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赖忠平 个人信息: 赖忠平,男,博士,博士生导师,教授(二级)。 汕头大学海洋科学研究院。汕头大学释光测年实验室、流域与三角洲演化团队负责人。 地址:中国广东省汕头市大学路243号,邮编515063。 邮箱:zhongping.lai@yahoo.com; zhongping_lai@stu.edu.cn 汕头大学教师个人主页: https://www.stu.edu.cn/mbi/Content.aspx?type=content&Content_ID=1535 Orcid: https://orcid.org/0000-0002-0139-9346 ResearchGate: https://www.researchgate.net/profile/Zhongping-Lai 赖忠平教授简介 赖忠平,博士,二级教授。从事第四纪地质与环境研究。在牛津大学获博士学位、中科院获硕士学位、华东师大获学士学位。牛津大学Clarendon Scholar、德国Humboldt Fellow。进入斯坦福大学“2021全球前2%顶尖科学家” (World’s Top 2% Scientists 2021)(进入前1%)榜单,在地球科学、海洋科学和环境科学三个领域都进入全球高被引学者榜单。国际基金会受邀评审专家:英国NERC基金委、瑞士和挪威国家基金委。 在Earth and Planetary Science Letters, Geophysical Research Letters, Quaternary Science Reviews, Geomorphology, Science of the Total Environment, Environmental Pollution等刊物上发表学术论文220多篇,其中国际SCI论文150多篇,ResearchGate上h指数42,引用5300多次。曾任国际SCI刊物Quaternary Research(2010–2017)和Aeolian Research(2010–2017)副主编;国际SCI刊物Geochronometria物理方法领域编委;《地球科学前沿》、《盐湖研究》、《湖泊科学》编委。教育部地理科学教指委委员。中国青藏高原研究会理事、中国冰冻圈科学学会(筹)理事。 流域与三角洲研究团队的定位:在全球变化及地球冰期气候旋回背景下,以“从源到汇”的系统思维,聚焦流域与三角洲,研究地球表层陆地、河流、三角洲与海洋及气候的耦合演化,及其与人类活动的关系。研究领域包括第四纪地质与环境、地质年代学、地貌学、考古年代学、地下水砷污染与沉积过程的关系等基础研究以及与国民经济相关的重大科学问题。 指导的学生获两篇中科院优秀博士论文、德国洪堡基金、欧盟玛丽居里基金,英国UK Research and Innovation奖学金到剑桥大学攻读博士学位、普度大学全奖,以及中科院院长奖、省级优秀硕士论文、省级优秀本科论文、大学生暑期三下乡社会实践报告“全国优秀团队”,等。 教育背景: 1. 1988/09-1992/07 华东师范大学 (中国上海) ,地理学 ,理学学士 2. 1994/09-1997/09 中国科学院地球环境研究所 (中国西安) ,第四纪地质学,理学硕士 3. 2001/10-2005/09 牛津大学 (英国牛津) ,地理与环境 ,哲学博士 工作经历: 1. 1997/10-2001/09 中国科学院地球环境研究所,研究实习员,助理研究员 2. 1998/03-1999/03 印度物理研究院,访问学者 3. 2004/10-2005/12 丹麦Risoe国家实验室,访问学者 4. 2006/01-2007/10 德国马尔堡大学和拜罗伊特大学,洪堡学者 5. 2007/11-2014/09 中国科学院青海盐湖所,教授 6. 2014/10-2018/10 中国地质大学 (武汉) ,教授(二级) 7. 2018/11-至今 汕头大学海洋科学研究院,教授(二级) 获奖及荣誉: 1. 1997: 意大利第三世界科学院南南合作奖学金 2. 2001: 英国牛津大学克拉伦登奖学金(Clarendon Scholarship) 3. 2002:英国牛津大学耶稣学院优秀研究生奖学金(Graduate Scholarship) 4. 2004:中国教育部优秀留学生奖学金 5. 2005:德国亚历山大·冯·洪堡基金(Humboldt Fellowship) 主要学术兼职: 1. 国际SCI期刊Quaternary Research (2010-2017) 和Aeolian Research (2010-2017) 副主编,Geochronometria (SCI)及 International Journal of Luminescence and Applications编委 2. 《地球科学前沿》、《盐湖研究》、《湖泊科学》编委 3. 