姓名:吴铎

职称: 青年研究员  博士生导师 

性别:男

毕业院校:兰州大学

学历:研究生

学位:博士

在职信息:在职

所在单位:资源环境学院

入职时间:2019.07

办公地点:观云楼1509

电子邮箱:dwu@lzu.edu.cn

学习经历

2015.09~2017.03  匹兹堡大学,地质与环境系,联合培养(导师:Mark B. Abbott教授)
2012.09~2017.06  兰州大学,自然地理学专业,硕博连读(导师:陈发虎 院士)
2008.08~2012.06  兰州大学,地理学国家基础科学人才培养基地,大学本科

研究方向

湖泊沉积与环境变化;全新世气候环境变化与人类影响

工作经历

2019.07~  至 今   兰州大学,资源环境学院,青年研究员
2017.07~2019.06   兰州大学,资源环境学院,师资博士后(合作导师:黄建平 院士)

主讲课程

兰州大学跨学科贯通课程——丝绸之路历史地理专题

学术兼职

1.《Frontiers in Earth Science》评审编委
2.《地理科学》编委
3.《地球科学》、《Journal of Earth Science》青年编委
4.《Fundamental Research》地学副主编助理
5. STOTEN、Plaeo-3、Journal of Hydrology、Acta Geologica Sinica、Journal of Earth Science、《湖泊科学》等期刊审稿人
6. 教育部学位中心硕士学位论文评审人
7. 中国地理学会会员
8. 中国青藏高原研究会高级会员

获得荣誉

兰州大学西部环境教育部重点实验室2020年“西部环境奖-青年教师创新奖”
甘肃省2017年优秀博士学位论文
兰州大学2017年度优秀博士学位论文
兰州大学2017届“优秀毕业研究生”
兰州大学2012届 “优秀毕业生”
兰州大学“求真学子”
CCTV-4《远方的家》栏目-《长江行》系列节目第2集《相逢在长江源》野外采访

在研项目

主持项目:
(1)主持国家重点研发项目“青藏高原古代人群演化和考古文化谱系研究”第5课题“青藏高原古代人群与文化演化的食物经济基础”(2021.11-2024.10; 2021YFC1523605); 143.45万元;
(2)主持第二次青藏高原综合科学考察研究“人类活动历史及其影响”专题第4子专题“过去人-环境相互作用模式”(2019.11-2022.10; 2019QZKK0601);1761.75万元; (第2负责人)
(3)主持国家自然科学基金面上项目“甘肃夏河甘加盆地晚全新世气候环境变化及人类适应与影响”(2022.01-2025.12; 42171150); 58万元;
(4)主持国家自然科学基金青年科学基金项目“苟鲁措记录的青藏高原北部全新世降水变化研究” (2019.01-2021.12;41807442), 26万元;
(5)主持中国博士后科学基金特别资助项目“基于多钻孔对比的全新世青海湖水位变化研究” (2019.06-2020.06;2019T120962), 18万元;
(6)主持中国博士后科学基金面上资助项目“中国西南早全新世夏季温度与降水的不耦合及机制” (2017.12-2019.06; 2017M623272), 5万元;
(7)主持兰州大学青年研究员科研启动资金(2019.07-2024.07), 100万元;

骨干参与:
(8)参与国家自然科学基金重点项目“青藏高原丹尼索瓦人的旧石器文化和环境适应研究”(2022.01-2026.12; 20210367); 296万元; (第1骨干成员) ;
(9)参与国家自然科学基金重大项目“人类世的历史背景”(2020.01-2024.12; 41991251), 70万元/448万元; (第2骨干成员);
(10)参与高端外国专家项目“云南高原湖泊记录的历史时期人地关系研究”(2018.06-2020.12; GDW20186200143), 51.3万元;(执行项目)

