人才详细信息

姓名:鞠建廷
性别:
学历:博士
专家类别:副研究员
电话:
传真:
电子邮箱:Jujianting@itpcas.ac.cn
职称:副研究员
通讯地址:北京市朝阳区林萃路16号院3号楼

简介

工作简历:   

2020/9至今 中国科学院青藏高原研究所,副研究员

2013/07-2020/08 中国科学院青藏高原研究所,助理研究员

2011/04-2013/07 中国科学院青藏高原研究所,博士后

2008/07-2011/03 《中国科学:地球科学》杂志,编辑

教育背景:   

2005/04-05,德国耶拿大学,短期访问

2003/09-2008/07,中国科学院地理科学与资源研究所,博士

1996/09-2000/07,山东师范大学人口资源与环境学院,学士

研究方向

青藏高原湖泊观测与环境变化,湖泊沉积物代用指标的现代过程,湖泊碳循环

职务

社会任职

承担项目

1.国家自然科学基金面上基金:青藏高原湖泊萝卜螺碳酸盐二元同位素温度计研究及其在特征时段的应用(2015-2018),主持

2.国家自然科学基金面上基金:末次冰盛期以来青藏高原西北部阿克塞钦湖古水热变化及对气候的响应(2018-2021),联合主持

3.国家自然科学基金青年基金:藏南普莫雍错现代沉积过程及其对200年来气候变化的响应(2012-2014),主持

4.藏东南然乌粉尘对区域黄土和然乌湖沉积物的影响(2012-2013),主持

5.科技部二次科考专题:湖泊演变及气候变化响应(2019-2023),参与

6.中国科学院战略性先导科技专项(A类)子子课题:气候转型与特征事件的湖泊沉积记录(2018-2023),参与

7.中国科学院战略性先导科技专项A类联合攻关:青藏高原湖泊水储量估算(2018-2023),参与

8.国家自然科学基金重点基金:青藏高原过去40年湖泊水量与盐度变化及气候变化响应(2018-2022),参与

9. 国际大陆科学钻探计划(ICDP):The Nam Co Drilling Project, Tibet (NamCore): A one million year sedimentary record from the third pole(2020—),Coordinator