中国青藏高原研究会理事 4. 中国冰冻圈科学学会(筹)理事 5. 教育部地理科学教指委委员。 主要研究兴趣: 第四纪地质年代学(光释光测年及宇宙成因核素测年)、古人类考古年代学 全球气候变化、海平面、三角洲、河流系统与地表过程的耦合演化(流域与三角洲演化) 全球变化与碳循环 青藏高原及干旱区地貌与第四纪环境 沉积环境与地下水砷污染机制 主持的主要科研项目: 1. 末次冰期旋回大河流域冲积平原演化与海平面变化的耦合关系. 汕头大学科研人才引进经费 (NTF19003) ,300 万元,2019-2021 2. 利用光释光和埋藏测年技术建立江汉盆地第四纪地层年代序列,国家自然科学基金面上项目 (41877438) ,62万元,2019-2022 3. 柴达木盆地新生代沉积记录的西风气候演化,国家自然科学基金重大二级课题 (41290252) ,350万元,2013-2017 4. 青藏高原东部玉树及毗邻地区地震释光年代学,国家自然科学基金面上项目(41172168),85万元,2012-2015 5. 中部和东部沙漠/沙地,中国科学院先导专项课题(XDA05120500;共同主持),340万元,2011-2015 6. 柴达木盆地察尔汗盐湖成盐期的光释光年代学研究,国家自然科学基金面上项目(40872119),57万元,2009-2011 7. 青藏高原环境变化与盐湖演化,中国科学院项目(A0961),300万元,2008-2012 指导的研究生: 指导的博士生获两篇中科院优秀博士论文,德国洪堡学者一名、欧盟玛丽居里学者一名、英国UK Research and Innovation奖学金到剑桥大学攻读博士学位、普度大学全奖,中国科学院院长奖一名,以及大学生暑期三下乡社会实践报告“全国优秀团队”、省级优秀硕士论文、省级优秀本科论文等。 指导研究生的心得: 报考我的研究生吗?英雄不问出生!看人看优点!我期待你思考的是自己的优点、对科学和未知进行探索的兴趣,以及人生展望、工作与爱好结合的程度等。我深度欢迎把学习、工作、思考和成长当成爱好的学生。人的成长在于“扬长”而非“补短”,教育的真谛在于发现和提升优点。所以,我选你做研究生是因为我看到了你特有的优点和潜力,并且这份潜力若没有发挥出来会很可惜;我希望我是那个让你看到自己的潜力、并使之发挥出来的人。你为自己工作(你自己的前途和未来),我为“你”工作(导师是引路人)。定方向----我的责任大,去实现----你的责任大,我们密切合作,共同成长。你不必担心自己有缺点,我的缺点可能比你多。小缺点呢,你自己能管;大缺点呢,法律会管。我担心什么呢? 我不鼓励传统意义的感恩(即回报,这种观念过时了)。我提倡成长、责任与传承----当你有能力时请帮助后辈;你的成长以及这份传承将是最好的“感恩”。所以,你不必感谢我,你应感谢你自己。我们人格平等,你需要随时保持独立思考、随时准备质疑,包括对我或对任何所谓的‘权威’。从科学的视角,“权威”本质上是个贬义词!爱因斯坦曾说:为了惩罚我蔑视权威,命运将我变成了一个权威(In order to punish me for disdaining authority,fate has transformed me into an authority)。博士毕业时在你的研究议题上超过我应是对你的最低要求!这也是创新的最低要求。如果你没有问题(不提问、不质疑),那没有问题本身就是你的最大问题!当然,要有理性和逻辑;这是中国哲学最缺乏的(这是中国没能产生自然科学的根本原因之一吧)。我们都要警醒! 有人认为“要成功必须吃苦”,鼓励“头悬梁锥刺股”,所谓“吃得苦中苦,方为人上人”。这种在物质匮乏下形成的匮乏思维的功利主义观念已经过时了!我们平等做人,所以不做“人上人”!民国时剪掉了后脑勺的辫子,现在该剪掉思维里的“辫子”了!人需要点“守脑如玉”。我们提倡“成长且快乐着”。登上珠穆朗玛峰是吃饱了饭撑的去吃苦,还是挑战自我、挑战人类极限的快乐?我们都有自己的答案!做科学也一样,在探索未知进而自我成长的过程中你将乐在其中! 印刷术和纸张的普及带来了巨变,将知识从少数人的特权变成了大众的福利;而互联网则将信息传播的成本变得可以忽略不计,这终结了知识的匮乏性(匮乏思维),迎来了丰裕时代(丰裕思维)。大众终于可以享受传播和分享知识和思想的乐趣,进而人类认知的方式终于可以从群体化的“知识点”的灌输跃迁到个性化的“兴趣点”的发挥,即创新。但, 从小学到大学我们的教学还停留在“知识点”灌输上;这是以“知识为导向”的学习,目的是知道已有的知识。而探索未知需要的是以“问题为导向”的创新,目的是创造新的知识。我们期待能开启新的教与学的模式。研究生的开始阶段需要完成这个思维升级(若中学或本科就能完成,多好啊),从“被灌输”到“去创新”。你的论文题目就是你的科学问题,以此为中心展开你的学习和工作,开启你的探索之旅。 