賴忠平,男,博士,博士生導師,中國科學院“引進國外杰出人才百人計劃”研究員,教授,青海師范大學昆侖山脈學者講座教授,職于汕頭大學海洋科學研究院。
個人簡介
賴忠平,博士,教授(二級)。江西安遠人。從事第四紀地質與環境變化研究。在牛津大學獲博士學位、中科院獲碩士學位、華東師范大學獲學士。牛津大學Clarendon Scholar、德國Humboldt Fellow。入選美國斯坦福大學“2022年全球前2%頂尖科學家終身成就榜單”(World's Top 2% Scientists 2022:Career-long impact),連續兩年(2021-2022)入選 “全球前2%頂尖科學家年度影響力榜單”(World's Top 2% Scientists:Single year impact)(2022年進入前0.5%)。英國NERC基金會、瑞士國家基金委和挪威國家基金委評審專家。現任國際SCI刊物Catena(中科院一區、top 5%)主編 (Editor)、Geochronometria物理學編委。教育部地理科學教指委委員(2018至今)。
在地球 and Planetary Science Letters, Geophysical Research Letters, Catena, Quaternary Science Reviews, Geomorphology, Quaternary Geochronology, Science of the Total Environment, Environmental Pollution, Frontiers in Marine Science等刊物上發表學術論文210多篇,其中國際SCI論文160多篇。ResearchGate上H指數46,引用6100多次。曾任國際SCI刊物Quaternary Research(2010–2017)和Aeolian Research(2010–2017)副主編(associate editor)。是中文刊物《地球科學前沿》、《鹽湖研究》和《湖泊科學》編委。中國青藏高原研究會理事、中國冰凍圈科學學會(籌)理事。
曾任國際SCI刊物Quaternary Research (2010-2017)和Aeolian Research(2010-2017)副主編;國際SCI刊物Geochronometria物理方法領域編委;國際刊物International Journal of Luminescence and Applications編委;中文期刊《地球科學前沿》、《鹽湖研究》、《湖泊科學》編委。近二十次在國際會議上做大會報告(Plenary speaker)、特邀報告(Invited speaker)和擔任主席或分會主席等。主持過國家自然科學基金四項。指導的學生獲兩篇中科院優秀博士論文,以及獲得過德國洪堡基金、歐盟瑪麗居里基金、英國UK Research and Innovation獎學金到劍橋大學攻讀博士學位、普渡大學全獎、中科院院長獎、優秀碩士論文、優秀本科論文、大學生暑期三下鄉社會實踐報告“全國優秀團隊”等 。中國青藏高原研究會理事、中國冰凍圈科學學會(籌)理事。
工作經歷
1992年至1994年在江西省安遠縣第一中學任地理教師
1998年3月—1999年3 月,印度物理研究所,訪問學者,第三世界學學院南南合作獎學金
1997年10月—2000年9月,中國科學院,黃土與第四紀地質國家重點實驗室,研究實習員
2000年10月—2001年9月,中國科學院,黃土與第四紀地質國家重點實驗室,助理研究員
2005年12 月—2007年10 月,德國馬爾堡大學,亞歷山大·馮·洪堡學者
2007年11月—2014年9月,中國科學院青海鹽湖所和中國科學院寒區旱區環境與工程研究所,研究員
2014年10月—2018年11月,中國地質大學,教授(二級)
2018年11月起任職于汕頭大學,海洋科學研究院,教授(二級)
講授課程
海洋地質與第四紀地質;海洋地質學概論;全球變化;地貌學與第四紀地質學;第四紀地質年代學。
研究方向
流域與三角洲研究團隊的定位:在全球變化及地球冰期氣候旋回背景下,以“從源到匯”的系統思維,聚焦流域與三角洲,研究地球表層陸地、河流、三角洲與海洋及氣候的耦合演化,及其與人類活動的關系。研究領域包括第四紀地質與環境、地質年代學、地貌學、考古年代學、地下水污染與沉積過程的關系等基礎研究以及與國民經濟相關的重大科學問題。
1. 地球氣候動力學機制(海洋、大氣、陸地和兩極冰蓋等的耦合演化);
2.海平面、三角洲、黃河流域地貌過程耦合演化及其與全球氣候變化的聯系,以及與人類活動的關系;
3.從源到匯:從高原到海洋的環境變遷記錄,尤其是青藏高原冰川湖泊-河流-地表過程-海洋記錄-地球冰期旋回的耦合演化;
4.青藏高原地貌演化及長江與黃河在時間格局上不對稱發育的原因及其環境效應;
5.西北干旱區(如青藏高原、塔克拉瑪干沙漠、巴丹吉林沙漠、騰格里沙漠)干旱化成因與演化及其與古人類活動的關系;
6.史前人類遷移演化年代學;
7.釋光測年與埋藏測年技術方法。
學術兼職
1.國際SCI刊物Quaternary Research和Aeolian Research副主編(associate editor)(2010-2017);
2.國際SCI刊物Geochronometria物理方法領域編委(Methods of physics, Member of editorial board);
3.國際刊物International Journal of Luminescence and Applications編委;
5.中國青藏高原研究會理事;中國冰凍圈科學學會(籌)理事;教育部高等學校地理科學類專業指導委員會委員(2018-2022年)。
高校兼職
2.華南師范大學客座教授。
3.中科院優秀研究生指導教師(因指導的研究生獲兩篇中科院百篇優秀博士論文而自動獲得該榮譽)
科研項目
1.利用光釋光和埋藏測年技術建立江漢盆地第四紀地層年代序列,國家自然科學基金(41877438),62萬元,2019-2022
2.柴達木盆地新生代沉積記錄的西風氣候演化,國家自然科學基金重大二級課題(41290252),350萬元,2013-2017
3.青藏高原東部玉樹市及毗鄰地區地震釋光年代學,國家自然科學基金(41172168),85萬元,2012-2015
4.中部和東部沙漠/沙地,中國科學院先導專項課題(XDA05120500;共同主持),340萬元,2011-2015
5.柴達木盆地察爾汗鹽湖成鹽期的光釋光年代學研究,國家自然科學基金(40872119),57萬元,2009-2011
6.青藏高原環境變化與鹽湖演化,中國科學院百人計劃項目(A0961),300萬元,2008-2012
學術論文
(*為通訊作者)
1. Zhi Zhang, Zhibin Zheng, Xiangqiang Meng*, Zhongping Lai*, Yue Li, Yandong Hou, Yougui Song, Junfeng Ji. Gradually increasing precipitation during the Holocene as evidenced by loess 白云巖 abundance in the Ili Basin, Central Asia core. Catena, in revision
2. Qinjing Shen?, Yinjun Zhou?*, Yantian Xu, Yuansen Lai, Xia Yan, Xianmei Huang, Xiaobin Liu, Jiemei Zhong, Shuai Zhu, Zhijing Li, Zhongping Lai*. 2023. Late Quateranry fluvial response of the Upper Mekong River in the Qinghai-Tibet 高原 to climate changes revealed by OSL dating. Geomorphology, in revision
3. Jiemei Zhong, Bohui Liu, Yang Ou, Ruonan Tian*, Jingxiang Shan, Yantian Xu, Feng Wang, Mahmoud Abbas, Ke Zhang, Zhongping Lai*. 2023. An erosive neritic 面積 of Shantou in coastal NE South China Sea since at least MIS 5 revealed by OSL dating of cores. Frontiers in 地球 Science, accepted
4. Yang, X.Y., Yu, L.P.*, Chang, Q.F., Lai, Z.P.*, 2023. Flood activity revealed millennial-scale climatic changes during the late Holocene in the Qaidam Basin, northeastern Tibet Plateau. Quaternary International, in press. 1016/j.quaint.2022.06.011
5. Feng Wang, Fei Wang*, Weiguo Zhang, Songhua Xu, Zhongping Lai*. 2023. A novel machine learning fingerprinting method using sparse representation for provenance detection in delta sediments. Catena, 107095, in press, 1016/j.catena.2023.107095
6. Xiangjun Liu*, Xiaodong Miao*, Junsheng Nie, Xiaojian Zhang, Yixuan Wang, Xiangzhong Li, Xianjiao Ou, Zhongping Lai. 2023. Distribution and fate of Tibet 高原 loess. Catena, 225, 107022. 1016/j.catena.2023.107022
7. Chang Huang, Lupeng Yu*, Zhongping Lai*. 2023. Holocene millennial lake-level fluctuations of lake Nam Co in Tibet using OSL dating of shorelines. Journal of Hydrology, 618, 128643. doi:10.1016/j.jhydrol.2022.128643
8. Penghui Lin, Yingjin Song, Weiqi Zhan, Ruonan Tian, Zhongbo Wang*, Xiaolin Xu, Lan Luo, Mahmoud Abbas, Zhongping Lai*. 2023. Late Pleistocene to Holocene sedimentary history in the Pearl River Delta revealed by OSL and radiocarbon dating. Catena, 224, 106972. doi:10.1016/j.catena.2023.106972
9. Chang Huang, Yun Guo, Lupeng Yu, Min Cao, Hua Tu*, Zhongping Lai*. 2023. Holocene hydrological history of a Tibet glacier-fed lake Taro Co in response to climate change. Catena, 220, 106686. doi:10.1016/j.catena.2022.106686.
