年科学基金:地幔地球化学(2018-2022)
  5. 国家重点研发计划课题:中国东部新生代板块俯冲带多圈层协同演化与关联机制(2023.12-2028.11)
 
获奖及荣誉:

2010年 中国矿物岩石地球化学学会 侯德封奖
2014年 中科院杰出科技成就奖(主要完成者)
2017年 国家杰出青年基金
2017年 手机新2会员端二等奖(排名第四)

 
代表论著:
  1. Ma C., Tang Y.J.*, Mitchell R.N., Li Y.F., Sun S.L., Zhu J.C., Foley S.F., Wang M., Ye C.Y., Ying J.F., Zhu R.X. 2023. Volcanic phosphorus supply boosted Mesozoic terrestrial biotas in northern China. Science Bulletin, 68(12), 1317-1326.
  2. Ma C., Tang Y.J.*, Ying J.F., Zhao X.M., Xiao Y., Zhang H.F. 2023. The impetus for bloom of Mesozoic terrestrial ecosystems in northern China: Insights from volcanic nutrient and harmful element delivery. Geophysical Research Letters, 50(9), e2022GL102376.
  3. Ma C., Tang Y.J.*, Ying J.F., Zhang H.F. 2023. The phosphorus budget of the silicate Earth based on an updated estimate of the P/Nd ratio. Journal of Geophysical Research: Solid Earth, 128(2), e2022JB025384.
  4. Su X.D., Ping J.H., Leng W., Zhao J.C., Tang Y.J., Liu J.Q. 2023. Magma system and equilibrium depth of the Cenozoic basalts in the central North China craton. Lithos, 446-447, 107142.
  5. Wang Y., Meng X.N., He Y.S., Huang J., Lu W.N., Shi Q.S., Ke S., Tang Y.J., Huang S.C., Li S.G. 2023. Light calcium isotope anomaly observed in continental basaltic lavas: A mixed signal of recycled carbonate and fractionation during melting. Lithos, 456-457, 107307.
  6. Su X.D., Wang G.C., Peng P., Tang Y.J. 2023. Keel of the eastern North China craton weakened by Proterozoic large igneous provinces. International Geology Review, 65(5), 669-681
  7. 汤艳杰, 英基丰. 2022. 华北地幔橄榄岩锂同位素研究进展. 岩石学报, 38(12), 3673-3682.
  8. 英基丰, 汤艳杰. 2022. 山东莒南地区下地壳的组成与演化:麻粒岩捕虏体的再研究. 岩石学报, 38(12), 3735-3746.
  9. 张宏福, 杨进辉, 汤艳杰, 赵新苗. 2022. 前言. 岩石学报, 38(12): III-Vi.
  10. Ma C., Tang Y.J.*, Ye C.Y., Ying J.F., Zhang H.F. 2022. Mechanisms for phosphorus fluctuation in Phanerozoic volcanic rocks. Lithos, 424-425, 106764.
  11. Ma C., Tang Y.J.*, Ying J.F. 2022. Global tectonics and oxygenation events drove the Earth-scale phosphorus cycle. Earth-Science Reviews, 233, 104166.
  12. Ma C., Tang Y.J.*, Ying J.F. 2022. Volcanic phosphorus spikes associated with supercontinent assembly supported the evolution of land plants. Earth-Science Reviews, 232: 104101.
  13. Ma C., Tang Y.J.*, Foley S., Ye C.Y., Ying J.F., Zhao X.M., Xiao Y., Zhang H.F. 2022. Phosphorus variations in volcanic sequences reveal the linkage between regional tectonics and terrestrial biota evolution. Geochemistry Geophysics Geosystems, 23(8), e2022GC010536.
  14. Xu X.R., Tang Y.J.*, Ying J.F., Zhao X.M., Xiao Y. 2022. Three-stage modification of lithospheric mantle: Evidence from petrology, in-situ trace elements, and Sr isotopes of mantle xenoliths in the Cenozoic basalts, northeastern North China Craton Craton. Geological Society of America Bulletin, 134(5-6), 1247-1257.
