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简历:主要从事冻土生态与环境研究,当前重点关注冻土变化及其生态水文效应。《npj Extreme Ecosystems》(https://www.nature.com/npjextremeeco/)创刊主编,《Permafrost and Periglacial Processes》《Advances in Climate Change Research》编委,《Frontiers in Earth Science》副编辑,以及世界气象组织(WMO)全球冰冻圈观测计划(GCW)专家组成员,全球多年冻土观测网(GTN-P)中国代表,中国生态学学会高寒生态专委会副秘书长,中国地理学会冻土与寒区工程专委会委员,四川黄河流域生态保护与资源利用实验室(筹)学委会委员。承担中国科学院西部青年学者、国家自然科学基金面上/青年基金、甘肃省科技重大专项课题等,曾任《npj Climate and Atmospheric Science》副主编。发表论文140余篇,其中一作和通讯论文近60篇。受邀担任加拿大自然科学与工程研究委员会/瑞典研究委员会等的通讯评审专家,以及《Science Bulletin》《Science China Earth Sciences》《Nature Communications》《Earth-Science Reviews》《Geophysical Research Letters》等50余种中英文期刊的审稿人。 研究领域:自然地理学;地图学与地理信息系统: 冻土生态水文;寒区环境与 工程;冻土模拟与遥感应用 职称:研究员职务:无获奖及荣誉:1. 2026,《Advances in Climate Change Research》2025年度特别贡献编委 2. 2026,《冰川冻土》2025年度特别贡献编委 3. 2025,“西部之光”人才培养计划终期评估优秀 4. 2025,《冰川冻土》2024年度特别贡献编委 5. 2025,施普林格·自然杰出编辑奖(2025年) 6. 2024,甘肃省自然科学奖二等奖“气候暖湿化驱动下江河源区冻土的响应机制及其环境效应”(排名第1) 7. 2023,《冰川冻土》2023年度优秀编委 8. 2022,《冰川冻土》《Advances in Climate Change Research》2022年度优秀编委 9. 2021,《冰川冻土》《Advances in Climate Change Research》2021年度优秀编委 10. 2021,美国地球物理学会(AGU)2021年度优秀审稿人 11. 2016,中国地理学会首届最具影响力中国地理期刊优秀论文奖 代表论著:1. Shizhen Li, Dongliang Luo*, et al., (2026). Freezing, not thawing, indirectly controls soil organic carbon heterogeneity in the Source Areas of the Yangtze and Yellow Rivers. Ca-tena, 270: 110140 (SCI, 中国科学院一区). 2. Chenyang Peng, Dongliang Luo*, Yu Sheng, Jichun Wu, Jia Liu, Shizhen Li, Yajuan Zao (2026). Physics-guided machine learning approach for reconstructing air temperature in warm permafrost on the Qinghai-Xizang Plateau. Advances in Climate Change Re-search, DOI: 10.1016/j.accre.2026.04.013 (SCI, 中国科学院一区). 3. Jia Liu, Dongliang Luo*, et al., (2026). 100-m and 1000-m regular grid observations re-veal vegetation-controlled ground surface thermal differentiation in the alpine permafrost of the Headwater Area of the Yellow River. Geoderma, 466: 117696 (SCI, 中国科学院一区). 4. Jia Liu, Dongliang Luo*, QingbaiWu, Wojciech Dobiński, Huijun Jin, OlgaMakarieva, Fangfang Chen, Shizhen Li, Raul-D. Șerban (2025). Divergent controls on surface and thermal offsets in permafrost across the three poles. Npj Climate and Atmospheric Sci-ence, 8: 354 (SCI, 中国科学院一区). 5. Dongliang Luo*, Jia Liu, Fangfang Chen, Shizhen Li (2025). Observed talik develop-ment triggers a tipping point in marginal permafrost of the Qinghai-Xizang Plateau. Geo-science Frontiers, 16: 102122 (SCI, 中国科学院一区). 6. Dongliang Luo*, Lei Wang, Deliang Chen (2025). Changes and impacts of the vulnera-ble cryosphere. Npj Climate and Atmospheric Science, 8: 237 (SCI, 中国科学院一区). 