10. Penghui Lin, Xiaolin Xu*, Chaoyang Yan, Lan Luo, Zhongping Lai*. 2022. Holocene Sedimentary History of the Pearl River Delta in South China: OSL and Radiocarbon Dating of Cores from Zhuhai. Frontiers in Marine Science, 9, 1031456. doi: 10.3389/fmars.2022.1031456
11. Jiemei Zhong, Ken Ling, Meifei Yang, Qinjing Shen, Mahmoud Abbas, Zhongping Lai*. 2022. Radiocarbon and OSL dating on cores from Chaoshan delta in the coastal South China Sea. Frontiers in Marine Science, 9, 1030841. DOI:0.3389/fmars.2022.1030841
12. Xiangjun Liu*, Yixuan Wang, Xiaodong Miao, Xianjiao Ou, Chunyan Zheng, Yantian Xu, Zhongping Lai*. 2022. Holocene lake level variations of Dagze Co in central Tibet Plateau revealed by OSL dates on palaeoshorelines. Catena, 219, 106645. .1016/j.catena.2022.106645.
13. Shen, Q.J., Ao, S., Xu, Y.T., Liu, S.W.*, Wang, Y.X., Lai, Y.S., Miao, X.D., Lai, Z.P.*, 2022. Aeolian landform processes since the last deglaciation revealed by OSL chronology and stratigraphy in the Hulunbuir dune field in NE China. Quaternary Geochronology, 72, 101352. doi:10.1016/j.quageo.2022.101352.
14. Li, G.*, Wang, Y., Li, S., Wang, T., Liao, W., Deng, B., Lai, Z.*, 2022. Biotic Response to Rapid Environmental Changes During the Permian - Trias碳化硅 質量 消光 Frontiers in Marine Science, 9, 911492. doi: 10.3389/fmars.2022.911492
15. Zhou, Y., Gao, Y., Shen, Q., Yan, X., Liu, X., Zhu, S., Lai, Y., Li, Z, Lai, Z., 2022. Response of Channel Morphology to Climate Change over the Past 2000 Years Using Vertical Boreholes Analysis in Lancang River HeadH?O in Tibet Plateau. Water, 14, 1593. 3390/w14101593
16. Zhongbo Wang, Shouye Yang, Haiyan Tang, Yilin Zheng, Hongyue Wang, Zhixun Zhang, Yong Zhang, Xi Mei, Qiang Wang, Zhongping Lai. 2022. Revisit the sedimentary stratigraphic evolution and environmental changes on the outer shelf of the East China Sea since MIS 5. Frontiers in Marine Science, 9, 863245. doi: 10.3389/fmars.2022.863245.
17. Xianmei Huang, Zhongping Lai*, Liubing Xu*, Lan Luo, Jiemei Zhong, Jinming Xie, Yinjun Zhou, Darryl Granger*. 2022. Late Pleistocene lake overspill and drainage reversal in the source 面積 of the 黃色 River in the Tibet Plateau. 地球 and Planetary Science Letters, 589, 117554. doi:10.1016/j.epsl.2022.117554.
18. Xiaolin Xu, Jiemei Zhong, Xianmei Huang, Hongwei Li*, Zhaojing Ding, Zhongping Lai*, 2022. Age comparison by luminescence using quartz and 長石 on core HPQK01 from the Pearl River Delta in China. Quaternary Geochronology, 71, 101320. doi:10.1016/j.quageo.2022.101320
19. Zhiru Long, Zhongbo Wang, Hua Tu, Rihui Li, Zhenhe Wen, Yixuan Wang, Yong Zhang, Zhongping Lai, 2022. OSL and radiocarbon dating of a core from the Bohai Sea in China and implications for Late Quaternary 海侵 pattern. Quaternary Geochronology, 70, 101308. doi:10.1016/j.quageo.2022.101308.
20. Guanhua Li, Dunsheng Xia, Youjun Wang, Hao Lu, Zhongping Lai, 2022. A combined study of magnetic, granulometric and geochemical properties from lacustrine sediment in the arid Central Asia: Implications for paleoenvironmental variations. Journal of Applied Geophysics, 199, 104589. doi:10.1016/j.jappgeo.2022.104589.
21. Tu, H., Luo, L., Deng, C.L., Ou, Z.L., Lai, Z.P.*, Shen, G.J., Bae, C.J.*, Granger, D., 2022. Isochron 26Al/10Be burial dating of the Xiashagou Fauna in the Nihewan Basin, northern China: Implications for 生物地理學 and early hominin dispersals. Quaternary Science Reviews, 283, 107447. doi:10.1016/j.quascirev.2022.107447
22. Pervez, Rashid, Zhongping Lai*, 2022. Spatio-temporal variations of litter on Qingdao tourist beaches in China. Environment Pollution, 303, 119060. doi:10.1016/j.envpol2022.119060.
23. Liu, X.J.*, Li X.Z.*, Lai, Z.P.*, Cheng, F.*, 2022. Editorial: Late Quaternary Hydrological, Paleoenvironmental and Geomorphological Processes in the Tibet Plateau and Its Adjacent 面積s. Frontiers in 地球 Science, 10, 839663. doi: 10.3389/feart.2022.839663.
24. Huang, X.M., Miao, X.D.*, Chang, Q.F., Zhong, Jackie McLean, Mason, J.A., Hanson, P.R., Ou, X.J., Xu, L.B., Lai, Z.P.*, 2022. Tibet dust accumulation linked to ecological and landscape response to global climate change. Geophysical Research Letters, 48, e2021GL096615. DOI: 10.1029/2021GL096615. (SCI)
25. Feng Wang*, Weiguo Zhang, Tuqin Huang, Yantian Xu, Zhongping Lai*, 2022, Particle-size dependent magnetic property variations in the Yangtze delta sediments of late Holocene: Effects of pedogenesis and diagenesis. Catena, 209, 105832. 1016/j.catena.2021.105832. (SCI)
26. Huang, C., Lai, Z.P*, Liu, X.J., Madsen, D., 2021. Lake-level history of Qinghai Lake on the NE Tibet Plateau and its implications for Asian monsoon pattern - A review. Quaternary Science Reviews, 273, 107258. doi:10.1016/j.quascirev.2021.107258. (SCI)
27. Zhongping Lai*, Yantian Xu, Peisong Zheng, 2021. 地球 ice age 動力學: A bimodal forcing hypothesis. Frontiers in Earth Science, 9, 736895. DOI: 10.3389/feart.2021.736895. (SCI)
28. Lan Luo, Zhongping Lai*, Wenhao Zheng, Yantian Xu*, Lupeng Yu, Chang Huang, Hua Tu, 2021. OSL chronology of the Siling Co paleolithic site in central Tibet Plateau. Frontiers in 地球 Science, 9, 699693. DOI: 10.3389/feart.2021.699693. (SCI)
29. Yantian Xu, Tian Tian, Qinjing Shen*, Lan Luo, Zhongping Lai*, 2021. Late Quaternary aggradation of the Datong Basin in northern China revealed by OSL dating of core sediments and implications for groundwater 砷 pollution. Catena, 207, 105650. DOI: 10.1016/j.catena.2021.105650. (SCI)
30. Steffen Mischke, Zhongping Lai, Galina Faershtein, Naomi Porat, Matthias R?hl, Paul Braun, Johannes Kalbe, Hanan Ginat, 2021. A Late Pleistocene wetland setting in the arid Jurf ed Darawish region in central 邁克爾·喬丹 Frontiers in 地球 Science, 9, 722435. DOI: 10.3389/feart.2021.722435. (SCI)
31. Feng Wang, Zhongping Lai*, Guyu Peng, Lan Luo, Kai Liu, Xianmei Huang, Yantian Xu, Qinjing Shen, Daoji Li, 2021. Microplastic abundance and distribution in a Central Asian desert. Science of The Total Environment, 800, 149529. DOI: 10.1016/j.scitotenv.2021.149529. (SCI)
32. Peisong Zheng, Joel B. Pedro, Markus Jochum, Sune O. Rasmussen, Zhongping Lai*, 2021. Different trends in Antarctic 溫度 and atmospheric CO2 during the last glacial. Geophysical Research Letters, 48, e2021GL093868. DOI: 10.1029/2021GL093868. (SCI)
33. Guoshan Li, Wei Liao, Sheng Li, Yongbiao Wang*, Zhongping Lai*, 2021. Different TRIGGER有限公司s for the two pulses of 質量 消光 across the Permian and Triassic boundary across the Permian and Triassic boundary. Scientific Reports, 11, 6686. DOI: 10.1038/s41598-021-86111-7. (SCI)
34. Zhaojing Ding, Lupeng Yu*, Zhongping Lai*, Ping An, Xiaodong Miao, Ruru Xu, Zengqi Liu, 2021. Post-IR IRSL chronology of paleo-lacustrine sediments from Yardangs in Qaidam Basin, NE Qinghai-Tibet Plateau. Geochronometria, 28, 313-324. DOI: 10.2478/geochr-2020-0016. (SCI)