历史上不识字的是“文盲”,现在不懂科学原理不具备科学思维的是“科盲”;在很快要到来的智能时代里,不懂审美的将成为“美盲”,进而沦为尤瓦里·赫拉利说的“无用阶级(useless class)”。科学蕴含了审美(推荐美国科学家阿·热“可怕的对称”一书,讲述科学与美的关系)!你将以好奇为起点,发现科学的美,最终成为一个审美的“人”!与未来为伍,成为你自己!康德说,人是自己的目的。 科学是在试错中进步的,人也是在试错中成长的。所以,一个好的社会制度不在于不犯错,而是不做鸵鸟、能及时纠错,不断积累不断完善。要解决问题,而不是解决提出问题的人。这,造就了文明与野蛮的分野。同样,一个优秀的人不是不犯错,而是会及时反省和纠错,如此不断成长。“一日三省”并非虚言。这,墨化了修养与粗鄙的区别。这种“错误”的产生是因为人不断在尝试、在突破认知的边界、在进步、在成长。我们应当厘清对所谓的“错误”的理解,“试错”是人类进步的必然途径。小学生错一题被罚做十题甚至一百题的做法违反了基本的认知规律!从这种传统教育系统里“模炼”出来的大学生,好奇心和创新能力都已备受“斧正”,其认知能力的提升首先需思维的突破。如此理解“试错”与成长的关系则宽容萌生,宽容自己、宽容非自己;就不会有捍卫所谓“立场”的不理性行为了,就会把注意力放在“建设”上。“真正的幸福来自于建设性的工作”(王小波引用罗素的话,但我没找到罗素的原文)。所以,科学不讲立场,只在乎对错,谁对听谁的;在这里,“权威”或“面子”没有立锥之地。这样,我们就能心平气和地讨论科学问题,不必做鸵鸟,无视、甚至去掩盖自己的“错误”,更不会为“伟光正” 所困、或为“面子”所绑架;进而建立“成长思维”(取代“成败思维”,刘邦的“某之所就孰与仲多”的家天下思维是典型代表)。从而精神自由,专注建设。这, 潜移了科学与愚昧的区分。自由不是想作什么就可以做什么,自由是想不做什么就可以不做什么,康德如是说。 读研为了找工作吗?也是吧,但显然也不是。在做科学的过程中你快乐了、卓越了、成长了,你自然会衣食无忧(我相信中国不会再回到文革时代了吧!?)。工作会来找你,你更将创造工作----为自己、为社会(马斯克、马云、马化腾等是典型例证)。 我相信,每个大学生都有改变世界的梦想。从改变自己开始,让自己发光,一直发光,同时就改变着世界,也与别的光互相融合,照亮世界。这是一种改变世界的开启方式。是不是很简单?“建立自我,追求无我”(李嘉诚语),说的就是这个过程吧。从改变自己开始的可能成为浮士德,“在摸索中不迷失正途”(哥德语);而从改变他人开始的则可能会变成梅菲斯特。莎士比亚说:“The heaven gives birth to us, is must treat as us torch, is not illuminates oneself, but shines the world. If because our German line cannot extend to other people, that was equal to has been dissimilar. (上天生下我们,是要我们做火炬,不是明亮自己,而是普照世界。如果德行不能推及他人,就等于没有一样)”。 你若有更好的方式请教教我哦^_^。 当人类摆脱了枷锁,人生的最大意义将是探索宇宙、提升认知、自我成长,进而改变世界! 一起探索宇宙、提升认知、共同成长、共同发光*^_^*! 发表的国际SCI学术论文(*为通讯作者) Chang Huang, Lupeng Yu*, Zhongping Lai* . Holocene millennial lake-level fluctuations of lake Nam Co in Tibet using OSL dating of shorelines. Journal of Hydrology, in revision Qinjing Shen, Surina Ao, Yantian Xu, Siwen Liu, Yixuan Wang, Yuansen Lai, Xiaodong Miao, Zhongping Lai , 2022. Aeolian landform processes since the last deglaciation revealed by OSL chronology and stratigraphy in the Hulunbuir dune field in NE China, Quaternary Geochronology, in press Guoshan Li, Yongbiao Wang, Sheng Li, Tan Wang, Wei Liao, Baozhu Deng, Zhongping Lai , 2022. Biotic response to rapid environmental changes during the Permian-Triassic mass extinction. Frontiers in Marine Science, in press 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 Headwater in Tibetan Plateau. Water, 14, 1593. https://doi.org/10.3390/w14101593 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. 