发表论文

2022年
(1)Wu, D.*, Ma, X.Y., Yuan, Z.J., Hillman, A., Zhang, J.W., Chen, J.H., Zhou, A.F. 2022. Holocene hydroclimate variation on the Tibetan Plateau: An isotopic perspective. Earth-Science Reviews. (accepted)
(2)Yuan, Z.J., Wu, D.*, Wang, T., Ma, X.Y., Li, Y.M., Shao, S., Zhang, Y., Zhou, A.F. 2022. Holocene fire history in southwestern China linked to climate change and human activities. Quaternary Science Reviews, 289, 107615. https://doi.org/10.1016/j.quascirev.2022.107615
(3)Ma, X.Y., Wu, D.*, Liang, Y., Yuan, Z.J., Wang, T., Li, Y.M. 2022. Changes in regional religious activities in the last millennium recorded by black carbon in Lake Dalzong, northeastern Tibetan Plateau. Science China Earth Sciences. (accepted).
(4)Chen, X.M.*, Huang, X.Z.*, Wu, D.*, Chen, J.H., Zhang, J.W., Zhou, A.F., Dodson, J., Zawadzki, A., Jacobsen, G., Yu, J.Q., Wu, Q.B., Chen, F.H. 2022. Late Holocene land use evolution and ecosystem response to climate variability and human disturbance in the watershed of Xingyun Lake, SW China. Catena, 211, 105973, https://doi.org/10.1016/j.catena.2021.105973
(5)Bain, D.J., Hillman, A.L., Abbott, M.B., Tisherman, R.A., Wu, D. 2022. Metal ratio mixing models clarify metal contamination sources to lake sediments in Yunnan, China. Science of the Total Environment. 820: 153247
(6)Chen, L., Zhao, J.J., Zhang, Z.P., Shen, Z.W., Dong, W.M., Ma, R., Chen, J., Niu, L.L., Chen, S.Q., Wu, D., Liu, J.B., Zhou, A.F., 2021. Biomarker record of lake eutrophication induced by recession of the East Asian summer monsoon. Quaternary Science Reviews. 281: 107448.
(7)Cai, D.W., Zhu, S.Q., Gong, M, Zhang, N.F., Wen, J., Liang, Q.Y., Sun, W.L., Shan, X.Y., Guo, Y.Q., Cai, Y.D., Zheng, Z.Q., Zhang, W., Hu, S.M., Wang, X.Y., Tian, H., Li, Y.Q., Liu, W., Yang, M.M., Yang, J., Wu, D., Orlando, L., Jiang, Y, 2022. Radiocarbon and genomic evidence for the survival of Equus Sussemionus until the late Holocene. Elife, 11: e73346.
(8)Chen, C.Z., Zhao, W.W., Xia, Y.X., Gu, Q.R., Yi, W.W., Zhang, Y.H., Wu, D., Liu, J.B., Zhang, X.J., 2022. History of human disturbance to vegetation in the Southeast Hills of China over the last 2900 years: Evidence from a high resolution pollen record. Palaeogeography, Palaeoclimatology, Palaeoecology, 598: 111028.
(9)Hillman, A.L., Campisi, A., Abbott, .B., Bain, D.J., Griffore, M.P, Tisherman R.A., Yuan, Z.J., Wu, D. 2022. Yilong lake level record documents coherent regional-scale changes in Holocene water balance in Yunnan, southwestern China . Palaeogeography, Palaeoclimatology, Palaeoecology. 601, 111148
(10)邵帅, 吴铎*, 王涛, 袁子杰, 李友谟, 冯小平, 周爱锋. 2022. 横断山区贡卡湖记录的晚全新世区域水文变化及其与印度夏季风的联系. 湖泊科学. (accepted)
(11)张陈彬, 吴铎*, 陈雪梅, 袁子杰, 陈发虎. 2022. 青藏高原东北部甘加盆地古梯田证实与年代初探. 地理学报. 77(1): 1-13
(12)李友谟,吴铎*,袁子杰, 陈林, 陈雪梅, 周爱锋. 2022. 青藏高原腹地班德湖记录的全新世夏季风变化与流域环境响应. 第四纪研究, doi: 10.11928/j.issn.1001-7410.2022.06.0
(13)马旭毅, 吴铎*, 梁源,袁子杰, 王涛, 李友谟. 2022. 青藏高原东北部达尔宗湖黑碳记录的区域宗教活动变迁. 中国科学: 地球科学, doi: 10.1360/SSTe-2022-0064