35. Bety S. Al-Saqarat, Mahmoud Abbas, Zhongping Lai, Songlin Gong, Mustafa M. Alkuisi, Abdalla M.B. Abu Hamad, Paul A. Carling, John D. Jansen, 2021. A wetland oasis at Wadi Gharandal spanning 125–70 ka on the human migration trail in southern 邁克爾·喬丹 Quaternary Research, 100, 154-169. DOI: 10.1017/qua.2020.82. (SCI)
36. Xiaolin Xu, Hongwei Li, Linjie Tang, Zhongping Lai*, Guanjun Xu, Xianhe Zhang, Yixuan Wang, 2020. Chronology of a Holocene core from the Pearl River delta in southern China. Frontiers in 地球 Science, 8, 262. DOI: 10.3389/feart.2020.00262. (SCI)
37. Zhaojing Ding, Jiannan Zhao, Jiang Wang, Zhongping Lai*, 2020. Yardangs on Earth and implications to Mars: A review. Geomorphology, 364, 107230. DOI: 10.1016.j.geomorph.2020.107230. (SCI)
38. Xiaohua Guo, Jiuchuan Wei, Zhaojun Song, Zhongping Lai, Lupeng Yu, 2020. Optically stimulated luminescence chronology and geomorphic imprint of Xiazangtan landslide upon the upper 黃色 River valley on the northeastern Tibet Plateau. Geological Journal, 55, 5498-5507. DOI: 10.1002/gj.3754. (SCI)
39. Ping An, Lupeng Yu, Yixuan Wang, Xiaodong Miao, Changsheng Wang, Zhongping Lai, Hongyuan Shen, 2020. Holocene incisions and flood activities of the Keriya River, NW margin of the Tibet Plateau. Journal of Asian 地球 Sciences, 191, 104224. DOI: 10.1016/j.jse月桂醇聚醚硫酸酯鈉2019.104224. (SCI)
40. Renrong Chen, Shangzhe Zhou, Yingkui Li, Zhongping Lai, Xianjiao Ou, Xiaoyu Lu, Yannan Li, 2020. Late Quaternary climate and environmental change derived from glacial deposits in the Parlung Zangbo Valley, southeastern Tibet 高原 Physical Geography, 41, 99-125. DOI: 10.1080/02723646.2019.1590680. (SCI)
41. Weitao Yuan, Wangle Zhang, Zhongping Lai*, Jingxiong Zhang, 2020. Extraction of Yardang characteristics using object-based image analysis and canny edge detection methods. Remote Sensing, 12, 726. DOI: 10.3390/rs12040726. (SCI)
42. Lan Luo, Darryl E. Granger, Hua Tu, Zhongping Lai*, Guanjun Shen*, Christopher J. Bae, Xueping Ji, Jianhui Liu, 2020. The first radiometric age by isochron Al-26/Be-10 burial dating for the Early Pleistocene Yuanmou hominin site, southern China. Quaternary Geochronology, 55, 101022. DOI: 10.1016/j.quageo.2019.101022. (SCI)
43. Weiming Liu, Paul A. Carling, Kaiheng Hu, Hao Wang, Zhen Zhou, Liqin Zhou, Dingzhu Liu, Zhongping Lai, Xinbao Zhang, 2019. Outburst floods in China: A review. 地球Science Reviews, 197, 102895. DOI: 10.1016/j.earscirev.2019.102895. (SCI)
44. Yantian Xu, Zhongping Lai*, Chang'an Li, 2019. Sea level determined lake formation in the Yangtze Plain – A review. Global and Planetary Change, 181, 102980. DOI: 10.1016/j.gloplacha.2019.102980. (SCI)
45. Tianyuan Chen, Zhongping Lai, Siwen Liu, Yixuan Wang, Zhen-ting Wang, Xiaodong Miao, Fuyuan An, Lupeng Yu, Fengqing Han, 2019. Luminescence chronology and palaeoenvironmental significance of limnic relics from the Badain Jaran Desert, northern China. Journal of Asian 地球 Sciences, 177, 240-249. DOI: 10.1016/j.jse月桂醇聚醚硫酸酯鈉2019.03.024. (SCI)
46. Yun Guo, Chengkai Sun, Lan Luo, Linlin Yang, Fei Han, Hua Tu, Zhongping Lai*, Hongchen Jiang, Christopher J. Bae*, Guanjun Shen, Darryl Granger, 2019. Al-26/Be-10 Burial Dating of the Middle Pleistocene Yiyuan Hominin Fossil Site, Shandong Province, Northern China. Scientific Reports, 9, 6961. DOI: 10.1038/s41598-019-43401-5. (SCI)
47. Lifang Cui, Lunche Wang, Sai Qu, Ramesh P. Singh, Zhongping Lai, Rui Yao, 2019. Spatiotemporal extremes of 溫度 and precipitation during 1960-2015 in the Yangtze River Basin (China) and impacts on vegetation 動力學 Theoretical and Applied Climatology, 136, 675-692. DOI: 10.1007/s00704-018-2519-0. (SCI)
48. Niels Meijer, Guillaume Dupont-Nivet, Hemmo A. Abels, Mustafa Y. Kaya, Alexis Licht, Meimei Xiao, Yang Zhang, Pierrick Roperch, Marc Poujol, Zhongping Lai, Zhaojie Guo, 2019. Central Asian moisture modulated by proto-Paratethys Sea incursions since the early Eocene. 地球 and Planetary Science Letters, 510, 73-84. DOI: 10.1016/j.epsl.2018.12.031. (SCI)
49. Shiyong Yu, Steven M. Colman, Zhongping Lai, 2019. Late-Quaternary history of ‘great lakes’ on the Tibet Plateau and palaeoclimatic implications – A review. Boreas, 48, 1-19. DOI: 10.1111/bor.12349. (SCI)
50. Steffen Mischke, Chengjun Zhang, Chenglin Liu, Jiafu Zhang, Zhongping Lai, Hao Long, 2019. Landscape response to climate and human impact in Western China during the Han Dynasty. In: Socio-Environmental 動力學 along the Historical Silk Road, Chapter 3, pp 45-66.
51. Georg Miehe, Per-Marten Schleuss, Elke Seeber, Wolf Gang Babel, Tobias Biermann, Martin Braendle, Fa hu Chen, Heinz Coners, Thomas Foken, Tobias Gerken, Hans-F. Graf, Georg Guggenberger, Silke Hafner, Maika Holzapfel, Johannes Ingrisch, Yakov Kuzyakov, Zhongping Lai, Lukas Lehnert, Christoph Leuschner, Xiaogang Li, Jianquan Liu, Shibin Liu, Yaoming Ma, Sabine Miehe, Volker Mosbrugger, Henry J. Noltie, Joachim Schmidt, Sandra Spielvogel, Sebastian Unteregelsbacher, Yun Wang, Sandra Willingh?fer, Xingliang Xu, Yongping Yang, Shuren Zhang, Lars Opgenoorth, Karsten Wesche, 2019. The Kobresia pygmaea ecosystem of the Tibet highlands – Origin, functioning and degradation of the world's largest pastoral alpine ecosystem: Kobresia pastures of Tibet. Science of The Total Environment, 648, 754-771. DOI: 10.1016/j.scitotenv.2018.08.164. (SCI)
52. Cui, L.F., Wang, L.C., Singh, R.P., Lai, Z.P., Jiang, L.L. and Yao, R., 2018. Association analysis between spatiotemporal variation of vegetation greenness and precipitation/溫度 in the Yangtze River Basin (China). Environmental Science and Pollution Research, 25: 21867–21878. (SCI)
53. Fuqiang Li, Baotian pan, Zhongping Lai, Hongshan Gao, Xianjiao Ou, 2018. Identifying the degree of luminescence signal bleaching in fluvial sediments from the Inner Mongolian reaches of the 黃色 River. Geochronometria, 45: 82–96. DOI: 10.1515/geochr-2015-0087. (SCI)
54. FuYuan An, ZhongPing Lai, XiangJun Liu, QiShun Fan, HaiCheng Wei, 2018. Abnormal Rb/Sr ratio in lacustrine sediments of Qaidam Basin, NE Qinghai–Tibet Plateau: A significant role of aeolian dust input. Quaternary International, 469: 44–57. DOI: 10.1016/j.quaint.2016.12.050. (SCI)
55. Fuyuan An, Zhongping Lai, Xiangjun Liu, Yixuan Wang, Qiufang Chang, Baoliang Lu, Xiaoyun Yang, 2018. Luminescence Chronology and Radiocarbon Reservoir Age Determination of Lacustrine Sediments from the Heihai Lake, NE Qinghai-Tibet Plateau and Its Paleoclimate Implications. Journal of 地球 Science, 29: 695–706. DOI: 10.1007/s12583-017-0972-9. (SCI)