  15. Ye C.Y., Ying J.F., Tang Y.J., Zhao X.M., Zhang H.F. 2022. Oxygen fugacity evolution of the mantle lithosphere beneath the North China Craton. International Geology Review, 64(22), 3133-3148.
  16. Zhu R.X., Zhao G.C., Xiao W.J., Chen L., Tang Y.J. 2021. The birth, growth, and death of continents. Eos, 102, https://doi.org/10.1029/2021EO215003
  17. Zhu R.X., Zhao G.C., Xiao W.J., Chen L., Tang Y.J. 2021. Origin, accretion and reworking of continents. Reviews of Geophysics, 59(3), e2019RG000689, doi:10.1029/2019RG000689.
  18. Zhao Y.P., Tang Y.J.*, Xu J., Zeng Z., Ying J.F., Tian H.C., Huang F. 2021. Barium isotope evidence for recycled crustal materials in the mantle source of continental basalts. Lithos, 390-391, 106111.
  19. Tang Y.J., Ying J.F., Zhao Y.P., Xu X.R. 2021. Nature and secular evolution of the lithospheric mantle beneath the North China Craton. Science China Earth Sciences, 64(9), 1492-1503.
  20. 汤艳杰. 2021. 克拉通岩石圈地幔的形成与破坏: 大洋板块俯冲的贡献. 地球科学与环境学报,43(2), 237-243.
  21. 朱光, 郑天愉, 段永红, 汤艳杰, 朱日祥 编. 2020. 华北克拉通破坏图集. 北京: 科学出版社.
  22. 汤艳杰, 张宏福. 2019. 华北克拉通岩石圈地幔的锂同位素特征与熔体改造作用. 矿物岩石地球化学通报, 38(2), 217-223.
  23. 马超, 汤艳杰*, 英基丰. 2019. 俯冲带岩浆作用与大陆地壳生长. 地球科学, 44(4), 1128-1142.
  24. 刘鑫, 汤艳杰*. 2018. 冀西北姚家庄超镁铁岩-正长岩杂岩体中辉石的环带特征及意义. 岩石学报, 34(11): 3315-3326.
  25. Gao Y.Y., Li X.H., Griffin W.L., Tang Y.J., Pearson N.J., Liu Y., Chu M.F., Li Q.L., Tang G.Q., O’Reilly S.Y. 2015. Extreme lithium isotopic fractionation in three zircon standards (Ple?ovice, Qinghu and Temora). Scientific Reports, 5, 16878.
  26. Liu S.A., Huang J., Liu J.G., W?rner G., Yang W., Tang Y.J., Chen Y., Tang L.M., Zheng J.P., Li S.G. 2015. Copper isotopic composition of the silicate Earth. Earth and Planetary Science Letters, 427, 95-103.
  27. Zhang W.H., Zhang H.F., Sun Y.L., Fan W.M., Han B.F., Tang Y.J. 2015. Platinum-group element geochemistry of Cenozoic basalts from the North China Craton: Implications for mantle heterogeneity. Science China Earth Sciences, 58, 881-895.
  28. Su B.X., Gu X.Y., Deloule E., Zhang H.F., Li Q.L., Li X.H., Vigier N., Tang Y.J., Tang G.Q., Liu Y., Pang K.N., Brewer A., M.Q., Ma Y.G. 2015. Potential orthopyroxene, clinopyroxene and olivine reference materials for in situ lithium isotope determination. Geostandards and Geoanalytical Research, 39, 357-369.
  29. Xiao Y., Zhang H.F., Deloule E., Su B.X., Tang Y.J., Sakyi P.A., Hu Yan, Ying J.F. 2015. Large lithium isotopic variations in minerals from peridotite xenoliths from the Eastern North China Craton. The Journal of Geology 123(1), 79-94.