2021年
(14)Wu, D.*, Zhang, C.B., Wang, T., Yuan, ZJ., Yang, S.L., Zhang, X.J., Chen, F.H. 2021. East-west asymmetry in rainfall on the Chinese Loess Plateau during the Holocene. Catena. 207, 105626. https://doi.org/10.1016/j.catena.2021.105626 Available online 31 July 2021
(15)Yang, R., Wu, D.*, Li, Z.H., Yuan, Z.J., Niu, L.L., Zhang, H., Chen, J., Zhou, A.F.*, 2021. Holocene-Anthropocene transition in northwestern Yunnan revealed by records of soil erosion and trace metal pollution from the sediments of Lake Jian, southwestern China. Journal of Paleolimnology. https://doi.org/10.1007/s10933-021-00193-x Published: 31 May 2021
(16)Yuan, Z.J., Wu, D*., Niu, L.L., Ma, X.Y., Li ,Y.M., Hillman, A., Abbott, M., Zhou, A.F., 2021. Contrasting ecosystem responses to climatic events and human activity revealed by a sedimentary record from Lake Yilong, southwestern China. Science of the Total Environment, 783, 146922. Available online 17 April 2021
(17)Chen, L., Huang, Z.D., Niu, L.L., Dong, W.M.*, Xiao, S., Chen, S.Q., Zhao, J.J., Wu, D., Zhou, A.F. 2021. GDGTs-based quantitative reconstruction of water level changes and precipitation at Daye Lake, Qinling Mountains, over for the past 2,000 years. Quaternary Science Reviews, 267, 107099. https://doi.org/10.1016/j.quascirev.2021.107099.  Available online 23 July 2021
(18)Wang, H.P., Hu, Y., Zhang X., Lv, F.Y., Ma, X,Y., Wu, D., Chen F.H., Zhou, AF., Hou JZ., Chen, J.H., 2021. Climate change since the last deglaciation on the NE Tibetan Plateau and the spatial extent of the Asian summer monsoon. International Journal of Climatology, DOI: 10.1002/joc.7239
(19)Lv, F.Y., Chen, J.H., Zhou, A.F., Cao, X.Y., Zhang, X., Wang, Z.Q., Wu, D., Chen, X.M., Yan, J.J., Wang, H.P., Dong, G.H., Xu, Q.H., Huang, X.Z., Chen, F.H., 2021. Vegetation history and precipitation changes in the NE Qinghai-Tibet Plateau: a 7,900-yr pollen record from Caodalian Lake. Paleoceanography and Paleoclimatology, 36(4), e2020PA004126. https://doi.org/10.1029/2020PA004126. First published: 02 April 2021
(20)Zhang, Y., Cui, Q.Y., Huang, YL., Wu, D., Zhou, A.F. 2021. Vegetation response to Holocene climate change in the Qinling Mountains in the temperate-subtropical transition zone of central-east China. Frontiers in Ecology and Evolution. 9:734011. doi: 10.3389/fevo.2021.734011