56. Georg Stauch, Zhongping Lai, Frank Lehmkuhl, Philipp Schulte, 2018. Environmental changes during the late Pleistocene and the Holocene in the Gonghe Basin, north-eastern Tibet 高原 Palaeogeography, Palaeoclimatology, Palaeoecology, 509, 144-155. Doi: 10.1016/j.palaeo.2016.12.032. (SCI)
57. Guangyin Hu, Lupeng Yu, Zhibao Dong, Junfeng Lu, Jiyan Li, Yixuan Wang, Zhongping Lai, 2018. Holocene aeolian activity in the Zoige Basin, northeastern Tibet Plateau, China. Catena, 160, 321–328. DOI: 10.1016/j.catena.2017.10.005. (SCI)
58. Mauro Alivernini, Zhongping Lai, Peter Frenzel, Sascha Fürstenberg, Junbo Wang, Yun Guo, Ping Peng, Torsten Haberzettl, Nicole B?rner, Steffen Mischke, 2018. Late quaternary lake level changes of Taro Co and neighbouring lakes, southwestern Tibet Plateau, based on OSL dating and ostracod analysis. Global and Planetary Change, 166: 1–18. DOI:10.1016/j.gloplacha.2018.03.016. (SCI)
59. Weiming Liu, Kaiheng Hu, Paul A Carling, Zhongping Lai, Ting Cheng, Yali Xu, 2018. The establishment and influence of Baimakou paleo-dam in an upstream reach of the Yangtze River, southeastern margin of the Tibet 高原 Geomorphology, 321: 167–173. DOI: 10.1016/j.geomorph.2018.08.028. (SCI)
60. Yixuan Wang, Tianyuan Chen, Chongyi E, Fuyuan An, Zhongping Lai, Lin Zhao, Xiang-Jun Liu, 2018. Quartz OSL and K-長石 post-IR IRSL dating of loess in the Huangshui river valley, northeastern Tibet plateau. Aeolian Research, 33: 23–32. DOI: 10.1016/j.aeolia.2018.04.002. (SCI)
61. Yongjuan Sun, E Chongyi, Zhongping Lai*, Guangliang Hou. 2018. Luminescence dating of prehistoric hearths in Qinghai lake and its paleoclimatic implication. Archaeological and Anthropological Sciences, 10(6): 1525–1534, doi:10.1007/s12520-017-0472-y. (SCI)
62. Hua Tu, Guanjun Shen, Darryl Granger,Xiaoyun Yang, Zhongping Lai*, 2018. Isochron 26Al/ 10Be burial dating of the Lantian hominin site at Gongwangling in Northwestern China. Quaternary Geochronology, 41: 174-179. DOI: 10.1016/j.quageo.2017.04.004. (SCI)
63. Yantian Xu, Zhongping Lai*, Tianyuan Chen, Songlin Gong. 2018. Late quaternary optically stimulated luminescence (OSL) chronology and environmental changes in the Hobq desert, northern china. Quaternary International, 470: 18-25. DOI: 10.1016/j.quaint.2017.06.010. (SCI)
64. XiangJun Liu, Guoqiao Xiao, Chongyi E, Xiangzhong Li, Zhongping Lai*, Lupeng Yu, Zhong Wang, 2018. Accumulation and erosion of aeolian sediments in the northeastern Qinghai-Tibet Plateau and implications for provenance to the Chinese Loess Plateau. Journal of Asian 地球 Science, 135: 166-174. DOI: 10.1016/j.jseaes.2016.12.034. (SCI)
65. Steffen Mischke, ZhongPing Lai, Bernhard Aichner, Liv Heinecke, Zafar Mahmoudov, Marie Luise Kuessner, Ulrike Herzschuh. 2017. Radiocarbon and optically stimulated luminescence dating of sediments from Lake Karakul, Tajikistan. Quaternary Geochronology, 41: 51-61. DOI: 10.1016/j.quageo.2017.05.008. (SCI)
66. Lifang Cui, Lunche Wang, ZhongPing Lai, Qing Tian, Wen Liu, Jun Li. 2017. Innovative trend analysis of annual and seasonal air 溫度 and rainfall in the Yangtze River Basin, China during 1960-2015. Journal of Atmospheric and Solar-Terrestrial Physics, 164: 48-59. DOI: 10.1016/j.jastp.2017.08.001. (SCI)
67. QiuFang Chang, ZhongPing Lai*, FuYuan An, HaiLei Wang, YanBin Lei, FengQing Han. 2017. Chronology for terraces of the Nalinggele River in the north Qinghai-Tibet Plateau and implications for salt lake resource formation in the Qaidam Basin. Quaternary International, 430: 12-20. DOI: 10.1016/j.quaint.2016.02.022. (SCI)
68. ZhenTing Wang, ZhongPing Lai, JianJun Qu, 2017. Inverted relief landforms in the Kumtagh Desert of northwestern China: a mechanism to estimate wind erosion rates. Geological Journal, 52: 131-140. DOI: 10.1002/gj.2739. (SCI)
69. Xiaohong Zhao, Junping Wang, Mingjian Wei, Zhongping Lai, Majie Fan, Junxiang Zhao, Baolin pan, Yanhong Zhao, Xiaopeng Li, Qiuyue Zhao. 2017. Optically stimulated luminescence dating of Holocene palaeoflood deposits in the middle reach of the Yongding River, China. Quaternary International, 453: 37-47. DOI: 10.1016/j.quaint.2017.02.013. (SCI)
70. Guangyin Hu, Lupeng Yu, Zhibao Dong, Huijun Jin, 越南盾liang Luo, Yixuan Wang, Zhongping Lai. 2017. Holocene aeolian activity in the headwater region of the 黃色 river, northeast Tibet plateau, china: a first approach by using OSL-dating. Catena, 149: 150-157. DOI: 10.1016/j.catena.2017.10.005. (SCI)
71. Li, Y., Song, YG娛樂*, Lai, Z.P.*, Han, L., An, Z.S. 2016. Rapid and cyclic dust accumulation during MIS 2 in Central Asia infer紅色 from loess OSL dating and grain-size analysis. Scientific Report, 6: 32365. DOI: 10.1038/srep32365 (SCI)
72. Wang, Z.T., Chen, T.Y., Liu, S.W., Lai, Z.P., 2016. Aeolian origin of interdune lakes in the Badain Jaran Desert, China. Arabian Journal of Geosciences, 9: 190. DOI: 10.1007/s12517-015-2062-6. (SCI)
73. Mischke, S., Lai, Z.P., Long, H., Tian, F., 2016. Holocene climate and landscape change in the northeastern Tibet Plateau foreland inferred from the Zhuyeze Lake record. The Holocene 4: 643-654. DOI: 10.1177/0959683615612570 (SCI)
74. Licht, A., Dupontnivet, G., Pullen, A., Kapp, P., Abels, H. A., Lai, Z., et al., 2016. Resilience of the Asian atmospheric circulation shown by paleogene dust provenance. Nature Communications, 7:12390. DOI: 10.1038/ncomms12390. (SCI)
75. Hongming He, Zhongping Lai, Steffen Mischke. 2016. Meteorological Impacts on Landform Changes. Advances in 氣象學, 2016: 1-3. DOI: 10.1155/2016/8048174. (SCI)
76. Liu, S.W., Lai, Z.P.*, Wang, Y.X., Fan, X.L., Wang, L.L., Tian, M.Z., Jang, Y.D., Zhao, H., 2016. Growing pattern of mega-dunes in the Badain Jaran Desert in China revealed by luminescence ages. Quaternary International, 410: 111-118. DOI: 10.1016/j.quaint.2015.09.048. (SCI)
77. Fan, Y.X., Zhang, F., Zhang, F., Liu, W.H., Chen, X.L., Fan, Team Liquid, Wang, Y.D., Chen, 家族性高膽固醇血癥, Lai Z.P., 2016. History and mechanisms for the expansion of the Badain Jaran Desert, northern China since 20 ka: Geological and luminescence chronological evidence. The Holocene, 26(4): 532-548. DOI: 10.1177/0959683615612588. (SCI)
78. XiaoHua Guo*, Zheng Sun, Zhongping Lai*, Yudong Lu, Xiaolin Li, 2016. Optical dating of landslide-dammed lake deposits in the upper 黃色 River, Qinghai-Tibetean Plateau, China. Quaternary International, 392: 233-238, DOI: 10.1016/j.quaint.2015.06.021. (SCI)
79. Zeng Lan-hua, Ou Xian-jiao*, Lai Zhong-ping*, 2016. Optically stimulated luminescence dating of young glacial sediments from the eastern Qinghai-Tibet 高原 Journal of Mountain Science, 13: 1174-1185. DOI: 10.1007/s11629-015-3608-5 (SCI)