7. Shizhen Li, Dongliang Luo*, Jinniu Wang, Yanqiang Wei, Ziqiang Yuan (2025). As-sessing soil quality in association with frozen ground in the Source Areas of the Yangtze and Yellow Rivers, Qinghai-Tibet Plateau. Geoderma, 456: 117264 (SCI, 中国科学院一区). 8. Jia Liu, Dongliang Luo*, Wenjie Lei, Fangfang Chen, Ruixia He, Chengsong Yang, Yan Lu, Shizhen Li (2025). Variations of soil thermal conductivity in the Three-River Source Region. Advances in Climate Change Research, 16: 552–564. DOI: 10.1016/j.accre.2025.03.011 (SCI, 中国科学院一区). 9. Dongliang Luo*, Shizhen Li, Yanlin Zhang, Huijun Jin, Qingfeng Wang, Fangfang Chen, Jia Liu, Chenyang Peng, Yajuan Zao (2025). Declining autumn zero-curtain duration in the Headwater Area of the Yellow River (2011–2024). Advances in Climate Change Research, 16: 538–551. DOI: /10.1016/j.accre.2025.03.004 (SCI, 中国科学院一区). 10. Dongliang Luo*, Zeyong Gao, Fangfang Chen, Luyang Wang, Jia Liu, Shizhen Li, Qi Shen, Yajuan Zao (2025). Revised understanding of permafrost shape: inclusion of the transition zone and its climatic and environmental significances. Journal of Earth Sci-ence, 36(1): 339–346. 10.1007/s12583-024-0111-3 (SCI, 中国科学院一区). 11. Fangfang Chen, Dongliang Luo*, Yiting Gao, Wenjie Lei (2023). Decadal expansion and contraction of permafrost from 1901 to 2020 in the Three-River Source Region, Qinghai-Tibet Plateau. Advances in Climate Change Research, 14: 226–236, DOI: /10.1016/j.accre.2023.04.003 (SCI, 中国科学院一区). 12. Lei Liu, Dongliang Luo*, Lei Wang, Fangfang Chen, Yadong Huang (2021). Spatio-temporal variations of freezing and thawing indices from 1900 to 2017 in the upper Brahmaputra River Basin, Tibetan Plateau. Advances in Climate Change Research, 12(1): 6–17. 10.1016/j.accre.2020.10.003 (SCI, 中国科学院一区). 13. Dongliang Luo*, Lei Liu, Huijun Jin, Xufeng Wang, Fangfang Chen (2020). Character-istics of ground surface temperature at Chalaping in the source area of the Yellow River, northeastern Tibetan Plateau. Agricultural and Forest Meteorology, 281: 107819. DOI: 10.1016/j.agrformet.2019.107819 (SCI, 中国科学院一区, ESI高被引论文). 14. Dongliang Luo, Huijun Jin*, Victor F. Bense, Xiaoying Jin, Xiaoying Li (2020). Hydro-thermal processes of near-surface warm permafrost in response to strong precipitation events in the Headwater Area of the Yellow River, Tibetan Plateau. Geoderma, 376: 114531. DOI: 10.1016/j.geoderma.2020.114531 (SCI, 中国科学院一区). 15. Dongliang Luo, Huijun Jin*, Heqiang Du, Chao Li, Qiang Ma, Shuiqiang Duan, Guosh-uai Li (2020). Variation of alpine lakes from 1986 to 2019 in the Headwater Area of the Yellow River, Tibetan Plateau using Google Earth Engine. Advances in Climate Change Research, 11(1): 11–21. DOI: 10.1016/j.accre.2020.05.007 (SCI, 中国科学院一区). 