2020年
(21)Wu, D.*, Zhou, A.F.*, Zhang, J.W., Chen, J.H., Li, G.Q., Wang, Q., Chen L. Madsen, D., Abbott, M., Cheng, B., Chen F.H. 2020. Temperature-induced dry climate in basins in the northeastern Tibetan Plateau during the early to middle Holocene. Quaternary Science Reviews, 237(106311), https://doi.org/10.1016/j.quascirev.2020.106311
(22)Chen, X.M., Wu, D., Huang, X.Z., Lv F.Y., Brenner M., Jin, H.L., Chen, F.H. 2020. Vegetation response in subtropical southwest China to rapid climate change during the Younger Dryas. Earth-Science Reviews, 201,103080. 
(23)Chen NB, Ren LL, Du LY, Hou JW, Mulline, VE. Wu D, Zhao XY, Li CM, Huang JH, Qi XB,  Capodiferro MR, Achilli A, Lei CZ, Chen FH, Su B, Dong GH, Zhang XM. 2020. Ancient genomes reveal tropical bovid species in the Tibetan Plateau contributed to the prevalence of hunting game until the late Neolithic. PNAS. https://doi.org/10.1073/pnas.2011696117
(24)Chen, F.H., Zhang, J.F., Liu, J.B., Cao, X.Y., Hou, J.Z., Xu, X.K., Liu X.J., Wang, M.D., Wu, D., Huang, L.X., Zeng, T., Zhang, S., Huang, W., Zhang, X., Zhu, L.P., Yang, K., 2020. Climatic change, vegetation history and landscape responses on the Tibetan Plateau during the Holocene: a comprehensive review for future. Quaternary Science Reviews, 243, 106444
(25)Zhang, Z.P., Liu, J.B., Chen, J., Chen, S.Q., Shen, Z.W., Chen, J., Liu, X.K., Wu, D., Sheng, Y.W., Chen, F.H., 2020. Holocene climatic optimum in the East Asian monsoon region of China defined by climatic stability. Earth-Science Reviews, 212, 103450 Available online 25 November 2020.
(26)Xia, H., Zhang, D.J., Wang, Q., Wu, D., Duan, Y.W., Chen, F.H., 2020. A study of the construction times of the ancient cities in Ganjia Basin, Gansu Province, China. Journal of Geographical Sciences, 30(9): 1467-1480.
(27)Chen, F.H., Wu, S.H., Cui, P., Zhang, Y.L., Yin, Y.H., Liu, G.B., Ouyang, Z., Ma, W., Yang, L.S., Wu, D., Lei J.Q., Zhang, G.Y., Zou, X.Y., Chen, X.Q., Tan, M.H., Wang, X.M., Bao, A.M., Cheng, W.X., Dang, X.H., Wei, B.G., Wang, G.L., Wang, W.Y., Zhang, X.Q., Liu, X.C., Li, S.Y. 2020. Progress and prospects of applied research on physical geography and the living environment in China over the past 70 years (1949–2019). J. Geogr. Sci. 2021, 31(1): 3-45. DOI: https://doi.org/10.1007/s11442-021-1831-2. 2021.1.14
(28)陈发虎, 吴绍洪, 崔鹏, 蔡运龙, 张镱锂, 尹云鹤, 刘国彬, 欧阳竹, 马巍, 杨林生, 吴铎, 雷加强,  张国友, 邹学勇, 陈晓清, 谈明洪, 王训明, 包安明, 程维新, 党小虎, 韦炳干, 王国梁, 王五一, 张兴权, 刘晓晨, 李生宇. 2020. 中国自然地理学与生存环境应用研究70年(1949-2019)进展与展望. 地理学报, 75(9) : 1799-1830.


2019年
(29)Chen F, Fu B, Xia J, Wu D, Wu S, Zhang Y, Sun H, Liu Y, Fang X, Qin B, Li X, Zhang T, Liu B, Dong Z, Hou S, Tian L, Xu B, Dong G, Zheng J, Yang W, Wang X, Li Z, Wang F, Hu Z, Wang J, Liu J, Chen J, Huang W, Hou J, Cai Q, Long H, Jiang M, Hu Y, Feng X, Mo X, Yang X, Zhang D, Wang X, Yin Y, Liu X. 2019. Major advances in studies of the physical geography and living environment of China during the past 70 years and future prospects. Science China Earth Sciences, 62, 1665-1701
(30)Duan, Y.W., Sun, Q., Werne, J.P., Zhao, H., Zhang, D.J., Zhang, N.M., Liu, J.B., Wu, D., Chen, F.H. 2019. Mid-Holocene moisture maximum revealed by pH changes derived from brGDGTs in loess deposits of the northeastern Tibetan Plateau. Palaeogeography, Palaeoclimatology, Palaeoecology, 520:138-149.
(31)陈发虎, 傅伯杰, 夏军, 吴铎, 吴绍洪, 张镱锂, 孙航, 刘禹, 方小敏, 秦伯强, 李新,   张廷军, 刘宝元, 董治宝, 侯书贵, 田立德, 徐柏青, 董广辉, 郑景云, 杨威, 王鑫, 李再军, 王飞, 胡振波, 王杰, 刘建宝, 陈建徽, 黄伟, 侯居峙, 蔡秋芳, 隆浩, 姜明, 胡亚鲜, 冯晓明, 莫兴国, 杨晓燕, 张东菊, 王秀红, 尹云鹤, 刘晓晨. 2019. 近70年来中国自然地理与生存环境基础研究的重要进展与展望. 中国科学: 地球科学. 49(11), 1659-1696
(32)吴铎*, 周爱锋, 张家武, 陈建徽, 陈婕, 魏海涛. 2019. 我国季风边缘区湖泊沉积记录的全新世亚洲夏季风衰退事件. 第四纪研究. 39(3): 665-677.
(33)张姚, 吴铎*, 张欢, 周爱锋, 王苏民, 陈发虎. 2019. 不同时间尺度青海湖沉积物TOC对气候变化的敏感性探讨. 湖泊科学. 31(5). DOI: 10.18307/2019.050
(34)凌智永, 靳建辉, 吴铎, 刘向军, 夏敦胜, 陈发虎. MIS3以来雅鲁藏布江流域风成沉积及环境意义. 地理学报. 2019, 74(11): 2385-2400.