  30. Dharma R.C.V., Santosh M., Tang Y.J. 2015. Re-Os isotope systematics of Archean chromitites from the Chimalpahad Anorthosite Complex, south-east India: Implications for mantle extraction processes. Ore Geology Reviews, 65, 274-282.
  31. 李献华, 刘宇, 汤艳杰, 高钰涯, 李秋立, 唐国强. 2015. 离子探针Li同位素微区原位分析技术与应用. 地学前缘, 22 (5), 160-170.
  32. Tang Y.J., Zhang H.F., Deloule E., Su B.X., Ying J.F., Santosh M., Xiao Y. 2014. Abnormal lithium isotope composition from the ancient lithospheric mantle beneath the North China Craton. Scientific Reports, 4, 4274.
  33. Su B.X., Zhang H.F., Deloule E., Vigier N., Hu Yan, Tang Y.J., Xiao Y., Sakyi P.A. 2014. Distinguishing silicate and carbonatite mantle metasomatism by using lithium and its isotopes. Chemical Geology, 381: 67-77.
  34. 汤艳杰, 张宏福, 英基丰. 2014. 阴山及邻区三叠纪富碱侵入岩的成因意义. 岩石学报, 30(7), 2031-2040.
  35. Tang Y.J., Zhang H.F., Ying J.F., Su B.X. 2013. Widespread refertilization of cratonic and circum-cratonic lithospheric mantle. Earth-Science Reviews, 118, 45-68.
  36. Tang Y.J., Zhang H.F., Ying J.F., Su B.X., Li X.H., Santosh M. 2013. Rapid eruption of the Ningwu volcanics in eastern China: Response to Cretaceous subduction of the Pacific plate. Geochemistry, Geophysics, Geosystems, 14, 1703-1721.
  37. Tang Y.J., Zhang H.F., Ying J.F., Su B.X., Chu Z.Y., Xiao Y., Zhao X.M. 2013. Highly heterogeneous lithospheric mantle beneath the Central Zone of the North China Craton evolved from Archean mantle through diverse melt refertilization. Gondwana Research, 23, 130-140.
  38. Tang Y.J., Zhang H.F., Santosh M., Ying, J.F. 2013. Differential destruction of the North China Craton: A tectonic perspective. Journal of Asian Earth Sciences, 78, 71-82.
  39. Ying J.F., Zhang H.F., Tang Y.J., Su B.X., Zhou X.H. 2013. Diverse crustal components in pyroxenite xenoliths from Junan, Sulu orogenic belt: Implications for lithospheric modification invoked by continental subduction. Chemical Geology, 356, 181-192.
  40. 周新华, 张宏福, 郑建平, 夏群科, 刘勇胜, 汤艳杰, 黄方, 刘传周. 2013. 新世纪十年地幔地球化学研究进展. 矿物岩石地球化学通报, 32(4), 379-391.
  41. 英基丰, 张宏福, 周新华, 汤艳杰. 2013. 苏鲁造山带深部岩石圈的属性:来自麻粒岩和橄榄岩捕虏体的制约. 矿物岩石地球化学通报, 32(3), 328-334.
  42. Tang Y.J., Zhang H.F., Deloule E., Su B.X., Ying J.F., Xiao Y., Hu Y. 2012. Slab-derived lithium isotopic signatures in mantle xenoliths from northeastern North China Craton. Lithos, 149, 79-90.
  43. Tang Y.J., Zhang H.F., Ying J.F. 2012. Secular evolution of lithospheric mantle beneath the central North China Craton: Implication from basaltic rocks and their xenoliths. In: A. I. Al-Juboury (eds.) Petrology-New Perspectives and Applications (ISBN 978-953-307-800-7). Intech Open Access Publisher, Rijeka, Croatia. pp. 1-20.
  44. Zhang P.F., Tang Y.J.*, Hu Y., Zhang H.F., Su B.X., Xiao Y., Santosh M. 2012. Review of melting experiments on carbonated eclogite and peridotite: insights into mantle metasomatism. International Geology Review, 54, 1443-1455.