获奖及荣誉

代表论著

第一或者通讯作者文章

  1. Qiao Baojin, Du Tianjiao, Ju Jianting*, Zhu Liping*. Substantial potential of ICESat-2 photon-counting laser altimetry for reconstructing the lake water depth on the Tibetan Plateau. Int J Digital Earth, 2026, 19(1)2646382
  2. Qiao Baojin, Wang Zhongxuan, Ju Jianting*, Zhu Liping*. A novel method for improving bathymetry-based estimation of lake water storage on the Tibetan Plateau. J Hydrol, 2026, 672: 135329
  3. Qiao Baojin, Du Tianjiao, Ju Jianting*, Zhu Liping. Water depth inversion based on ICESat-2 and Sentinel-2-A case study of Qiagui Co and Ayakekumu Lake on the Tibetan Plateau. J Hydrol-Regional Studies, 2025, 59:102354
  4. Zhu Liping*, Ju Jianting*, Qiao Baojin*, Liu Chong, Wang Junbo, Yang Ruimin, Ma Qingfeng, Guo Linan, Pang Shuyu. 2025. Physical and biogeochemical responses of Tibetan Plateau lakes to climate change. Nature Reviews Earth & Environment, 2025, DOI: 10.1038/s43017-025-00650-5
  5. Yang Hong†, Ju JianTing†, Guo HengLiang*, Qiao BaoJin, Zhu LiPing*. Bathymetric Inversion and Mapping of Two lakes Using Sentinel-2 Imagery and Bathymetry Data in the Central Tibetan Plateau. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 2022, 15, 4279-4296
  6. Qiao Baojin, Ju Jianting*, Zhu Liping, Chen Hao, Kai Jinlei, Kou Qiangqiang. Improve the Accuracy of Water Storage Estimation—A Case Study from Two Lakes in the Hohxil Region of North Tibetan Plateau. Remote Sensing, 2021, 13, 293
  7. Ju Jianting*, Zhu Liping, Wang Junbo, Cui Yingying, Yang Ruimin, Ma Qingfeng, Luo Lun, Wang Yongjie. Estimating the contribution of glacial meltwater to Ranwu Lake, a proglacial lake in SE Tibet, using observation data and stable isotopic analyses.Environ Earth Sci, 2017, 76: 229
  8. 鞠建廷*, 朱立平, 黄磊, 杨瑞敏, 马庆峰, 胡星, 王永杰, 甄晓林. 基于监测的藏东南然乌湖现代过程:湖泊对冰川融水的响应程度.科学通报,2015, 60(1):16-26
  9. Ju Jianting*, Zhu Liping, Feng Jinliang, Wang Junbo, Wang Yong, Xie Manping, Peng Ping, Zhen Xiaolin, Lü Xinmiao. Hydrodynamic process of lake on the Tibetan Plateau revealed by grain size: A case study in Lake Pumayum Co. Chin Sci Bull, 2012, 57: 2433-2441
  10. 鞠建廷, 朱立平, 冯金良, . 粒度揭示的青藏高原湖泊水动力现代过程: 以藏南普莫雍错为例. 科学通报, 2012, 57(19): 1781-1790
  11. 鞠建廷. 中英对照发表科技期刊影响因子损失——以Science in China Series D:Earth Sciences为例. 中国科技期刊研究, 2011, 22(2): 229-230.
  12. 鞠建廷.中国地学期刊的国际化思考——以Science in China Series D: Earth Sciences为例. 中国科技期刊研究, 2010,21(6): 736-740.
  13. Ju Jianting*, Zhu Liping, Wang Junbo, Xie Manping, Zhen Xiaolin, Wang Yong, Peng Ping. Water and sediment chemistry of Lake Pumayum Co, South Tibet, China: implications for interpreting sediment carbonate. J Paleolimnol, 2010a, 43 (3): 463-474
  14. Zhu Liping, Ju Jianting*, Wang Junbo, Xie Manping, Nishimura M, Matsunaka T, Terai H. Further discussion about the features of Lake Puma Yum Co, South Tibet, China. Limnology, 2010, 11 (3): 281-287
  15. Zhu Liping, Ju Jianting*, Wang Yong, Xie Manping, Wang Junbo, Peng Ping, Zhen Xiaolin, Lin Xxiao. Composition, spatial distribution, and environmental significance of water ions in Pumayum Co catchment, southern Tibet. J Geogr Sci, 2010, 20 (1): 109-120
  16. 鞠建廷, 朱立平, 汪勇, . 藏南普莫雍错流域水体离子组成与空间分布及其环境意义. 湖泊科学, 2008, (5):591-599.