16. Dongliang Luo*, Huijun Jin, Victor F. Bense (2019). Ground surface temperature and the detection of permafrost in the rugged topography on NE Qinghai-Tibet Plateau. Geo-derma, 333: 57–68. DOI: 10.1016/j.geoderma.2018.07.011 (SCI, 中国科学院一区). 17. Dongliang Luo*, Huijun Jin, Sergey S. Marchenko, Vladimir E. Romanovsky (2018). Difference between near-surface air, land surface and ground surface temperatures and their influences on the frozen ground on the Qinghai-Tibet Plateau. Geoderma, 312: 74–85. DOI: 10.1016/j.geoderma.2017.09.037 (SCI, 中国科学院一区, ESI高被引论文). 18. Dongliang Luo*, Huijun Jin, Sergei S. Marchenko, Vladimir Romanovsky (2014). Dis-tribution and changes of the active layer thickness and temperature in the Sources Areas of the Yellow River Using the GIPL Model. Science China–Earth Sciences, 57(8): 1834–1845. DOI: 10.1007/s11430-014-4852-1 (SCI, 中国科学院一区). 19. Dongliang Luo, Huijun Jin*, Lanzhi Lü, Qingbai Wu (2014). Spatiotemporal characteris-tics of freezing/thawing processes of active layer in the Source Areas of the Yellow River. Chinese Science Bulletin, 59(24): 3034–3045. DOI: 10.1007/s11434-014-0189-6 (SCI, 中国科学院一区). 20. Huijun Jin*, Xiaoying Jin*, Ruixia He, Dongliang Luo*, Xiaoli Chang, et al., (2019). Evolution of permafrost in China during the last 20 ka. Science China Earth Sciences, 62(8): 1207–1223. DOI: 10.1007/s11430-018-9272-0 (SCI, 中国科学院一区). 21. 李世珍, 袁自强, 林琳, 陈方方, 王金牛, 高怡婷, 雷汶杰, 刘佳, 彭贻菲, 沈琦, 金会军, 罗栋梁* (2024). 江河源冻土区土壤碳氮空间分布特征及其影响因素. 生态学报, 44(12): 5246–5258 (CSCD, 中文领军期刊). 22. 高怡婷, 罗栋梁*, 陈方方, 雷汶杰, 金会军 (2023). 黄河源头区地面热状态及冻融特征, 地理学报, 78(3): 604–619 (EI, CSCD, 中文领军期刊). 23. 罗栋梁*, 刘佳, 陈方方, 李世珍 (2024). 多年冻土过渡带研究进展与展望. 地球科学, 49(11): 4063–4081 (EI, CSCD, 中文梯队期刊). 24. 罗栋梁, 金会军*, 何瑞霞, 杨思忠 (2014). 黄河源区地表植被对活动层温度和水分的影响. 地球科学, 39(4): 421–430. DOI: 10.3799/dqkx.2014.040 (EI, CSCD, 中文梯队期刊). 25. 罗栋梁, 金会军*, 吕兰芝, 吴青柏 (2014). 黄河源区多年冻土活动层和季节冻土冻融过程时空特征. 科学通报, 59(14): 1327–1336 (EI, CSCD, 中国科学院一区, 中文领军期刊). 26. Mingxin Yang, Shizhen, Shouxin Wang, Qingdongzhi Huang, Qi Shen, Yanbin Kang, Mingming Shi, Yafei Zhang, Dongliang Luo* (2025). Characteristics of soil organic carbon in permafrost regions of the Headwater Area of the Yellow River. Carbon Neu-trality, 4: 16 (ESCI, IF2024 = 12.4). 27. Dongliang Luo*, Huijun Jin, Xiaoying Jin, Ruixia He, Xiaoying Li, Reginald R. Muskett, Sergey S. Marchenko, Vladimir E. Romanovsky (2018). Elevation-dependent thermal re-gime and dynamics of frozen ground in the Bayan Har Mountains, Qinghai-Tibet Plateau. Permafrost and Periglacial Processes, 29: 257–270. DOI: 10.1002/ppp.1988 (SCI, 中国科学院二区). 28. Dongliang Luo*, Huijun Jin, Ruixia He, Xufeng Wang, Reginald R. Muskett, Sergey S. Marchenko, Vladimir E. Romanovsky (2018). Characteristics of water-heat exchanges and inconsistent surface temperature changes at an elevational permafrost site on the Qinghai-Tibet Plateau. Journal of Geophysical Research: Atmospheres, 123: 10057–10075. DOI: 10.1029/2018JD028298 (SCI, 中国科学院二区,TOP, 封面文章). 