  45. Zhang H.F., Sun Y.L., Tang Y.J., Xiao Y., Zhang W.H., Zhao X.M., Santosh M, Menzies Martin. 2012. Melt-peridotite interaction in the Pre-Cambrian mantle beneath the western North China Craton: Petrology, geochemistry and Sr, Nd and Re isotopes. Lithos, 149, 100-104.
  46. Su B.X., Zhang H.F., Hu Yan, Santosh M, Tang Y.J., Xiao Y. 2012. The genesis of mantle-derived sapphirine. American Mineralogist, 97, 856-863.
  47. Su B.X., Zhang H.F., Ying J.F., Tang Y.J., Hu Yan, Santosh, M. 2012. Metasomatized lithospheric mantle beneath the Western Qinling, central China: Insight into carbonatite melts in the mantle. The Journal of Geology, 120, 671-681.
  48. Su B.X., Zhang H.F., Yang Y.H., Sakyi P.A., Ying J.F., Tang Y.J. 2012. Breakdown of orthopyroxene contributing to melt pockets in mantle peridotite xenoliths from the Western Qinling, central China: constrains from in situ LA-ICP-MS mineral analyses. Mineralogy and Petrology, 104(3), 225-247.
  49. Su B.X., Zhang H.F., Deloule E., Sakyi P.A., Xiao Y., Tang Y.J., Hu Y., Ying J.F., Liu P.P. 2012. Extremely high Li and low δ7Li signatures in the lithospheric mantle. Chemical Geology, 292-293, 149-157.
  50. Tang Y.J., Zhang H.F., Nakamura E., Ying J.F. 2011. Multistage melt/fluid-peridotite interactions in the refertilized lithospheric mantle beneath the North China Craton: Constraints from the Li-Sr-Nd isotopic disequilibrium between minerals of peridotite xenoliths. Contributions to Mineralogy and Petrology, 161, 845-861.
  51. Ying J.F., Zhang H.F., Tang Y.J. 2011. Crust-mantle interaction in the central North China Craton during the Mesozoic: Evidence from zircon U-Pb chronology, Hf isotope and geochemistry of syenitic-monzonitic intrusions from Shanxi province. Lithos, 125, 449-462.
  52. Ying J.F., Zhou X.H, Su B.X., Tang Y.J. 2011. Continental growth and secular evolution: Constraints from U-Pb ages and Hf isotope of detrital zircons in Proterozoic Jixian sedimentary section (1.8-0.8 Ga), North China Craton. Precambrian Research, 189, 229-238.
  53. Su B.X., Zhang H.F., Tang Y.J., Chisonga B., Qin K.Z., Ying J.F., Sakyi P.A. 2011. Geochemical syntheses among the cratonic, off-cratonic and orogenic garnet peridotites and their tectonic implications. International Journal of Earth Sciences, 100, 695-715.
  54. Su B.X., Zhang H.F., Sakyi P.A., Yang Y.H., Ying J.F., Tang Y.J., Qin K.Z., Xiao Y., Zhao X.M., Mao Q., Ma Y.G. 2011. The origin of spongy texture in minerals of mantle xenoliths from the Western Qinling, central China. Contributions to Mineralogy and Petrology, 161, 465-482.
  55. Zhang H.F., Ying J.F., Tang Y.J., Li X.H., Feng C., Santosh M. 2011. Phanerozoic reactivation of the Archean North China Craton through episodic magmatism: Evidence from zircon U-Pb geochronology and Hf isotopes from the Liaodong Peninsula. Gondwana Research, 19, 446-459.
  56. Zhang J., Zhang H.F., Kita N., Shimoda G., Morishita Y., Ying J.F., Tang Y.J. 2011. Secular evolution of the lithospheric mantle beneath the eastern North China craton: evidence from peridotitic xenoliths from Late Cretaceous mafic rocks in the Jiaodong region, east-central China. International Geology Review, 53, 182-211.