其作合作论文

  1. Kou QQ, Zhu LP, Xu T, Ma QF, Wu XJ, Wang JB, Ju JT*, Bauersachs T. Decoupled lake-glacier hydrological responses to Holocene climate forcing on the central Tibetan Plateau. CATENA, 2026, 271: 110263
  2. Guo LN, Sun WB, Wu YH, Ju JT, Song PZ. Satellite-derived albedo improves long-term lake energy balance modeling in the central Qinghai-Xizang Plateau. J Oceanol Limnol, 2026, DOI:10.1007/s00343-026-5316-0
  3. Du TJ, Li JZ, Ju JT, Zhu LP, Qiao BJ. Large-scale water depth reconstruction of Tibetan Plateau lakes using ICESat-2 photon data: Performance, limitations, and environmental drivers. Remote Sens Environ, 2026, 339: 115390
  4. Xia T, Luo LH, Zhu WB, Ju JT, Jiang LG. A first characterization of lake ice thickness on the Tibetan Plateau by leveraging satellite altimetry and ERA5. Int J Appl Earth Obs Geoinf, 2026, 149: 105284
  5. Kai JL, Wang JB, Ju JT, Zhu LP. Dissolved carbon variability in alpine river catchments of the central Tibetan Plateau. Ecol Indic, 2026, 182: 114603
  6. Zhu XH, Zhu LP, Wang JB, Ju JT, Li MH, Kou QQ, Ma QF. The Input / Evaporation inferred by mineral composition and stable isotope and climatic implications in Serling Co sediment since last deglaciation. Palaeogeogr Palaeoclimatol Palaeoecol, 2026, 683: 113484
  7. Li CL, Zhu LP, Ma QF, Ju JT, Aquino-López MA, Kou QQ, Pang SY, Zhang R, Li MH, Lü XM, Wang JB. The adaptation of prehistoric human activities to environmental changes recorded in a lake core on the Tibetan Plateau. Glob Planet Change, 2026, 256: 105142
  8. Kaphle B, Wang JB, Ju JT, Lü XM, Kai JL, Khanal BR, Adhikari S, Humagain S, Srivastava G, Paudayal KN. Assessment of heavy metal contamination and source identification in wetland soils of Rara National Park. Stoch Environ Res Risk Assess, 2025, 40: 1
  9. Wang H, Wang JB, Kai JL, Ju JT, Huang L, Yu SW, Gao JJ. Thermodynamics and its drivers of Mang Co: A high-altitude freshwater lake. J Hydrol Reg Stud, 2025, 62: 102840
  10. Humagain S, Lü XM, Zhu LP, Ma QF, Wang JB, Ju JT, Zhu SH, Cheng JJ, Kaphle B, Paudayal KN. Late deglacial and Holocene vegetation and climate change at Lake Mapam Yumco. CATENA, 2025, 260: 109484
  11. Zhang Y, Wang JB, Yi SW, Yu SW, Kai JL, Gu Y, Ma QF, Ju JT, Zhu LP. Millennial paleoclimate variations on the Central Tibetan Plateau during MIS4–MIS2. Sci Rep, 2025, 15: 18587
  12. Ma QF, Zhu LP, Wang JB, Ju JT, Yang RM, Wang Y, Lü XM. Deglacial and Holocene precipitation seasonality on the central Tibetan Plateau. J Hydrol, 2025, 658: 133224
  13. Xu FL, Liu Y, Zhang GQ, Zhao P, Woolway RI, Zhu YN, Ju JT, Zhou T, Wang X, Chen WF. Recent large-inland-lake outbursts on the Tibetan Plateau. Nat Hazards Earth Syst Sci, 2025, 25: 1187–1206
  14. Huang L, Zhu LP, Wang JB, Huang YS, Ju JT, Ma QF. Millennial-scale hydroclimate dynamics in the Southeastern Tibetan Plateau. Palaeogeogr Palaeoclimatol Palaeoecol, 2025, 661: 112702