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 area of the Yellow River in the Tibetan Plateau. Earth and Planetary Science Letters, 589, 117554. doi:10.1016/j.epsl.2022.117554. Xiaolin Xu, Jiemei Zhong, Xianmei Huang, Hongwei Li*, Zhaojing Ding, Zhongping Lai* , 2022. Age comparison by luminescence using quartz and feldspar on core HPQK01 from the Pearl River Delta in China. Quaternary Geochronology, 71, 101320. doi:10.1016/j.quageo.2022.101320 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 transgression pattern. Quaternary Geochronology, 70, 101308. doi:10.1016/j.quageo.2022.101308. 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. 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 biogeography and early hominin dispersals. Quaternary Science Reviews, 283, 107447. doi:10.1016/j.quascirev.2022.107447 Pervez, Rashid, Zhongping Lai *, 2022. Spatio-temporal variations of litter on Qingdao tourist beaches in China. Environment Pollution, 303, 119060. doi:10.1016/j.envpol.2022.119060. Liu, X.J.*, Li X.Z.*, Lai, Z.P.* , Cheng, F.*, 2022. Editorial: Late Quaternary Hydrological, Paleoenvironmental and Geomorphological Processes in the Tibetan Plateau and Its Adjacent Areas. Frontiers in Earth Science, 10, 839663. doi: 10.3389/feart.2022.839663. Huang, X.M., Miao, X.D.*, Chang, Q.F., Zhong, J.M., Mason, J.A., Hanson, P.R., Ou, X.J., Xu, L.B., Lai, Z.P.* , 2022. Tibetan dust accumulation linked to ecological and landscape response to global climate change. Geophysical Research Letters, 48, e2021GL096615. DOI: 10.1029/2021GL096615. (SCI) 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. https://doi.org/10.1016/j.catena.2021.105832. (SCI) Huang, C., Lai, Z.P *, Liu, X.J., Madsen, D., 2021. Lake-level history of Qinghai Lake on the NE Tibetan Plateau and its implications for Asian monsoon pattern - A review. Quaternary Science Reviews, 273, 107258. doi:10.1016/j.quascirev.2021.107258. (SCI) Zhongping