  57. 汤艳杰, 张宏福, 英基丰. 2011. 地幔中EM1端元成因的锂同位素制约. 矿物岩石地球化学通报, 30(1), 11-17.
  58. 汤艳杰, 张宏福, 英基丰, 杨蔚, 赵新苗, 苏本勋, 肖燕. 2011. 地幔橄榄岩中橄榄石的指示意义. 地球科学与环境学报, 33(1), 24-33.
  59. Tang Y.J., Zhang H.F., Ying J.F. 2010. A brief review of isotopically light Li-a feature of the enriched mantle? International Geology Review, 52(9), 964-976.
  60. Tang Y.J., Zhang H.F., Ying J.F. 2010. Li isotopic fractionation in the refertilized lithospheric mantle beneath the North China Craton. Geochimica et Cosmochimica Acta, 74(12), A1026
  61. Ying J.F., Zhang H.F., Tang Y.J. 2010. Lower crustal xenoliths from Junan, Shandong province and their bearing on the nature of the lower crust beneath the North China Craton. Lithos, 119, 363-376.
  62. Ying J.F., Zhang H.F., Tang Y.J. 2010. Zoned olivine xenocrysts in a late Mesozoic gabbro from southern Taihang Mountains: implications for old lithospheric mantle beneath the central North China Craton. Geological Magazine, 147(2), 161-170.
  63. Ying J.F., Zhang H.F., Tang Y.J. 2010. Lower crustal xenoliths from Junan, Shandong province and their bearing on the nature of the lower crust beneath the North China Craton. Geochimica et Cosmochimica Acta, 74(12), A1186.
  64. Su B.X., Zhang H.F., Sakyi P.A., Ying J.F., Tang Y.J., Yang Y.H., Qin K.Z., Xiao Y., Zhao X.M. 2010. Compositionally stratified lithosphere and carbonatite metasomatism recorded in mantle xenoliths form the Western Qinling (Central China). Lithos, 116, 111-128.
  65. Zhang H.F., Deloule E., Tang Y.J., Ying J.F. 2010. Melt/rock interaction in remains of refertilized Archean lithospheric mantle in Jiaodong Peninsula, North China Craton: Li isotopic evidence. Contributions to Mineralogy and Petrology, 160, 261-277.
  66. Zhang H.F., Nakamura E., Kobayashi K., Ying J.F., Tang Y.J. 2010. Recycled crustal melt injection into lithospheric mantle: implication from cumulative composite and pyroxenite xenoliths. International Journal of Earth Sciences, 99, 1167-1186.
  67. Zhao X.M., Zhang H.F., Zhu X.K., Tang S.H., Tang Y.J. 2010. Iron isotope variations in spinel peridotite xenoliths from North China Craton: implications for mantle metasomatism. Contributions to Mineralogy and Petrology, 160, 1-14.
  68. Su B.X., Zhang H.F., Qin K.Z., Liu P.P., Ying J.F., Tang Y.J., Xiao Y., Zhao X.M., M.Q., Ma Y.G. 2010. Formation of melt pocket in mantle peridotite xenolith from Western Qinling, Central China: Partial melting and metasomatism. Journal of Earth Science, 21, 641-668.
  69. Su B.X., Zhang H.F., Sakyi P.A., Qin K.Z., Tang Y.J., Ying J.F., Xiao Y. 2010. Garnet-spinel transition in the upper mantle: Review and interpretation. Journal of Earth Science, 21, 635-640.
  70. 汤艳杰, 陈福坤, 彭澎. 2010. 中国盆地火山岩特性及其与油气成藏作用的联系. 岩石学报, 26(1), 185-194.
  71. Zhang X.H, Wilde S., Zhang H.F., Tang Y.J., Zhai M.G. 2009. Geochemistry of hornblende gabbros from Sonidzuoqi, Inner Mongolia, North China: implication for magmatism during the final stage of suprasubduction zone ophiolite formation. International Geology Review, 51(4), 345-373.