  15. Huang L, Zhu LP, Huang YS, Wang JB, Ju JT, Ma QF. Hydroclimate variability in southeastern Tibetan Plateau since the late Quaternary. CATENA, 2025, 248: 108569
  16. Ma QF, Zhu LP, Wang JB, Ju JT, Wang Y, Huang L, Haberzettl T. A modern pollen dataset from lake surface sediments on central-western Tibetan Plateau. Earth Syst Sci Data, 2024, 16: 311–32
  17. Zhu FF, Ju JT, Qiao BJ, Zhu LP. Impact of lake expansion on the underwater topography. Int J Digit Earth, 2024, 17: 2417692
  18. Kaphle B, Wang JB, Ju JT, Lü XM, Kai JL, Clarke L, Khanal BR, Humagain S, Srivastava G, Paudayal KN. Environmental risk assessment of surface sediments, southern Himalaya. Environ Monit Assess, 2024, 197: 97
  19. Kou QQ, Zhu LP, Wang JB, Ma QF, Ju JT. Reconstruction of temperature and hydroclimate in Serling Co since last deglaciation. Palaeogeogr Palaeoclimatol Palaeoecol, 2024, 655: 112557
  20. Kai JL, Wang JB, Ju JT, Huang L, Daut G, Zhu LP. High thermodynamical sensitivity of CO₂ emissions from Nam Co. Sci Total Environ, 2024, 947: 174682
  21. Li CL, Zhu LP, Ma QF, Ju JT, Cheng JJ, Zhang R, Aquino-López MA, Kou QQ, Lü XM, Wang JB. Human-environment interactions since Little Ice Age. Sci Total Environ, 2024, 943: 173741
  22. Kou QQ, Zhu LP, Xu T, Ma QF, Wang JB, Ju JT, Chen H. Late mid-Holocene cooling recorded by Chibuzhang Co. Quat Sci Rev, 2024, 334: 108740
  23. Li MH, Zhu LP, Wang JB, Ju JT, Wang XX, Liu C, Ma QF, Xu T, Qiao BJ. Elemental interactions between pore water and Holocene lake sediments. Environ Earth Sci, 2024, 83: 111
  24. Li CL, Zhu LP, Ju JT, Ma QF, Wang JB, Kou QQ. Impacts of human feces on lake sediments based on stanol proxies. Ecol Indic, 2024, 158: 111487
  25. Ma QF, Zhu LP, Wang JB, Ju JT, Lü XM, Frenzel P, Haberzettl T. Southward shifts of westerlies during North Atlantic cooling. Quat Sci Rev, 2024, 324: 108440
  26. Liu C, Zhu LP, Wang JB, Ju JT, Ma QF, Kou QQ. Salinity decline of Tibetan lakes 2000–2019. Int J Digit Earth, 2023, 16: 2644–2659
  27. Yu SW, Wang JB, Ruehland KM, Zhu LP, Ju JT, Liu C, Ma QF, Smol JP. Surface-sediment diatom assemblages and salinity transfer function. Ecol Indic, 2023, 155: 110952
  28. Guo LN, Zheng HX, Wu YH, Zhu LP, Wang JB, Ju JT. Modelling heat balance of a large alpine lake. Remote Sens, 2023, 15: 3982
  29. Du BL, Zhu LP, Ju JT, Wang JB, Ma QF, Kou QQ. Quantification of heat storage change and evaporation in inland lakes. Remote Sens, 2023, 15: 3460
  30. Cui YY, Zhu LP, Ju JT, Luo L, Wang YJ. Climate Change and Hydrological Response in Ranwu Lake Basin. Water, 2023, 15: 2119
  31. Ma QF, Zhu LP, Wang JB, Ju JT, Wang Y. Holocene spring atmospheric circulation variations. Geophys Res Lett, 2023, 50: e2023GL103163