80. XiaoHua Guo*, Zhongping Lai*, Yudong Lu, Xiaolin Li, Zheng Sun, 2015. Optically Stimulated Luminescence (OSL) Chronology of the Dehenglong Landslide from Longyang Gorge to Liujia Gorge along Upper 黃色 River, China . Acta Geologica Sinica, 89(1): 242-250. DOI: 10.1111/1755-6724.12408. (SCI)
81. YouGui Song*, ZhongPing Lai*, Yun Li, Tao Chen, YiXuan Wang, 2015. Comparison between luminescence and radiocarbon dating of late Quaternary loess from the Ili Basin in Central Asia. Quaternary Geochronology, 30: 405-410. DOI: 10.1016/j.quageo.2015.01.012. (SCI)
82. E. ChongYi*, ZhongPing Lai*, GuangLiang Hou, GuangChao Cao, YongJuan Sun, YiXuan Wang, YingYing Jiang, 2015. Age determination for a Neolithic site in northeastern Qinghai-Tibet Plateau using a combined luminescence and radiocarbon dating. Quaternary Geochronology, 30: 411-415. DOI: 10.1016/j.quageo.2015.01.007. (SCI)
83. XianJiao Ou*, Geoff A.T. Duller, Helen M. Roberts, ShangZhe Zhou, ZhongPing Lai, Rong Chen, RenRong Chen, LanHua Zeng, 2015. Single grain optically stimulated luminescence dating of glacial sediments from the Baiyu Valley, southeastern Tibet. Quaternary Geochronology, 30: 314-319. DOI:10.1016/j.quageo.2015.02.018. (SCI)
84. HongYuan Shen, LuPeng Yu*, HongMei Zhang, Min Zhao, ZhongPing Lai*, 2015. OSL and radiocarbon dating of flood deposits and its paleoclimatic and archaeological implications in the Yihe River Basin, East China. Quaternary Geochronology, 30: 398-404, DOI:10.1016/j.quageo.2015.02.018 (SCI)
85. GuangLiang Hou, ZhongPing Lai*, Guangchao Cao, ChongYi E, YongJuan Sun, David Rhode, Feathers James, 2015. The earliest prehistoric pottery in the Qinghai-Tibet Plateau and its archaeological implications. Quaternary Geochronology, 30: 431-437,DOI:10.1016/j.quageo.2015.02.018. (SCI)
86. Chen, H., Li, Z.Q., Wang, P.Y., Lai, Z.P., Chen, R.S., Huai, B.J., 2015. Five decades of glacier changes in the Hulugou Basin of central Qilian Mountains, Northwest China. Journal of Arid Land, 7(2): 159–165. DOI: 10.1007/s40333-014-0011-y. (SCI)
87. Weiming Liu*, Zhongping Lai*, Kaiheng Hu, Yonggang Ge, Peng Cui, Xiaogang Zhang, Feng Liu, 2015. Age and extent of a giant glacial-dammed lake at Yarlung Tsangpo gorge in the Tibet Plateau. Geomorphology, 246: 370-376, DOI: 10.1016/j.geomorph.2015.06.034. (SCI)
88. Lupeng Yu*, Zhibao Dong, Zhongping lai*, Guangqiang Qian, Tong pan, 2015. Origin and lateral migration of linear dunes in the Qaidam Basin of NW China revealed by dune sediments, internal structures, and optically stimulated luminescence ages, with implications for linear dunes on Titan: Comment and Discussion, GSAB, 127: 316-320, DOI: 10.1130/B31041.1. (SCI)
89. XianJiao Ou*, ZhongPing Lai*, ShangZhe Zhou, Rong Chen, LanHua Zeng, 2015. Optical dating of young glacial sediments from the source 面積 of the Urumqi River in Tianshan Mountians, northwestern China. Quaternary International, 358, 12-20.DOI: 10.1016/j.quaint.2014.08.053. (SCI)
90. LuPeng Yu*, ZhongPing Lai*, Ping An, Tong pan, QiuFang Chang, 2015. Aeolian sediments evolution controlled by fluvial processes, climate change and human activities since LGM in the Qaidam Basin, Qinghai-Tibet Plateau. Quaternary International, 372, 23-32, DOI: 10.1016/j.quaint.2014.09.043. . (SCI)
91. Steffen Mischke, David Madsen, Chengjun Zhang, Zhongping Lai, 2015. Reply to comment by Zhang (2014): The Shell Bar in the Qaidam Basin: fluvial or lake deposit, and OSL versus 14 C age 數據 Journal of Paleolimnology 53, 335-344. DOI: 10.1007/s10933-014-9817-z. (SCI)
92. Xiangjun Liu*, Zhongping Lai*, David Madsen, Fangming Zeng, 2015. Last deglacial and Holocene lake level variations of Qinghai Lake, north-eastern Qinghai–Tibet 高原 Journal of Quaternary Science, 30: 245-257, DOI: 10.1002/jqs.2777. (SCI)
93. Lai Zhongping, 2014. Was the Enclosed Qaidam Basin in the Tibet Plateau Accumulative or Erosive during the Late Quaternary: An Case Study on the Shell Bar. ACTA GEOLOGICA SINICA (English edition), 88 (supp. 1): 14.
94. Chen, R.R., Zhou, S.Z.*, Lai, Z.P.*, Ou, X.J., Chen, R., Deng, Y.B., 2014. Luminescence chronology of late Quaternary moraines and Last Glacial Maximum Equilibriumline altitude reconstruction from Parlung Zangbo Valley, south-eastern Tibet 高原 Journal of Quaternary Science, 29(6): 597-604. DOI:10.1002/jqs.2733. (SCI)
95. Han, W.X., Ma, Z.B., Lai, Z.P., Appeld, E., Fang, X.M.*, Yu, L.P., 2014. Wind erosion on the northern-eastern Tibet Plateau: constraints from OSL and U-Th dating of playa salt crust in the Qaidam Basin. 地球 surface Processes and Landforms, 39(6): 779-789, DOI: 10.1002/esp.3483. (SCI)
96. Han, W.X., Yu, L.P.*, Lai, Z.P.*, Madsen, D., Yang, sl, 2014. The earliest well-dated archaeological site in the Hyperarid Tarim Basin and its implications for prehistoric human migration and climatic changes. Quaternary Research, 82: 66-72. DOI: 10.1016/j.yqres.2014.02.004. (SCI)
97. Ou X.J., Lai, Z.P.*, Zhou, S.Z., Zeng, L.H., 2014. Timing of glacier fluctuations and trigger mechanisms in eastern Qinghai-Tibet Plateau during the Late Quaternary. Quaternary Research, 81: 464-475. DOI: 10.1016/j.yqres.2013.09.007. (SCI)
98. Yu, L.P., Lai, Z.P.*, 2014. Holocene climate change inferred from stratigraphy and OSL chronology of aeolian sediments in the Qaidam Basin, northeastern Qinghai-Tibet Plateau. Quaternary Research 81, 488-499. DOI: 10.1016/j.yqres.2013.09.006. (SCI)
99. Chang, H., An, Z.S., Liu, W.G., Ao, H., Qiang, X.K., Song, YG娛樂, Lai, Z.P., 2014. Quaternary structural partitioning within the rigid Tarim plate inferred from magnetostratigraphy and sedimentation rate in the eastern Tarim Basin in China. Quaternary Research 81, 424-432. DOI:10.1016/j.yqres.2013.10.018. (SCI)
100. Wang, H.Y., Dong, H.L., Zhang, C.L., Jiang, H.C., Zhao, M.X., Liu, Z.H., Lai, Z.P., Liu, W.G., 2014. H?O depth affecting thaumarchaeol production in Lake Qinghai, northeastern Qinghai-Tibet plateau: Implications for paleo lake levels and paleoclimate. Chemical Geology, 368: 76-84. DOI: 10.1016/j.chemgeo.2014.01.009. (SCI)
101. Lai, Z.P.*, Fan, 神力科莎, 2014. Examining quartz OSL age underestimation for loess samples from Luochuan in the Chinese Loess Plateau. Geochronometria, 41: 57-64.DOI 10.2478/s13386-013-0138-1.(SCI)
102. Wang, Z.T., Lai, Z.P., 2014. A theoretical model on the relation between wind speed and grain size in dust 搬運作用 and its paleoclimatic implications. Aeolian Research, 13: 105-108. DOI:10.1016/j.aeolia.2014.04.003. (SCI)
103. Lai, Z.P.*, Mischke, S., Madsen, D., 2014. Paleoenvironmental implications of new OSL dates on the formation of the “Shell Bar” in the Qaidam Basin, northeastern Qinghai-Tibet 高原 Journal of Palaeolimnology, 51(2): 197-210. DOI:10.1007/s10933-013-9710-1. (SCI)