2018年
(35)Wu, D., Chen, X.M., Lv, F.Y., Brenner, M., Curtis, J., Zhou, A.F., Chen, J.H., Abbott, M., Yu, J.Q., Chen, F.H.* 2018. Decoupled early Holocene summer temperature and monsoon precipitation in southwest China. Quaternary Science Reviews, 193: 54-67.
(36)Zhang, Z.P., Liu, J.B., Chen, S.Q., Chen, J., Zhang, S.J., Xia, H., Shen, Z.W., Wu, D., Chen, F.H. 2018. Nonlagged response of vegetation to climate change during the Younger Dryas: Evidence from high-resolution multiproxy records from an alpine lake in northern China. Journal of Geophysical Research: Atmospheres, 123, doi:10.1029/2018JD028752.


2017年
(37)Chen, X.M., Huang, X.Z., Wu, D., Zhang, X.N., Dodson, J., Zhou, A.F., Chen, F.H. 2017. Modern pollen assemblages in topsoil and surface sediments of the Xingyun Lake catchment, central Yunnan Plateau, China, and their implications for interpretation of the fossil pollen record. Review of Palaeobotany and Palynology, 241: 1-12.
(38)王强, 魏海涛, 吴铎, 金明, 王鑫, 陈发虎. 2017. 中国中部全新世古地磁长期变和相对古强度研究. 第四纪研究, 37(1): 45-56.
(39)郝盛吞, 周爱锋, 张晓楠, 吴铎, 尹丽颖. 2017. 湖泊沉积有机碳埋藏效率及其影响要素研究进展. 地球环境学报, 2017, 8(4): 292-306.


2016年
(40)Chen, F.H.*, Wu, D.*, Chen, J.H., Zhou, A.F., Yu, J.Q., Shen, J., Wang, S.M., Huang, X.Z. 2016. Holocene moisture and East Asian summer monsoon evolution in the northeastern Tibetan Plateau recorded by Lake Qinghai and its environs: A review of conflicting proxies. Quaternary Science Reviews, 154, 111-129. (Quaternary Science Reviews高引论文)
(41)Wu, D.*, Chen, F.H., Li, K., Xie, Y.W., Zhang, J.W., Zhou, A.F. 2016. Effects of climate change and local human activity on lake shrinkage in Gonghe Basin, northeastern Tibetan Plateau, during the past 60 years. Journal of Arid Land, 8(4): 479-491.