Lai* , Yantian Xu, Peisong Zheng, 2021. Earth ice age dynamics: A bimodal forcing hypothesis. Frontiers in Earth Science, 9, 736895. DOI: 10.3389/feart.2021.736895. (SCI) 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 Tibetan Plateau. Frontiers in Earth Science, 9, 699693. DOI: 10.3389/feart.2021.699693. (SCI) 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 arsenic pollution. Catena, 207, 105650. DOI: 10.1016/j.catena.2021.105650. (SCI) Steffen Mischke, Zhongping Lai , Galina Faershtein, Naomi Porat, Matthias Röhl, Paul Braun, Johannes Kalbe, Hanan Ginat, 2021. A Late Pleistocene wetland setting in the arid Jurf ed Darawish region in central Jordan. Frontiers in Earth Science, 9, 722435. DOI: 10.3389/feart.2021.722435. (SCI) 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) Peisong Zheng, Joel B. Pedro, Markus Jochum, Sune O. Rasmussen, Zhongping Lai* , 2021. Different trends in Antarctic temperature and atmospheric CO2 during the last glacial. Geophysical Research Letters, 48, e2021GL093868. DOI: 10.1029/2021GL093868. (SCI) Guoshan Li, Wei Liao, Sheng Li, Yongbiao Wang*, Zhongping Lai* , 2021. Different triggers for the two pulses of mass extinction across the Permian and Triassic boundary across the Permian and Triassic boundary. Scientific Reports, 11, 6686. DOI: 10.1038/s41598-021-86111-7. (SCI) 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-Tibetan Plateau. Geochronometria, 28, 313-324. DOI: 10.2478/geochr-2020-0016. (SCI) Bety S. Al-Saqarat, Mahmoud Abbas, Zhongping Lai , Songlin Gong, Mustafa M. Alkuisi, Abdalla M.B. Abu Hamad, Paul A. Carling, John D. Jansen, 2020. A wetland oasis at Wadi Gharandal spanning 125–70 ka on the human migration trail in southern Jordan. 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DOI:10.13745/j.esf.sf.2020.9.7 曾兰华, 欧先交, 陈嵘, 赖忠平 . 2019. 天山乌鲁木齐河源末次冰期冰川沉积光释光测年. 冰川冻土, 1-11. 王懿萱, 陈天源, 吴蝉, 赖忠平 , 郭守栋, 丛禄. 2019. 柴达木盆地西台吉乃尔盐湖沉积的年代学研究. 干旱区地理, 42(04): 876-884. 刘向军, 赖忠平 ,David Madsen,李国强,于禄鹏, 黄昶, 陈发虎, 2018. 晚第四纪青海湖高湖面研究。第四纪研究, 陈旭,李长安,肖国桥,林晓, 赖忠平 . 2018. 岩溶地貌现场教学方案设计. 教育教学论坛: 88-89. 吴霜,刘倩,曹向明, 赖忠平 ,陈远辉,贾玉连. 2017. 