104. Mischke, S., Lai, Z.P., Zhang, C.J., 2014. Re-assessment of the paleoclimate implications of the Shell Bar in the Qaidam Basin, China. Journal of Palaeolimnology, 51(2): 179-195. DOI:10.1007/s10933-012-9674-6. (SCI)
105. Madsen, D., Lai, Z.P., Sun, Y.J., Rhode, D., Liu, X.J., Brantingham, P.J., 2014. Late Quaternary Qaidam lake histories and implications for an MIS 3 ‘‘Greatest Lakes’’ period in northwest China. Journal of Palaeolimnology, 51: 161-177. DOI: 10.1007/s10933-012-9662-x. (SCI)
106. Liu, X.J.*, Lai, Z.P.*, Yi, C.L., Lei, Y.B., 2013. Long term east-west asymmetry in monsoon rainfall on the Tibet Plateau: Comment. Geology, 41(12): 311. DOI:10.1130/G34548C.1. (SCI)
107. Yang, J., Jiang, H.C.*, Dong, H.L.*, Wang, H.Y., Wu, G., Hou, W.G., Liu, W.G., Zhang, C.L., Sun, Y.J., Lai, Z.P., 2013. amoA-encoding 古菌 and thaumarchaeol in the lakes on the northeastern Qinghai-Tibet Plateau, China. Frontiers in Microbiology, v4, Article329. DOI: 10.3389/fmicb.2013.00329. (SCI)
108. Liu, D.M., Chen, G.C., Lai, Z.P., Wei, H.C., Zhou, G.Y., Peng, M., 2013. Late Glacial and Holocene vegetation and climate history of an alpine wetland on the Qinghai–Tibet Plateau. Geological Quarterly ,57 (2): 261-268. DOI: .7306/gq.1096. (SCI)
109. Zhao, J.D., Yin, X.F., Harbor, J.M., Lai. Z.P., Liu, S.Y., Li, Z.Q., 2013. Quaternary glacial chronology of the Kanas River valley, Altai Mountains, China. Quaternary International, 311: 64-53, DOI: 10.1016/j.quaint.2013.07.047. (SCI)
110. Rao, Z.G., Chen, F.H., Cheng, H., Liu, W.G., Wang, G.A., Lai, Z.P., Bloemendal, J., 2013. High-resolution summer precipitation variations in the western Chinese Loess Plateau during the last glacial. Scientific Report, 3: 1-6. DOI:10.1038/srep02785. (SCI)
111. Liu, X.J., Lai, Z.P., Zeng, F.M., Madsen, D., E, C.Y., 2013. Holocene lake level variations on the Qinghai-Tibet Plateau. International Journal of 地球 Sciences (Geol Rundsch), 102: 2007-2016. DOI:10.1007/s00531-013-0896-2. (SCI)
112. Fei, J., Lai, Z.P., Zhang, D.D., He, H.M., 2013. Extreme Sea ice events in the Chinese marginal seas during the past 2000 years. Climate Research, 57: 123-132. DOI: 10.3354/cr01174. (SCI)
113. Yang, J., Jiang, H.C., Dong, H.L., Wu, G., Hou, W.G., Zhao, W.Y., Sun, Y.J., Lai, Z.P., 2013. Diversity of 碳 Monoxide-Oxidizing Bacteria in Five Lakes on the Qinghai-Tibet Plateau, China. Geomicrobiology Journal, 30(8): 758-767. DOI:10.1080/01490451.2013.769652. (SCI)
114. Yang, J., Jiang, H.C., Dong, H.L., Wu, G., Hou, W.G., Zhao, W.Y., Sun, Y.J., Lai, Z.P., 2013. Abundance and Diversity of 硫Oxidizing Bacteria along a Salinity Gradient in Four Qinghai-Tibet Lakes, China. Geomicrobiology Journal, 30 (9): 851-860. DOI:10.1080/01490451.2013.790921. (SCI)
115. Fan, T.L., Fan Y.X., Zhao, H., Chen, F.H., Lai Z.P., 2013. Investigations on the degree of bleaching of quartz OSL signals using modern aeolian dust from western Loess Plateau, China. Geochronometria, 40: 165-176. DOI 10.2478/s13386-013-0112-y. (SCI)
116. Liu, X.J., Lai, Z.P.*, 2013. Optical dating of sand wedges and ice-wedge casts from Qinghai Lake 面積 on the northeastern Qinghai-Tibet Plateau and its palaeoenvironmental implications. Boreas, 42: 333-341. DOI:10.1111/j.1502-3885.2012.00288.x. (SCI)
117. Yi, L.*, Lai, Z.P.*, Yu, H.J., Xu, X.Y., Su, Q., Yao, J., Wang, X.L., Shi, X.F., 2013. Chronologies of sedimentary changes in the south Bohai Sea, China: Constraints from luminescence and radiocarbon dating. Boreas 42, 267-284. DOI:10.1111/j.1502-3885.2012.00271.x. (SCI)
118. Chen, G.Q., Yi, L., Xu, X.Y., Hong-Jun Yu, H.J., Cao, J.R., Su, Q., Yang, L.H., Lai, Z.P., 2013. Testing the standardized growth curve (SGC) to OSL dating coastal sediments from the south Bohai Sea, China. Gechronometria 40, 101-112. DOI:10.2478/s13386-013-0103-z. (SCI)
119. Lai, Z.P., 2012. Was late Marine Isotope Stage (MIS) 3 warm and humid in nowadays arid northwestern China? Quaternary International, 279-280: 261. DOI:10.1016/j.quaint.2012.08.644. (SCI)
120. Yang, L.H.*, Wang, T., Zhou, J., Lai, Z.P.*, Long, H., 2012. OSL chronology and possible forcing mechanisms of dune evolution in the Horqin dune?eld in northern China since the Last Glacial Maximum. Quaternary Research, 78(2): 185-196. DOI:10.1016/j.yqres.2012.05.002. (SCI)
121. Chapot, M.S., Roberts, H.M., Duller, G.A.T., Lai, Z.P., 2012. A comparison of natural- and laboratory-generated dose response curves for quartz optically stimulated luminescence signals from Chinese Loess. Radiation Measurements, 47: 1045-1052. DOI:.1016/j.radmeas.2012.09.001. (SCI)
122. Sun, Y.J., Lai, Z.P.*, Madsen, D., Hou, G.L. 2012. Luminescence dating of a hearth from the archaeological site of Jiangxigou in the Qinghai Lake 面積 of the northeastern Qinghai-Tibet 高原 Quaternary Geochronology, 12: 107-110. DOI:10.1016/j.quageo.2012.01.010. (SCI)
123. E, C.Y.*, Lai, Z.P.*, Sun, Y.J., Hou, G.L., Yu, L.P., Wu, C.Y., 2012. A luminescence dating study of loess deposits from the Yili River basin in western China. Quaternary Geochronology, 10: 50-55. DOI: 10.1016/j.quageo.2012.04.022. (SCI)
124. Zhang, J.R., Lai, Z.P.*, Jia, Y.L., 2012. Luminescence chronology for late Quaternary lake levels of enclosed Huangqihai Lake in East Asian monsoon marginal 面積 in northern China. Quaternary Geochronology, 10: 123-128. DOI:10.1016/j.quageo.2012.04.015. (SCI)
125. Zhao, J.D., Lai, Z.P., Liu, S.Y., Song, Y.G., Li, Z.Q., Jiang, H.L., 2012. OSL and ESR dating of glacial deposits and its implications for glacial landform evolution in the Bogeda Peak 面積, Tianshan range, China. Quaternary Geochronology, 10: 237-243. DOI:10.1016/j.quageo.2012.03.004. (SCI)
126. Hou, G.L., Lai, Z.P.*, Sun, Y.J., Ye, M.L., 2012. Luminescence and radiocarbon chronologies for the Xindian Culture site of Lamafeng in the Guanting Basin on the NE edge of the Tibet Plateau. Quaternary Geochronology, 10: 394-398. DOI: 10.1016/j.quageo.2012.02.024. (SCI)
127. Liu, X.J., Lai, Z.P.*, Yu, L.P., Sun, Y.J., Madsen, D., 2012. Luminescence chronology of aeolian deposits from the Qinghai Lake 面積 in the Northeastern Qinghai-Tibet Plateau and its palaeoenvironmental implications. Quaternary Geochronology, 10: 37-43. DOI: 10.1016/j.quageo.2012.01.016. (SCI)
128. Jia, Y.L., Lai, Z.P.*, Zhang, J.R., Peng, X.M., Zhang, B., Zhang, Z., Wang, P.L., 2012. Chronology and provenance of aeolian sediments from Poyang Lake 面積 in the middle reaches of the Yangtze River in China. Quaternary Geochronology, 10: 44-49. DOI: 10.1016/j.quageo.2012.01.011. (SCI)
129. Zhang, B., Ou, X.J., Lai, Z.P.*, 2012. OSL ages revealing the glacier retreat in the Dangzi valley in the eastern Tibet Plateau during the Last Glacial Maximum. Quaternary Geochronology, 10: 244-249. DOI: 10.1016/j.quageo.2012.01.013. (SCI)