2015年
(42)Wu, D., Zhou, A.F., Liu, J.B., Chen, X.M., Wei, H.T., Sun, H.L., Yu, J.Q., Bloemendal, J., Chen, F.H.* 2015. Changing intensity of human activity over the last 2,000 years recorded by the magnetic characteristics of sediments from Xingyun Lake, Yunnan, China. Journal of Paleolimnology, 53: 47-60.
(43)Wu, D., Zhou, A.F.*, Chen, X.M., Yu, J.Q., Zhang, J.W., Sun, H.L. 2015. Hydrological and ecosystem response to abrupt changes in the Indian monsoon during the last glacial, as recorded by sediments from Xingyun Lake, Yunnan, China. Palaeogeography, Palaeoclimatology, Palaeoecology, 421: 15-23.
(44)Zhou, A.F., He, Y.X., Wu, D., Zhang, X.N., Zhang, C., Liu, Z.H., Yu, J.Q. 2015. Changes in the radiocarbon reservoir age in Lake Xingyun, southwestern China during the Holocene. PLOS ONE, doi:10.1371/journal.pone.0121532
(45)Li, G.Q., Jin, M., Wen, L.J., Zhao, H., Madsen, D., Liu, X.K., Wu, D., Chen, F.H. 2015. Quartz and K-feldspar optical dating chronology of eolian sand and lacustrine sequence from the southern Ulan Buh Desert, NW China: Implications for reconstructing late Pleistocene environmental evolution. Palaeogeography, Palaeoclimatology, Palaeoecology, 393(1): 111-121.
(46)Li, G.Q., Jin, M., Chen, X.M., Wen, L.J., Zhang, J.W., Madsen, D., Zhao, H., Wang, X., Fan, T.L., Duan, Y.W., Liu, X.K., Wu, D., Li, F.L., Chen, F.H. 2015. Environmental changes in the Ulan Buh Desert, southern Inner Mongolia, China since the middle Pleistocene based on sedimentology, chronology and proxy indexes. Quaternary Science Reviews, 128: 69-80.
(47)张晓楠, 张灿, 吴铎, 周爱锋. 2015. 基于XRF岩芯扫描的中国西部湖泊沉积物元素地球化学特征. 海洋地质与第四纪地质, 35(1):163-174.
(48)张灿, 周爱锋, 张晓楠, 吴铎, 郝盛吞. 2015. 湖泊沉积记录的古洪水事件识别及与气候关系. 地理科学进展, 34(7): 898-908.


2014年
(49)Chen, F.H., Chen, X.M., Chen, J.H., Zhou, A.F., Wu, D., Tang, L.Y., Zhang, X.J., Huang, X.Z., Yu, J.Q. 2014. Holocene vegetation history, precipitation changes and Indian summer monsoon evolution documented from sediments of Xingyun Lake, southwest China. Journal of Quaternary Science, 29(7): 661-674.
(50)Chen, X.M., Chen, F.H., Zhou, A.F., Huang, X.Z., Tang, L.Y., Wu, D., Zhang, X.J., Yu, J.Q. 2014. Vegetation history, climatic changes and Indian summer monsoon evolution during the Last Glaciation (36400-13400 cal yr BP). Palaeogeography, Palaeoclimatology, Palaeoecology, 410: 179-189
(51)Chen, F.H., Li, G.Q., Zhao, H., Jin, M., Chen, X.M., Fan, Y.X., Liu, X.K., Wu, D., Madsen, D. 2014. Landscape evolution of the Ulan Buh Desert in northern China during the late Quaternary. Quaternary Research, 81(3): 476-487.
(52)吴铎, 魏海涛, 赵瑞瑞, 张蕊, 刘建宝. 2014. 兰州市室内大气降尘环境磁学特征及其随高度变化研究. 环境科学, 35(1): 79-84.


2013年
(53)张欣佳, 孙惠玲, 吴铎, 张晓楠, 周爱锋. 2013. 6200年来六盘山天池磁学特征及环境重建. 湖泊科学, 25(5): 756-764.

注:星号(*)代表通讯作者。

出版著作

(1) 陈发虎, 吴铎, 王鑫, 饶志国, 张家武. 2019. 中国的自然地理要素—自然地理环境的演变过程. 见: 郑度, 蔡运龙, 主编. 中国地学通鉴∙地理卷. 西安: 陕西师范大学出版总社. 031-042.
(2) 杨晓燕主编, 2022. 藏东南人类活动遗迹与生存环境调查. 科学出版社. (编写委员会委员)

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