  72. 汤艳杰, 张宏福, 英基丰. 2009. 锂同位素分馏机制讨论. 地球科学-中国地质大学学报,24(1), 43-55.
  73. Tang Y.J., Zhang H.F., Ying J.F., Zhang J., Liu X.M. 2008. Refertilization of ancient lithospheric mantle beneath the central North China Craton: Evidence from petrology and geochemistry of peridotite xenoliths. Lithos, 101, 435-452.
  74. Zhang X.H, Zhang H.F., Tang Y.J., Wilde S., Hu Z.C. 2008. Geochemistry of Permian bimodal volcanic rocks from Central Inner Mongolia, North China: Implication for tectonic setting and Phanerozoic continental growth in Central Asian Orogenic Belt. Chemical Geology, 249, 262–281.
  75. Zhang X.H, Zhang H.F., Tang Y.J., Wilde S. 2008. Permian bimodal volcanic rocks from Central Inner Mongolia, North China: Geochemistry, Petrogenesis and tectonic Implication. Geochimica et Cosmochimica Acta, 72(12), A1088.
  76. Zhang J., Zhang H.F., Ying J.F., Tang Y.J., Niu L.F. 2008. Contribution of subducted Pacific slab to Late Cretaceous mafic magmatism in Qingdao region, China: A petrological record. Island Arc, 17, 231-241.
  77. Tang Y.J., Zhang H.F., Nakamura E., Moriguti T., Kobayashi K., Ying J.F. 2007. Lithium isotopic systematics of peridotite xenoliths from Hannuoba, North China Craton: implications for melt-rock interaction in the considerably thinned lithospheric mantle. Geochimica et Cosmochimica Acta, 71(17), 4327-4341.
  78. Tang Y.J., Zhang H.F., Ying J.F. 2007. Review of the lithium isotope system as a geochemical tracer. International Geology Review, 49(4), 374-388.
  79. Ying J.F., Zhang H.F., Sun Min, Tang Y.J., Zhou X.H, Liu X.M. 2007. Petrology and geochemistry of Zijinshan alkaline intrusive complex in Shanxi Province, western North China Craton: implication for magma mixing of different sources in an extensional regime. Lithos, 98, 45-66.
  80. Zhang H.F., Nakamura E., Kobayashi K., Zhang J., Ying J.F., Tang Y.J., Niu L.F. 2007. Transformation of subcontinental lithospheric mantle through peridotite-melt reaction: evidence from a highly fertile mantle xenolith from the North China craton. International Geology Review, 49(7), 658-679.
  81. Zhang H.F., Ying J.F., Shimoda G., Kita N., Morishita Y., Shao J.A., Tang Y.J. 2007. Importance of melt circulation and crust-mantle interaction in the lithospheric evolution beneath the North China Craton: evidence from Mesozoic basalt-borne clinopyroxene xenocrysts and pyroxenite xenoliths. Lithos, 96, 67-89.
  82. 汤艳杰, 张宏福, 英基丰, 张瑾. 2007. 橄榄岩-熔体反应过程中微量元素和同位素组成的转变. 自然科学进展, 17(6), 748-754.
  83. 张宏福, 汤艳杰, 赵新苗, 杨岳衡. 2007. 非传统同位素体系在地幔地球化学研究中的重要性及其前景. 地学前缘, 14(2), 37-57.
  84. 赵新苗, 张宏福, 朱祥坤, 张文慧, 杨岳衡, 汤艳杰. 2007. 华北中、新生代岩石圈地幔的交代作用:含金云母地幔岩提供的证据. 岩石学报, 23, 1281-1293.
  85. Tang Y.J., Zhang H.F., Ying J.F. 2006. Asthenosphere-lithospheric mantle interaction in an extensional regime: implication from the geochemistry of Cenozoic basalts from Taihang Mountains, North China Craton. Chemical Geology, 233(3-4), 309-327.
  86. 汤艳杰, 张宏福, 英基丰, 张瑾. 2006. 太行山地区中、新生代玄武质岩浆的源区特征与时空演化. 岩石学报, 22, 1657-1664.