赣北黄茅潭湖泊沉积记录的240年以来古洪水事件. 地理科学进展,36: 1413-1422. 夏银珍,刘维明, 赖忠平 ,胡凯衡,朱正峰,王昊,张信宝,曹广超. 2017. 大渡河石广东古滑坡堰塞湖沉积物光释光年代研究. 地球环境学报,8: 419-426. 陈天源,刘斯文, 赖忠平 ,王振亭,韩凤清,王懿萱. 2017. 巴丹吉林沙漠湖泊年轻沉积物14C测年初步研究. 盐湖研究,25: 60-66. 常秋芳, 芦宝良, 赖忠平 , 韩凤清, 谢兴俊. 2016. 青海南山风成沉积光释光年代学研究. 盐湖研究, 24: 54-61. 刘斯文,储国强, 赖忠平 . 2016. 放射性核素210Pb uns 、137Cs测定巴丹吉林沙漠湖泊岩心的年代及沉积速率. 地质学报, 90: 2013-2022. 欧先交,周尚哲, 赖忠平 ,曾兰华. 2015. 青藏高原第四纪冰川作用及其气候响应的讨论. 第四纪研究, 35(1):12-28. 温华春, 赖忠平 ,Michael E.Brookfield,I.Peter Martini,欧先交. 2015.北美五大湖区晚更新世劳伦泰德冰盖演化年代学综述及石英光释光测年的初步尝试. 冰川冻土,03:711-722. 杨晓云, 赖忠平 , 安福元. 2015. 那陵格勒河山谷段数字流域特征提取与流域调蓄能力初探. 盐湖研究, 2015(2):20-27. 刘维明, 崔鹏, 赖忠平 , 葛永刚, 胡凯衡, 张文敬, 苏春江, 易治宇. 2014. 雅鲁藏布大峡谷格嘎古堰塞湖沉积岩石磁学性质指示的溃决事件. 地球物理学报, 57(9), 2869-2877. 【Liu, W.M., Cui, P., Lai, Z.P. , Ge, Y.G., Hu, K.H., Zhang, W.J., Su, C.J., Yi, Z.Y., 2014. Sediment rock magnetic properties indicate outburst events for Gega dammed lake at the Tsangpo Gorge in the Tibetan Plateau. Chinese Journal of Geophysics, 57(9), 2869-2877. DOI:10.6038/cjg20140901. (In Chinese with English abstract).(SCI). 曾方明, 赖忠平 ,刘向军. 2014. 磁化率测量过程中样品重量对磁化率的影响. 盐湖研究 22: 21-25. 周保,彭建兵, 赖忠平 ,符超峰,林鸿洲,赵瑞欣. 2014. 黄河上游特大型滑坡群发特性的年代学研究. 第四纪研究,2014,02:346-353. 孙博亚,岳乐平, 赖忠平 ,刘卫国. 2014. 14kaB.P. 以来巴里坤湖区有机碳同位素记录及古气候变化研究. 第四纪研究,02:418-424. 鄂崇毅,杨太保, 赖忠平 ,孙永娟,姜莹莹. 2014. 中亚则克台黄土剖面记录的末次冰期以来的环境演变. 地球环境学报,02:163-172. 曾方明, 赖忠平 ,刘向军. 2014. 磁化率测量过程中样品重量对磁化率的影响. 盐湖研究,03:21-25. 彭学敏,贾玉连,胡亚萍,邢娜,龙进, 赖忠平 . 赣北芙蓉―周溪断面下蜀黄土粒度特征及其指示意义[J]. 热带地理,2014,05:663-671. 侯光良, 赖忠平 ,孙永娟,P.Jeffrey BRANTINGHAM. 2013. 全新世大暖期对青藏高原东北缘人类活动的影响. 干旱区地理. 06:971-978. 刘瑞元,刘向军, 赖忠平 . 2013. 光释光测年单个黄土样品测片个数选取问题的统计学研究. 盐湖研究03:25-29. Yu, L.P., Lai, Z.P.* , An, P., 2013. OSL chronology and palaeoclimatic implications of paleodunes in the middle and southwestern Qaidam Basin, Qinghai-Tibetan Plateau. Sciences in Cold and Arid Regions 5(2):0211-0219. Ou, X.J., Lai, Z.P.* , Zeng, L.H., Zhou, S.Z., 2012. OSL dating of glacial sediments from the Qinghai-Tibetan Plateau and its bordering mountains: a review and methodological suggestions. Journal of Earth Environment 3(2), 829-842. 赖忠平 * , 欧先交, 2013. 光释光测年基本流程. 地理科学进展, 32(5): 683-693. 