29. Dongliang Luo*, Huijun Jin, Qingbai Wu, Victor F. Bense, et al., (2018). Thermal re-gime of warm-dry permafrost in relation to ground surface temperature in the Source Ar-eas of the Yangtze and Yellow rivers on the Qinghai-Tibet Plateau, SW China. Science of the Total Environment, 618: 1033–1045. DOI: 10.1016/j.scitotenv.2017.09.083 (SCI, 中国科学院二区TOP). 30. Fangfang Chen, Dongliang Luo*, Liyun Dai, Yiting Gao, Wenjie Lei (2023). Spatial and temporal characteristics of the site-specific N-factor over the Qinghai-Tibet Plateau. Cold Regions Science and Technology, 205: 103684. DOI: 10.1016/j.coldregions.2022.103684 (SCI, 中国科学院二区). 31. Yuan Qi, Shiwei Li, Youhua Ran, Hongwei Wang, Xihong Lian, Dongliang Luo* (2021). Mapping frozen ground in the Qilian Mountains in 2004–2019 using Google Earth En-gine Cloud Computing. Remote Sensing, 13(1): 149. DOI: 10.3390/rs13010149 (SCI, 中国科学院二区). 32. Dongliang Luo*, Donglin Guo, Huijun Jin, Sizhong Yang, Marcia K. Phillips, Beat Frey (2022). Ecological impacts of degrading permafrost. Frontiers in Earth Science, 10: 967530. DOI: 10.3389/feart.2022.967530 (SCI, 中国科学院三区). 33. Lei Liu, Dongliang Luo*, Lei Wang, Fangfang Chen, Yadong Huang (2020). Variability of soil freeze depth in association with climate change from 1901 to 2016 in the upper Brahmaputra River Basin, Tibetan Plateau, Southwest China. Theoretical and Applied Climatology, 142(1–2): 19–28. DOI: 10.1007/s00704-020-03291-4 (SCI, 中国科学院三区). 34. Huijun Jin*, Jef Vandenberghe, Dongliang Luo*, Stuart A. Harris, Ruixia He, Xuemei Chen, Xiaoying Jin, Qingfeng Wang, Ze Zhang, Valentin Spektor, Qingbai Wu, Shaoling Wang. Quaternary Permafrost in China: Framework and Discussions. Quaternary, 2020, 3: 32. DOI: 10.3390/quat3040032 (ESCI). 35. Dongliang Luo*, Qingbai Wu, Huijun Jin*, Sergei S. Marchenko, Lanzhi Lü, Siru Gao (2016). Recent changes in active layer thickness across the northern hemisphere. En-vironmental Earth Sciences, 75: 555. DOI: 10.1007/s12665-015-5229-2 (SCI, 中国科学院四区). 36. Dongliang Luo*, Huijun Jin, Lanzhi Lü, Jian Zhou (2016). Spatiotemporal variations of extreme ground surface temperature in the Three-River Headwaters Region during 1980-2013. Theoretical and Applied Climatology, 123: 885–897. DOI 10.1007/s00704-015-1543-6 (SCI, 中国科学院三区). 37. Dongliang Luo, Huijun Jin*, Rui Jin, Xingguo Yang, Lanzhi Lü (2014). Spatiotemporal variations of climate warming in northern Northeast China as indicated by freezing and thawing indices. Quaternary International, 349: 187–195. DOI: /10.1016/j.quaint.2014.06.064 (SCI, 中国科学院三区). 