  32. Kou QQ, Zhu LP, Wang JB, Ma QF, Ju JT. Archaeal tetraether-inferred hydrological variations of Serling Co. Glob Planet Change, 2023, 224: 104113
  33. Pang SY, Zhu LP, Liu C, Ju JT. Declining chlorophyll-a in Tibetan lakes 1986–2021. Remote Sens, 2023, 15: 1503
  34. Kou QQ, Zhu LP, Ju JT, Wang JB, Xu T, Li CL, Ma QF. Salinity control on GDGT proxies for paleoclimate. Palaeogeogr Palaeoclimatol Palaeoecol, 2022, 601: 111127
  35. Kou QQ, Zhu LP, Ma QF, Wang JB, Ju JT, Xu T, Liu C, Li CL, Kai JL. Distribution of archaeal tetraethers in lake sediments. Chem Geol, 2022, 601: 120825
  36. Liu C, Zhu LP, Wang JB, Ju JT, Ma QF, Qiao BJ, Wang Y, Xu T, Chen H, Kou QQ, Zhang R, Kai JL. In-situ water quality investigation of Tibetan lakes. Sci Bull, 2021, 66: 1727–1730
  37. Laug A, Haberzettl T, Pannes A, Schwarz A, Turner F, Wang JB, Ju JT, Schwalb A. Holocene paleoenvironmental change of Taro Co. J Paleolimnol, 2021, 66: 171–186
  38. Li MH, Zhu LP, Wang JB, Ju JT, Liu C, Ma QF, Xu T, Qiao BJ, Wang XX. Holocene lake evolution and glacial fluctuations of a melt-recharge lake. Front Earth Sci, 2021, DOI:10.3389/feart.2021.656281
  39. Chen H, Zhu LP, Wang JB, Ju JT, Ma QF. Paleoclimate over past 13 kyr recorded by Chibuzhang Co. Palaeogeogr Palaeoclimatol Palaeoecol, 2021, 573: 110433
  40. Lu SL, Jin JM, Zhou JF, Li XD, Ju JT, Li MY, Chen F, Zhu LP, Zhao HL, Yan Q, Xie CW, Yao XJ, Fagherazzi S. Drainage basin reorganization driven by climate and human activity. Glob Planet Change, 2021, 201: 103494
  41. Liu C, Zhu LP, Li JS, Wang JB, Ju JT, Qiao BJ, Ma QF, Wang SL. Increasing water clarity of Tibetan lakes 2000–2020. Remote Sens Environ, 2021, 253: 112199
  42. Kai JL, Wang JB, Ju JT, Huang L, Ma QF, Daut G, Zhu LP. Hydrochemistry and modern sedimentation of Nam Co. J Great Lakes Res, 2020, 46: 961–975
  43. Wang JB, Huang L, Ju JT, Daut G, Ma QF, Zhu LP, Haberzettl T, Baade J, Mäusbacher R, Hamilton A, Graves K, Olsthoorn J, Laval BE. Seasonal stratification of deep high-altitude Nam Co. J Hydrol, 2020, 584: 124668
  44. Ma QF, Zhu LP, Wang JB, Ju JT, Wang Y, Lü XM, Kasper T, Haberzettl T. Late Holocene vegetation and human impacts on central Tibet. Sci Total Environ, 2020, 708: 135370
  45. Laug A, Turner F, Engels S, Wang JB, Haberzettl T, Ju JT, Yu SW, Kou QQ, Börner N, Schwalb A. Chironomid depth threshold across Tibetan lakes. J Limnol, 2020, 79: 278–292
  46. Qiao BJ, Zhu LP, Wang JB, Ju JT, Ma QF, Huang L, Chen H, Liu C, Xu T. Lake water storage change linked to climate, central Tibet. J Hydrol, 2019, 578: 124052
  47. Chen H, Zhu LP, Ju JT, Wang JB, Ma QF. ¹⁴C reservoir effect in Chibuzhang Co sediments. Quat Geochronol, 2019, 52: 88–102
  48. Zhu LP, Wang JB, Ju JT, Ma N, Zhang YS, Liu C, Han BP, Liu LS, Wang MD, Ma QF. Multi-timescale environmental changes in Serling Co. Sci Bull, 2019, 64: 422–424