130. Cao, G.C., Long, H., Zhang, J.R., Lai, Z.P., 2012. Quartz OSL dating of last glacial sand dunes near Lanzhou on the western Chinese Loess Plateau: A comparison between different granulometric fractions. Quaternary Geochronology 10, 32-36. DOI:10.1016/j.quageo.2011.12.002. (SCI)
131. Long, H., Lai, Z.P., Frenzel, P., Fuchs, M., Haberzett, T., 2012. Holocene moist period recorded by the chronostratigraphy of a lake sedimentary sequence from Lake Tangra Yumco on the south Tibet 高原 Quaternary Geochronology, 10: 136-142. DOI:10.1016/j.quageo.2011.11.005. (SCI)
132. Hou, G.L., Lai, Z.P., Xiao, J.Y., E, C.Y., 2012. Reconstruction of cultivated land during mid-Holocene in the middle and lower reaches of 黃色 River and human impact on vegetations. JOURNAL OF GEOGRAPHICAL SCIENCES, 22(5): 933-945. DOI: 10.1007/s11442-012-0974-6.(SCI)
133. Yu, L.P., Lai, Z.P.*, 2012. OSL chronology and palaeoclimatic implications of aeolian sediments in the eastern Qaidam Basin of the northeastern Qinghai-Tibet Plateau. Palaeogeography, Palaeoclimatology, Palaeoecology, 337-338: 120-129. DOI:10.1016/j.palaeo.2012.04.004. (SCI)
134. Long, H., Lai, Z.P.*, Fuchs, M., Zhang, J.R., Li, Y., 2012. Timing of Late Quaternary palaeolake evolution in Tengger Desert of northern China and its possible forcing mechanisms. Global and Planetary Change, 92–93: 119–129, DOI:10.1016/j.gloplacha.2012.05.014. (SCI)
135. Long, H., Lai, Z.P.*, Fuchs, M., Zhang, J.R., Yang, L.H., 2012. Palaeodunes intercalated in loess strata from the western Chinese Loess Plateau: timing and palaeoclimatic implications. Quaternary International 263, 37-45. DOI:10.1016/j.quaint.2010.12.030. (SCI)
136. Fei, J., Lai, Z.P., He, H.M., Zhou, J., 2012. Historical water level change of Lake Weishan in East China from 1758-1902 AD: relationship with the flooding of the 黃色 River. Limnology, 13(1), 117-124. DOI:10.1007/s10201-011-0361-5. (SCI)
137. An, F.Y., Ma, 赫茲, Wei, H.C., Lai, Z.P.*, 2012. Distinguishing aeolian signature from lacustrine sediments of the Qaidam Basin in northeastern Qinghai-Tibet Plateau and its palaeoclimatic implications. Aeolian Research, 4: 17-30, DOI:10.1016/j.aeolia.2011.12.004.(SCI)
138. Liu, K., Lai, Z.P.*, 2012. Chronology of Holocene sediments from the archaeological Salawusu site in the Mu Us Desert in China and its palaeoenvironmental implications. Journal of Asian 地球 Sciences, 45: 247-255. DOI:10.1016/j.jseaes.2011.11.002.(SCI)
139. Yi, L., Yu, H.J., Ge, J.Y., Lai, Z.P., Xu, X.Y., Qin, L., Pen, S.Z., 2012. Reconstructions of annual summer precipitation and 溫度 in north-central China since 1470 AD based on drought/flood index and tree-ring records. Climatic Change, 110: 469-498. DOI 10.1007/s10584-011-0052-6. (SCI)
140. Yang, J., Jiang, H.C., Wu, G., Hou, W.G., Sun, Y.J., Lai, Z.P., Dong, H.L., 2012. Co-occurrence of nitrite-dependent anaerobic 甲烷 oxidizing and anaerobic ammonia oxidizing bacteria in two Qinghai-Tibet saline lakes. Frontiers of 地球 Science, 6(4): 383-391. DOI:10.1007/s11707-012-0336-9.(SCI)
141. Seong, Y.B., Kang, H.C., Ree, J.H, Choi, J.H., Lai, Z.P., Long, H., Yoo, H.O., 2011. Geomorphic constraints on active mountain growth by the lateral propagation of 斷層related folding: A case study on Yumu Shan, NE Tibet. Journal of Asian 地球 Sciences, 41: 184-194. DOI:10.1016/j.jseaes.2011.01.015. (SCI)
142. Zhang, J.R., Jia, Y.L., Lai, Z.P.*, Long, H., Yang, L.H., 2011. Holocene evolution of Huangqihai Lake in semi-arid northern China based on sedimentology and luminescence dating. The Holocene, 21: 1261-1268. DOI:10.1177/0959683611405232. (SCI)
143. Yang, L.H., Lai, Z.P.*, Long, H., Zhang, J.R., 2011. Construction of a quartz OSL standardised growth curve (SGC) for aeolian samples from the Horqin dunefield in Northeastern China. Geochronometria, 38: 391-396.DOI: 10.2478/s13386-011-0045-2.(SCI)
144. Liu, X.J., Lai, Z.P.*, Madsen, D., Yu, L.P., Liu, K., Zhang, J.R., 2011. Lake level variations of Qinghai Lake in northeastern Qinghai-Tibet Plateau since 3.7 ka based on OSL dating. Quaternary International, 236: 57-64. DOI:10.1016/j.quaint.2010.08.009. (SCI)
145. Long, H., Lai, Z.P.*, Wang, N.A., Zhang, J.R., 2011. A combined luminescence and radiocarbon dating study of Holocene lacustrine sediments from arid northern China. Quaternary Geochronology, 6: 1-9. DOI: 10.1016/j.quageo.2010.06.001. (SCI)
146. Yang, L.H., Zhou, J., Lai, Z.P.*, Long, H., Zhang, J.R., 2010. Lateglacial and Holocene dune evolution in the Horqin dunefield of northeastern China based on Luminescence dating. Palaeogeography, Palaeoclimatology, Palaeoecology, 296: 44-51. DOI:10.1016/j.palaeo.2010.06.014(SCI)
147. Xu, L.B., Ou, X.J., Lai, Z.P., Zhou, S.Z., Wang, J., Fu, Y.C., 2010. Timing and style of Late Pleistocene glaciation in the Queer Shan, northern Hengduan Mountains in the eastern Tibet Plateau. Journal of Quaternary Science 25, 957-966. DOI: 10.1002/jqs.1379.(SCI)
148. Long, H., Lai, Z.P., Wang, N.A., Li, Y., 2010. Holocene climate variations from Zhuyeze terminal lake records in East Asian monsoon margin in arid northern China. Quaternary Research, 74: 46-56, DOI:10.1016/j.yqres.2010.03.009. (SCI)
149. Liu, X.J., Lai, Z.P.*, Long, H., Fan, Q.S., Sun, Y.J., 2010. Timing of high lake levels of Qinghai Lake in the Qinghai-Tibet Plateau since Last Interglaciation based on quartz OSL dating. Quaternary Geochronology, 5: 218-222. DOI:10.1016/j.quageo.2009.03.010.(SCI)
150. Long, H., Lai, Z.P.*, Fan, Q.S., Sun, Y.J., Liu, X.J., 2010. Applicability of a quartz OSL standardised growth curve for De determination up to 400 Gy for lacustrine sediments from the Qaidam Basin of the Qinghai-Tibet 高原 Quaternary Geochronology, 5: 212-217,DOI: 10.1016/j.quageo.2009.05.005.(SCI)
151. Lai, Z.P.*, Zhang, W.G., Chen, X., Jia, Y.L., Liu, X.J., Fan, Q.S., Long, H., 2010. OSL chronology of loess deposits in East China and its implications for East Asian monsoon history. Quaternary Geochronology, 5: 154-158, DOI:10.1016/j.quageo.2009.02.006.(SCI)
152. Lai, Z.P.*, 2010. Chronology and the upper dating limit for loess samples from Luochuan section in Chinese Loess Plateau using quartz OSL SAR protocol. Journal of Asian 地球 Sciences, 37: 176-185, DOI: 10.1016/j.jseaes.2009.08.003. (SCI)
153. Sun, Y.J., Lai, Z.P.*, Long, H., Liu, X.J., Fan, Q.S., 2010. Quartz OSL dating of archaeological sites in Xiao Qaidam Lake of the NE Qinghai-Tibet Plateau and its implication for palaeoenvironmental changes. Quaternary Geochronology, 5: 360-364, DOI: 10.1016/j.quageo.2009.02.013 . (SCI)
154. Fan, Q.S., Lai, Z.P.*, Long, H., Sun, Y.J., Liu, X.J., 2010. OSL chronology for lacustrine sediments recording high stands of Gahai Lake in Qaidam Basin, northeastern Qinghai-Tibet Plateau. Quaternary Geochronology, 5: 223-227, DOI:10.1016/j.quageo.2009.02.012.(SCI)