38. Dongliang Luo*, Youhua Ran, Kang Wang, Fangfang Chen, Jia Liu (2024). Perma-frost-climate relationship and permafrost modelling and mapping. In: Reference Module in Earth Systems and Environmental Sciences, Elsevier, 1–17. 39. 刘磊, 罗栋梁* (2026). 冰冻圈科学融入高中地理教学的思考. 冰川冻土 (接收, CSCD). 40. 罗栋梁*, 刘佳, 李晓英, 杜柯飞, 金会军, 陈方方, Olga Makarieva, 王青志 (2025). 气候变化下河冰椎演化及其生态水文与灾害效应. 地球科学进展, 40(8): 767-777 (CSCD). 41. 沈琦, 罗栋梁*, 陈方方, 刘佳, 田世民, 雷汶杰, 彭贻菲, 李世珍 (2025). 黄河源区冻土影响下1980-2019年水源涵养空间格局. 地理研究, 44(3): 876–890 (CSCD). 42. 雷汶杰, 罗栋梁*, 陈方方, 刘佳, 高怡婷, 彭贻菲, 李世珍, 沈琦 (2024). 基于HYDRUS模型的1979—2018年黄河源头区冻土热状态变化. 地球科学进展, 39(11): 1183–1195 (CSCD). 43. 罗栋梁*, 金会军, 吴青柏, 何瑞霞, 张林, 王金牛, 李晓英, 李世珍 (2023). 保护多年冻土, 助力双碳目标的实现. 西藏科技, 45(11): 82–87. 44. 罗栋梁*, 金会军, 吴青柏, Olga MAKARIEVA, 田世民, 康建芳, 王金牛, 彭小清, Wojciech DOBIŃSKI, 陈方方 (2023). 天然状态下多年冻土区活动层厚度研究进展与展望. 冰川冻土, 45(2): 558–574 (CSCD). 45. 罗栋梁*, 雷汶杰, 康建芳, 王金牛, 孙建, 张林, 魏彦强, 陈方方, 高怡婷 (2023). 高山多年冻土区地面温度研究进展. 草业科学, 40(4): 942–964 (CSCD). 46. 陈方方, 罗栋梁*, 刘磊, 金会军, 李超 (2021). 基于CRU资料的三江源区1901-2018年冻融指数变化, 冰川冻土, 43(2): 417–426 (CSCD). 47. 李超, 罗栋梁*, 李雪梅, 刘磊, 陈方方 (2021). 2000–2018年天山植被生态质量综合评价, 兰州大学学报·自然科学版, 57(4): 528–536 (CSCD). 48. 刘磊, 罗栋梁* (2020). 1977–2017年雅江流域中下游大气/地面冻融指数时空变化特征. 冰川冻土, 42(3): 812–822 (CSCD). 49. 罗栋梁, 金会军* (2014). 黄河源区玛多县1953~2012年气温和降水特征及突变分析. 干旱区资源与环境, 28(11): 185–192 (CSCD). 50. 罗栋梁, 金会军*, 林琳, 游艳辉, 杨思忠, 王永平 (2013). 巴颜喀拉山青康公路沿线多年冻土和活动层分布特征及影响因素. 地理科学, 33(5): 635–640 (CSCD). 51. 罗栋梁, 金会军*, 林琳, 何瑞霞, 杨思忠, 常晓丽 (2012). 黄河源区多年冻土温度及厚度研究新进展. 地理科学, 32(7): 898–904 (CSCD). 52. 罗栋梁, 金会军*, 林琳, 何瑞霞, 杨思忠, 常晓丽 (2012). 青海高原中、东部多年冻土退化及其原因分析. 冰川冻土, 34(3): 538–546 (CSCD, 中国地理学会首届最具影响力中国地理期刊优秀论文奖, F5000—中国精品科技期刊顶尖学术论文). 53. 罗栋梁, 金会军*, 杨思忠, Bernd Wünnerman (2010). 青藏高原东北部冬给措纳湖湖区冰缘环境探讨. 冰川冻土, 32(5): 935–940 (CSCD). 54. 罗栋梁, 郭万钦, 金会军, 盛煜 (2021). 2020-2021年中国黄河源区冰川冻土历史现状及发展报告. 安黎哲、林震主编, 《黄河生态文明绿皮书: 黄河流域生态文明建设发展报告(2020)》, 社会科学文献出版社, 2021, 第120–142页. 皮书数据库:https://www.pishu.com.cn/skwx_ps/initDatabaseDetail?siteId=14&contentId=13657234&contentType=literature. 承担科研项目情况:1.国家自然科学基金面上项目“复杂下垫面影响下黄河源区多年冻土温度补偿机制研究”(42571181,2026.01-2029.12),项目负责人,执行; 2.国家自然科学基金面上项目“复杂地形和局地因素复合作用下江河源区地面温度特征和冻土模型研究”(编号:41671060,2017.01–2020.12),项目负责人,已结题; 3.国家自然科学基金青年基金项目“黄河源区多年冻土活动层厚度空间分异特征研究” (编号:41301068,2014.01–2016.12),项目负责人,已结题; 4.国家自然科学基金联合重点基金“黄河源区水源涵养演变过程与机理研究”(U2243214,2022.01-2025.12),国家自然科学基金联合基金,课题负责人,已结题; 5.国家自然科学基金重点基金课题“气候变化驱动下雅鲁藏布江冰川冻土植被协同变化及其径流效应”(编号:91747201,2018.01–2021.12),“雅鲁藏布江流域冻土监测与模拟”,课题负责人,已结题; 6.黄河源区水源涵养和碳排放对冻土变化的响应研究,中国科学院西部青年学者重点项目(2022.01-2024.12),项目负责人,已结题; 7.高寒区工程-环境协同演化与互馈机制(23ZDFA017,2024.01-2026.12),甘肃省科技重大专项,200万元,课题负责人,执行; 8.国家重点研发计划“我国江河湖库水文要素监测技术和保障体系研究”(编号:2017YFC0405701,2017.07–2020.12),“江河湖库水文要素监测技术与保障体系研究”,专题负责人,已结题。 |
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