  49. Wang JB, Huang L, Ju JT, Daut G, Wang Y, Ma QF, Zhu LP, Haberzettl T, Baade J, Mäusbacher R. Spatial-temporal water temperature variations in Nam Co. J Great Lakes Res, 2019, 45: 212–223
  50. Ma QF, Zhu LP, Lü XM, Wang JB, Ju JT, Kasper T, Daut G, Haberzettl T. Late glacial-Holocene climate at Tangra Yumco. Glob Planet Change, 2019, 174: 16–25
  51. Xu T, Zhu LP, Lü XM, Ma QF, Wang JB, Ju JT, Huang L. Mid-late Holocene glacier fluctuations at Buruo Co. Palaeogeogr Palaeoclimatol Palaeoecol, 2019, 517: 74–85
  52. Liu KS, Liu YQ, Han BP, Xu BQ, Zhu LP, Ju JT, Jiao NZ, Xiong JB. Glacial melt drives bacterial community shifts. Sci Total Environ, 2019, 651: 2059–2067
  53. Huang L, Wang JB, Zhu LP, Ju JT, Daut G. Warming simulation of Nam Co 1979–2012. J Geophys Res Atmos, 2017, 122: 13095–13107
  54. Wang Y, Wang JB, Zhu LP, Lin X, Hu JF, Ma QF, Ju JT, Peng P, Yang RM. Mid-late Holocene paleoenvironment of Tangra Yumco. Holocene, 2017, 27: 1475–1486(线上 2019
  55. Qiao BJ, Zhu LP, Wang JB, Ju JT, Ma QF, Liu C. Lake water storage estimation, NW Tibetan Plateau. Quat Int, 2017, 454: 56–67
  56. Ma QF, Zhu LP, Wang JB, Ju JT, Lü XM, Wang Y, Guo Y, Yang RM, Kasper T, Haberzettl T, Tang LY. Artemisia/Chenopodiaceae ratio from surface sediments. Palaeogeogr Palaeoclimatol Palaeoecol, 2017, 479: 138–145
  57. Ma QF, Zhu LP, Lü XM, Wang Y, Guo Y, Wang JB, Ju JT, Peng P, Tang LY. Modern pollen assemblages, SW Tibetan Plateau. Boreas, 2017, 46: 242–253
  58. Yang RM, Zhu LP, Wang JB, Ju JT, Ma QF, Turner F, Guo Y. Closed lake volume variations 1976–2013. Clim Change, 2017, 140: 621–633
  59. Wang R, Liu ZF, Jiang LG, Yao ZJ, Wang JB, Ju JT. Surface water chemistry of two lakes in Changtang. J Environ Sci, 2016, 41: 183–194
  60. Huang L, Zhu LP, Wang JB, Ju JT, Wang Y, Zhang JF, Yang RM. Holocene glacial activity recorded by Laigu Lake. Palaeogeogr Palaeoclimatol Palaeoecol, 2016, 456: 37–45
  61. Guo Y, Zhu LP, Frenzel P, Ma QF, Ju JT, Peng P, Wang JB, Daut G. Holocene lake level fluctuations at Taro Co. Holocene, 2016, 26: 29–43
  62. Wang JB, Zhu LP, Wang Y, Ju JT, Daut G, Li MH. Spatial variability of Nam Co surface sediments. Sediment Geol, 2015, 319: 69–77
  63. Ma QF, Zhu LP, Lü XM, Guo Y, Ju JT, Wang JB, Wang Y, Tang LY. Pollen-inferred Holocene climate of Taro Co. Sci Bull, 2014, 59: 4101–4114
  64. Peng P, Zhu LP, Frenzel P, Wrozyna C, Ju JT. Water depth related ostracod distribution, Pumayum Co. Quat Int, 2013, 313: 47–55
  65. Wang Y, Zhu LP, Wang JB, Ju JT, Lin X. Spatial distribution of organic matter, Nam Co. Sci Bull, 2012, 57: 4753–4764
  66. Wang JB, Zhu LP, Wang Y, Ju JT, Xie MP, Daut G. Water chemistry comparison of Nam Co. J Great Lakes Res, 2010, 36: 587–595
  67. Wang JB, Zhu LP, Nishimura M, Nakamura T, Ju JT, Xie MP, Watanabe T, Matsunaka T. Multi-core proxy variability of Pumayum Co. J Paleolimnol, 2009, 42: 303–315