欧先交, 赖忠平 * , 曾兰华, 2013. 不同释光方法测试冰川沉积物等效剂量的尝试. 核技术, 36(2): 1-6. 刘瑞元, 赖忠平 ,刘向军. 2013. OSL 测年中标准生长曲线法(SGC)求单个测片De 误差的数学分析. 核技术 36(3), 030205-1--030205-5. 欧先交, 张彪, 赖忠平 ,等.2013. 青藏高原东部当子沟末次冰期冰川演化光释光测年. 地理科学进展, 2013, 32(2):262-269. 于禄鹏, 赖忠平 * ,安萍,2013. 柴达木盆地中部与西南部古沙丘的释光年代学研究. 中国沙漠 ,33(2):453-464. 杨渐,蒋宏忱,孙永娟,吴耿,侯卫国,董海良, 赖忠平 . 2013. 青藏高原湖泊沉积物硫酸盐还原菌种群分布. 盐湖研究,1:7-13. 赵婉雨,杨渐,董海良,吴耿,王尚,孙永娟, 赖忠平 ,蒋宏忱. 2013. 柴达木盆地达布逊盐湖微生物多样性研究. 地球与环境,41(4):398-405. 孙政,沈冠军, 赖忠平 ,2012. 26Al-10Be等时线埋藏测年法基本原理与应用简介. 盐湖研究20(2):66-72. 欧先交, 曾兰华, 周尚哲, 赖忠平 * , 2012. 四川西部黄土沉积与环境演变研究综述. 地球环境学报 3(1): 692-704. 刘瑞元, 赖忠平 ,2012. OSL测年中SGC法求De均值的计算方法比较,盐湖研究 20(4):21-24. 张志刚,王建, 赖忠平 ,徐孝彬,白世彪,张茂恒. 2012. 稻城冰帽冰碛物光释光测年研究中遇到的问题及探讨. 地质学报 86:602-610. 刘德梅,陈桂琛, 赖忠平 ,刘向军,周国英,宋文珠. 2012. 基于光释光测年研究青海湖三种沼泽湿地的发育及沉积速率. 盐湖研究 3:9-14. 徐佳佳,贾玉连, 赖忠平 ,王彭岭,徐敏,申洪源. 2012. 黄旗海湖泊沉积记录的早中全新世大湖期环境的差异性. 沉积学报 4:731-738. 马玉伟,张静然,刘向军, 赖忠平 . 2011. 青海湖末次冰消期以来的湖面变化. 盐湖研究 19:19-25. 白旸,王乃昂,何瑞霞,李景满, 赖忠平 . 2011. 巴丹吉林沙漠湖相沉积的探地雷达图像及光释光年代学证据. 中国沙漠 31:842-847. 杨林海, 赖忠平 ,周杰,隆浩,张静然. 2011. 光释光测年和孢粉分析揭示的晚冰期以来科尔沁沙地演化过程. 地理科学31: 695-701. 欧先交,曾兰华,隆浩,许刘兵,周尚哲, 赖忠平 * . 2011. 横断山地区末次冰期冰碛物石英光释光测年的适应性. 冰川冻土 33:110-117. 刘向军, 赖忠平 * . 2010. 青海湖晚第四纪湖面变化研究进展. 地球环境学报1:79-88. 樊启顺, 赖忠平 * ,刘向军,孙永娟,隆浩. 2010. 晚第四纪柴达木盆地东部古湖泊高湖面光释光年代学. 地质学报 84:1652-1660. 刘凯, 赖忠平 ,樊启顺,李保生. 2010. 萨拉乌苏地区末次冰期酒坊台剖面光释光年代及其环境意义. 盐湖研究18:1-7. 何忠,周杰, 赖忠平 ,杨林海,隆浩,梁剑鸣. 2010. .石英光释光测年揭示的晚第四纪毛乌素沙地演化. 第四纪研究 29:744-754. 赖忠平 . 2008. 基于光释光测年的中国黄土中氧同位素阶段2/1和3/2界限位置及年代的确定. 第四纪研究25:883-891. 赖忠平 ,周杰,夏应菲,张景昭,陈骏. 2001. 南京下蜀黄土红外释光测年. 自然科学进展11:203-207. 赖忠平 ,周杰,夏应菲,张景昭,陈骏. 2001. 南京下蜀黄土红外释光地层年代学. 中国沙漠21:116-121 赖忠平 ,张景昭,卢演俦. 2001. 中国沙漠黄土边界带湖相沉积红外释光测年. 海洋地质与第四纪地质21:75-80. 赖忠平 ,苗晓东,周杰,张景昭. 2001. 沙漠黄土边界带风成沙再生法单片技术等效剂量分布. 核技术24:1022-1024. 赖忠平 ,周杰,卢演俦,西格威. 2000. 风成沉积红外释光与绿光释光测年比较. 海洋地质与第四纪地质20:57-61. 赖忠平 ,张景昭,卢演俦. 1999. 红外释光测年中黄土样品预热条件的确定. 核技术22:612-615. 赖忠平 ,周杰,卢演俦,西格威. 1999. 风称沉积单片技术释光测年. 中国沙漠19:403-406. 赖忠平 ,周杰,卢演俦,西格威. 1999. 绿光释光测年中基于单片技术的再生/附加法. 地质力学学报5:89-93. 李力,孙友斌,鹿化煜, 赖忠平 ,安芷生. 1998. 末次间冰期黄土高原粉尘事件与大西洋冷事件对比. 科学通报43:90-93. 张景昭, 赖忠平 . 1997. 光释光测年:黄土样品 IRSL 信号的晒退实验. 核技术,08:37-40.
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