  87. 张晓晖, 张宏福, 汤艳杰, 刘建明. 2006. 内蒙古中部锡林浩特-西乌旗早三叠世A型酸性火山岩的地球化学特征及其地质意义. 岩石学报, 22(11), 2769-2780.
  88. 张宏福, 英基丰, 汤艳杰, 张瑾, 赵新苗, 牛利锋, 肖燕, 苏本勋. 2006. 华北东部中、新生代岩石圈地幔的不均一性:来自橄榄石的组成填图结果. 岩石学报, 22 (9), 2279-2288.
  89. 张宏福, 周新华, 范蔚茗, 孙敏, 郭锋, 英基丰, 汤艳杰, 张瑾, 牛利锋. 2005. 华北东南部中生代岩石圈地幔性质、组成、富集过程及其形成机理. 岩石学报, 21, 1271-1280.
  90. 张瑾, 张宏福, 英基丰, 汤艳杰. 2005. 华北晚中生代中基性侵入岩中橄榄岩捕虏体是岩石圈地幔直接样品? 岩石学报, 21, 1559-1568.
  91. 汤艳杰, 张宏福, 英基丰. 2004. 太行山中段新生代玄武岩中高镁橄榄石捕虏晶: 残留古老岩石圈地幔样品. 岩石学报, 20, 1243-1252.
  92. Tang Y.J., Jia J.Y., Xie X.D. 2003. Records of magnetic properties in Quaternary loess and its paleoclimatic significance: a brief review. Quaternary International, 108(1), 33-50.
  93. 贾建业, 汤艳杰. 2003. 土壤污染的发生因素与治理方法. 热带地理, 23, 115-118.
  94. 汤艳杰, 贾建业, 谢先德. 2002. 铁锰氧化物在污染土壤修复中的作用. 地球科学进展, 17, 557-564.
  95. 汤艳杰, 贾建业, 谢先德. 2002. 粘土矿物的环境意义. 地学前缘, 9, 337-344.
  96. 汤艳杰, 刘建朝, 贾建业. 2002. 豫西铝土矿中镓的赋存状态研究. 西安工程学院学报, 24, 1-5.
  97. 汤艳杰, 贾建业, 刘建朝. 2002. 豫西地区铝土矿中镓的分布规律. 矿物岩石, 22, 15-20.
  98. 汤艳杰, 贾建业, 刘健, 刘建朝, 李绍卿. 2001. 铝土矿中镓的浸取工艺研究. 地球科学, 26, 258-260.
  99. 汤艳杰, 贾建业, 刘建朝. 2001. 豫西杜家沟铝土矿中镓的分布规律及控制因素浅析. 地质与勘探, 37, 9-12.
  100. 贾建业, 汤艳杰. 2001. 环境演变的矿物标识研究新进展. 岩石矿物学杂志, 20, 419-427.
  101. 贾建业, 汤艳杰. 2001. 环境质量评价的矿物标识体系研究现状及意义. 热带地理, 21, 270-275.
  102. 贾建业, 汤艳杰, 王辅亚, 王杨传, 宁平, 王建成, 魏俊峰. 2001. 活性白云粉生产工艺及其物化性能研究. 矿物学报, 21, 439-442.
  103. 贾建业, 兰斌明, 谢先德, 吴大清, 汤艳杰, 王燕, 王建成. 2001. 硫化物矿物溶解度与溶液pH值的关系. 长春科技大学学报, 31, 241-246.
  104. 贾建业, 宁平, 王辅亚, 王杨传, 王建成, 魏俊峰, 汤艳杰. 2001. 活性白云粉代替轻钙在塑料和热塑性弹性体中的应用. 非金属矿, 24, 15-17.
  105. 贾建业, 兰斌明, 王建成, 汤艳杰. 1999. 陕西东甘沟金矿地质特征及勘查方法研究(英文). 西安工程学院学报, 21(4), 25-27.
 

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