155. He, Z., Zhou, J., Lai, Z.P.*, Yang, L.H., Liang, J.M., Long, H., Ou, X.J., 2010. Quartz OSL dating of sand dunes of Late Pleistocene in the Mu Us Desert in northern China. Quaternary Geochronology, 5: 102-106, DOI:10.1016/j.quageo.2009.02.011.(SCI)
156. Ou, X.J., Xu, L.B., Lai, Z.P.*, Long, H., He, Z., Fan, Q.S., Zhou, S.Z., 2010. Potential of quartz OSL dating on moraine deposits from eastern Tibet Plateau using SAR protocol. Quaternary Geochronology, 5: 257-262, DOI:10.1016/j.quageo.2009.02.004. (SCI)
157. Kaiser, K., Lai, Z.P., Schneider, B., Junge, F.W., 2010. Late Pleistocene genesis of the middle Yarlung Zhangbo Valley, southern Tibet (China), as deduced by sedimentological and luminescence 數據 Quaternary Geochronology, 5: 200-204, DOI:10.1016/j.quageo.2009.01.005. (SCI)
158. Miao, X.D., Lindsey, D.A., Lai, Z.P., Liu, X.D., 2010. Contingency table analysis of pebble lithology and roundness: a case study of Huangshui River, China and comparison to rivers in the Rocky Mountains, USA. Sedimentology Geology, 224: 49-53, DOI:10.1016/j.sedgeo.2009.12.007. (SCI)
159. Xiao, S.B., Liu, W.G., Li, A.C., Yang, S.Y., Lai, Z.P., 2010. Pervasive autocorrelation of the chemical index of alteration in sedimentary profiles and its palaeoenvironmental implications. Sedimentology, 57: 670-676, DOI:10.1111/j.1365-3091.2009.01113.x.(SCI)
160. Lai, Z.P.*, Kaiser, K, Brückner, H., 2009. Luminescence dated aeolian deposits of late Quaternary age in the southern Tibet Plateau and their implications for landscape history. Quaternary Research, 72: 421-430, DOI:10.1016/j.yqres.2009.07.005.(SCI)
161. Kaiser, K., Lai, Z.P., Schneider, B., Schoch, W.H., Shen, X.H., Miehe, G., Brückner, H. 2009. Sediment sequences and paleosols in the Kyichu Valley, southern Tibet (China), indicating Late Quaternary environmental changes. Island Arc, 18: 404-427,DOI:10.1111/j.1440-1738.2008.00629.x.(SCI)
162. Kaiser, K., Lai, Z.P., Schneider, B., Reudenbach, C., Miehe, G., Brückner, H. 2009. Stratigraphy and palaeoenvironmental implications of Pleistocene and Holocene aeolian sediments in the Lhasa 面積, southern Tibet (China). Palaeogeography, Palaeoclimatology, Palaeoecology, 271: 329-342, DOI:10.1016/j.palaeo.2008.11.004.(SCI)
163. Lai, Z.P.*, Brückner, H., Z?ller, L., Fülling, A. 2008. Effects of thermal treatment on the growth curve shape for OSL of quartz extracted from Chinese loess. Radiation Measurements 43, 763-766, DOI:10.1016/j.radmeas.2008.01.023.(SCI)
164. Lai, Z.P.*, Z?ller, L., Fuchs, M., Brückner, H., 2008. Alpha efficiency determination for OSL of quartz extracted from Chinese loess. Radiation Measurements, 43: 767-770,DOI:10.1016/j.radmeas.2008.01.022.(SCI)
165. Lai, Z.P.*, Brückner, H., 2008. Effects of feldspar contamination on equivalent dose and the shape of growth curve for OSL of silt-sized quartz extracted from Chinese loess. Geochronometria, 30: 49-53, DOI: 10.2478/v10003-008-0010-0.(SCI)
166. Lai, Z.P.*, Brückner, H., Z?ller, L., Fülling, A., 2007. Existence of a common growth curve for silt-sized quartz OSL of loess from different continents. Radiation Measurements, 42: 1432-1440, DOI: 10.1016/j.radmeas.2007.08.006.(SCI)
167. Lai, Z.P.*, Wintle, A.G., Thomas, D.S.G., 2007. Rates of dust deposition between 50 ka and 20 ka revealed by OSL dating at Yuanbao on the Chinese Loess Plateau. Palaeogeography, Palaeoclimatology, Palaeoecology, 248: 431-439, DOI:10.1016/j.palaeo.2006.12.013.(SCI)
168. Lai, Z.P.*, Wintle, A.G., 2006. Locating the boundary between the Pleistocene and the Holocene in Chinese loess using luminescence. The Holocene, 16: 893-899,DOI: 10.1191/0959683606hol980rr.(SCI)
169. Lai, Z.P.*, 2006. Testing the use of an OSL standardised growth curve (SGC) for De determination on quartz from the Chinese Loess Plateau. Radiation Measurements, 41: 9-16, DOI:10.1016/j.radmeas.2005.06.031. (SCI)
170. Lai, Z.P.*, Murray, A., Bailey, R., Huot, S., B?tter-Jensen, L., 2006. Quartz red TL SAR equivalent dose overestimation for Chinese loess. Radiation Measurements, 41: 114-119. (SCI)
171. Lai, Z.P.*, 安迪·穆雷, A.S., 2006. 紅色 TL of quartz extracted from Chinese loess: bleachability and 色彩飽和度 dose. Radiation Measurements 41, 836-840, DOI:10.1016/j.radmeas.2005.06.006.(SCI)
172. Lai, Z.P.*, Stokes, S., Bailey, R., Fattahi, M., Arnold, L., 2003. Infrared stimulated red luminescence from Chinese loess: basic observations. Quaternary Science Reviews, 22: 961-966, DOI:10.1016/S0277-3791(03)00030-1.(SCI)
173. Porter, S.C., Singhvi, A.K., An, Z.S., Lai, Z.P., 2001. Luminescence age and palaeoenvironmental implications of a late Pleistocene ground wedge on the Northeastern Tibet Plateau. Permafrost and Periglacial Processes, 12(2): 203-210, DOI: 10.1002/ppp.386.(SCI)
174. Liu, X.J., Lai, Z.P., Ma, Y.W., Yu, L.P., 2010. Land cover changes in Qaidam Area from 2000 to 2008. ICMT2010: 1387-1390. DOI:10.1109/ICMULT.2010.5631384. (EI)
175. Lai, Z.P.*, Arnold, L., Stokes, S., Bailey, R., Fattahi, M., 2002. Detection of Far-紅色 IRSL from Loess. Ancient TL, 20(2): 41-46.
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36. 張志剛,王建,賴忠平,徐孝彬,白世彪,張茂恒. 2012. 稻城冰帽冰物光釋光測年研究中遇到的問題及探討. 地質學報 86:602-610.
37. 劉德梅,陳桂琛,賴忠平,劉向軍,周國英,宋文珠. 2012. 基于光釋光測年研究青海湖三種沼澤濕地的發育及沉積速率 鹽湖研究 3:9-14.
38. 徐佳佳,賈玉連,賴忠平,王彭嶺,徐敏,申洪源 2012. 黃旗海湖泊沉積記錄的早中全新世大湖期環境的差異性. 沉積學報 4:731-738.
39. 馬玉偉,張靜然,劉向軍,賴忠平. 2011. 青海湖末次冰消期以來的湖面變化. 鹽湖研究 19:19-25.
40. 白旸,王乃昂,何瑞霞,李景滿,賴忠平. 2011. 巴丹吉林沙漠湖相沉積的探地雷達圖像及光釋光年代學證據. 中國沙漠 31:842-847.
41. 楊林海,賴忠平,周杰,隆浩,張靜然. 2011. 光釋光測年和孢粉分析揭示的晚冰期以來科爾沁沙地演化過程. 地理科學31: 695-701.
42. 歐先交,曾蘭華,隆浩,許劉兵,周尚哲,賴忠平*. 2011. 橫斷山脈地區末次冰期冰磧物石英光釋光測年的適應性. 冰川凍土 33:110-117.
43. 劉向軍,賴忠平*. 2010. 青海湖晚第四紀湖面變化研究進展. 地球環境學報1:79-88.
44. 樊啟順,賴忠平*,劉向軍,孫永娟,隆浩. 2010. 晚第四紀柴達木盆地東部古湖泊高湖面光釋光年代學. 地質學報 84:1652-1660.
45. 劉凱,賴忠平,樊啟順,李保生. 2010. 薩拉烏蘇地區末次冰期酒坊臺剖面光釋光年代及其環境意義. 鹽湖研究18:1-7.
46. 何忠,周杰,賴忠平,楊林海,隆浩,梁劍鳴. 2010. .石英光釋光測年揭示的晚第四紀毛烏素沙漠演化. 第四紀研究 29:744-754.
47. 賴忠平. 2008. 基于光釋光測年的中國黃土中氧同位素階段2/1和3/2界限位置及年代的確定. 第四紀研究25:883-891.
48. 賴忠平,周杰,夏應菲,張景昭,陳駿. 2001. 南京下蜀黃土紅外釋光測年. 自然科學進展11:203-207.
49. 賴忠平,周杰,夏應菲,張景昭,陳駿. 2001. 南京下蜀黃土紅外釋光地層年代學. 中國沙漠21:116-121
50. 賴忠平,張景昭,盧演儔 2001. 中國沙漠黃土邊界帶湖相沉積紅外釋光測年. 海洋地質與第四紀地質21:75-80.
51. 賴忠平,苗曉東,周杰,張景昭. 2001. 沙漠黃土邊界帶風成沙再生法單片技術等效劑量分布. 核技術24:1022-1024.
52. 賴忠平,周杰,盧演儔,西格威. 2000. 風成沉積紅外釋光與綠光釋光測年比較. 海洋地質與第四紀地質20:57-61.
53. 賴忠平,張景昭,盧演儔. 1999. 紅外釋光測年中黃土樣品預熱條件的確定. 核技術22:612-615.
54. 賴忠平,周杰,盧演儔,西格威. 1999. 風稱沉積單片技術釋光測年. 中國沙漠19:403-406.
55. 賴忠平,周杰,盧演儔,西格威. 1999. 綠光釋光測年中基于單片技術的再生/附加法. 地質力學學報5:89-93.
56. 李力,孫友斌,鹿化煜,賴忠平,安芷生 1998. 末次間冰期黃土高原粉塵事件與大西洋冷事件對比. 科學通報43:90-93.
57. 張景昭,賴忠平. 1997. 光釋光測年:黃土樣品 IRSL 信號的曬退實驗. 核技術,08:37-40.
參考資料 >
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