  68. Wang JB, Zhu LP, Daut G, Ju JT, Lin X, Wang Y, Zhen XL. Bathymetry and water quality of Nam Co. Limnology, 2009, 10: 149–158
  69. Lin X, Zhu LP, Wang Y, Wang JB, Xie MP, Ju JT, Mäusbacher R, Schwalb A. n-alkane records since 8.4 ka BP, Nam Co. Sci Bull, 2008, 53: 3051–3057
  70. Zhu LP, Wu YH, Wang JB, Lin X, Ju JT, Xie MP, Li MH, Mäusbacher R, Schwalb A, Daut G. Environmental changes since 8.4 ka from Nam Co core. Holocene, 2008, 18: 831–839
  71. 秦璇, 王君波, 叶传永, . 西藏第一大湖泊色林错热力学变化特征:双对流混合及影响因素. 湖泊科学, 2025, 37(6):2248-2259.
  72. 李明慧, 朱立平, 鞠建廷, . 不同环境下湖泊矿物和湖水性质对碳埋藏的制约——以西藏郭扎错为例. 地球学报, 2024, 45(5):769-776.
  73. 汪勇, 末次冰盛期以来青藏高原西北部阿克赛钦湖古水热变化及对气候的响应. 安徽省, 安徽师范大学, 2022-03-29.
  74. 刘翀, 朱立平, 王君波, . 青藏高原湖泊水质实测调查(英文). Science Bulletin, 2021, 66(17):1727-1730.
  75. 董楠, 朱立平, 陈浩, . 青藏高原赤布张错介形类反映的近13000年气候变化. 第四纪研究, 2021, 41(2):434-445.
  76. 杨瑞敏, 张廷军, 朱立平, . 青藏高原东南部来古冰湖变化及其溃决洪水评估. 第四纪研究, 2019, 39(5):1171-1180.
  77. 朱立平, 鞠建廷, 乔宝晋, . “亚洲水塔”的近期湖泊变化及气候响应:进展、问题与展望. 科学通报, 2019, 64(27):2796-2806.
  78. 开金磊, 王君波, 黄磊, . 西藏纳木错及其入湖河流溶解有机碳和总氮浓度的季节变化. 湖泊科学, 2019, 31(4):1099-1108.
  79. 许腾, 朱立平, 王君波, . 青藏高原北部冰前湖沉积记录的中晚全新世冰川活动. 第四纪研究, 2019, 39(3):717-730.
  80. 朱少航, 朱立平, 王君波, . 西藏玛旁雍错沉积揭示的晚冰期以来环境变化. 第四纪研究, 2019, 39(3):602-614.
  81. 崔颖颖, 朱立平, 鞠建廷, . 基于流量监测的西藏东南部然乌湖水量平衡季节变化及其补给过程分析. 地理学报, 2017, 72(7):1221-1234.
  82. 朱立平, 乔宝晋, 杨瑞敏, . 青藏高原湖泊水量与水质变化的新认知. 自然杂志, 2017, 39(3):166-172.
  83. 刘翀, 朱立平, 王君波, . 基于MODIS的青藏高原湖泊透明度遥感反演. 地理科学进展, 2017, 36(5):597-609.
  84. 黄磊, 王君波, 朱立平, . 纳木错水温变化及热力学分层特征初步研究. 湖泊科学, 2015, 27(4):711-718.
  85. 马庆峰, 朱立平, 吕新苗, . 花粉揭示的青藏高原西南部塔若错全新世以来植被与气候变化. 科学通报, 2014, 59(26):2631-2644.
  86. 汪勇, 朱立平, 王君波, . 青藏高原中部纳木错湖泊表层沉积物有机质空间分布及其揭示的沉积过程. 科学通报, 2012, 57(32):3090-3101.
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  88. 王君波, 鞠建廷, 朱立平. 季风期前后西藏纳木错湖水及入湖河流水化学特征变化. 地理科学, 2013, 33(1):90-96. DOI:10. 13249/j. cnki. sgs. 2013. 01. 018.
  89. 彭萍, 朱立平, 鞠建廷, . 西藏普莫雍错介形类反映的中晚全新世以来湖面波动与环境变化. 气候变化研究进展, 2012, 8(5):25-32.
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  91. 朱立平, 鞠建廷, 汪勇, . 藏南普莫雍错流域水体离子组成与空间分布及其环境意义(英文). Journal of Geographical Sciences, 2010, 20(1):109-120.
  92. 王君波, 朱立平, 鞠建廷, . 西藏普莫雍错不同岩芯环境指标的对比研究及其反映的近200年来环境变化. 湖泊科学, 2009, 21(6):819-826.
  93. 林晓, 朱立平, 王君波, . 西藏纳木错表层沉积物中正构烷烃的来源与空间分布特征. 湖泊科学, 2009, 21(5):654-662.
  94. 王君波, 朱立平, 鞠建廷, . 西藏纳木错东部湖水及入湖河流水化学特征初步研究. 地理科学, 2009, 29(2):288-293. DOI:10. 13249/j. cnki. sgs. 2009. 02. 010.
  95. 王君波, 朱立平, Gerhard Daut, . 西藏纳木错水深分布及现代湖沼学特征初步分析. 湖泊科学, 2009, 21(1):128-134.
  96. 林晓, 朱立平, 汪勇, . 西藏纳木错湖芯正构烷烃及其反映的8. 4ka以来的环境变化. 科学通报, 2008, (19):2352-2357.
  97. 谢曼平, 朱立平, 彭萍, . 8. 4ka以来纳木错湖芯介形类组合的环境变化意义. 地理学报, 2008, (9):931-944.
  98. 王君波, 鞠建廷, 朱立平. 两种激光粒度仪测量湖泊沉积物粒度结果的对比. 湖泊科学, 2007, (5):509-515.
  99. 朱立平, 王君波, 林晓, . 西藏纳木错深水湖芯反映的8·4ka以来气候环境变化. 第四纪研究, 2007, (4):588-597.
  100. 朱立平, 鞠建廷, 王君波, . 湖芯沉积物揭示的末次冰消开始时期普莫雍错湖区环境变化. 第四纪研究, 2006, (5):772-780.