徐志伟

[77] Li Wang, Chengzhi Hou, Xianghao Pang, Haochen Zhang, Hezi Yizhaq, Joseph A. Mason, Huayu Lu, Zhiwei Xu*. Slowdown of dune migration in East Asia’s inland deserts: A 35-year response to wind stilling. Geophysical Research Letters, 2025, 52(16): e2024GL113506. (学生一作, Nature Index期刊)

[76] Chengzhi Hou, Zhiwei Xu*, Kristopher B. Karnauskas, Danqing Huang, and Huayu Lu. Detecting and calibrating large biases in global onshore wind power assessment across temporal scales. Nature Communications, 2025, 16: 3775. (学生一作, Nature子刊)

[75] Zhiwei Dong, Yihong Xu*, Shihan Li, Xiaofei Li, Ying Wang, Zhiwei Xu*. Records of anthropogenic plutonium isotopes in wind-blown sand deposits: Tracing global fallout in northern China's semi-arid dune fields. Journal of Environmental Radioactivity, 2025, 285: 107658.

[74] 程星雨, 徐志伟*, 俞妍, 张小啸. 卫星遥感揭示的2001年以来中蒙地区沙尘事件频次变化及其原因. 中国沙漠, 2025, 45(2): 47-60. (学生一作)

2024

[72] 李宇航, 徐志伟, 刘燕华, 张玉虎, 孙福宝*.人工智能时代的地理科学前沿问题探析. 地理学报, 2024, 79(10): 2409-2424.

[71] Haochen Zhang, Shihan Li, Joseph A. Mason, Hezi Yizhaq, Dongwei Gui, Zhiwei Xu*. Biogeomorphological niche of a landform: Machine-learning approaches reveal controls on the geographical distribution of Nitraria tangutorum nebkhas. Earth Surface Processes & Landforms, 2024, 49(5): 1515-1529, doi: 10.1002/ESP.5783. (学生一作)

2023

[62] Uri Basson*, Eli Argaman, Hezi Yizhaq, Chi Xu, Zhiwei Xu, Ilan Stavi. Subsurface geodiversity determines shrub resilience vs. mortality under long-term droughts in the Israeli Negev drylands. Frontiers in Environmental Science, 2023, 11: 1168104, doi: 10.3389/fenvs.2023.1168104.

[61] Chengzhi Hou, Danqing Huang*, Hao Xu, Zhiwei Xu*. Evaluation of ERA5 reanalysis over the deserts in northern China. Theoretical and Applied Climatology, 2023, 151, 801-816, doi: 10.1007/s00704-022-04306-y. (学生一作)

[58]     Yanning Qiu*, Zhiwei Xu, Chi Xu, Milena Holmgren*. Can remotely sensed vegetation patterns signal dryland restoration success? Restoration Ecology, 2023, 31(3), e13760, doi: 10.1111/rec.13760. (学生一作)

2022

[57]     Li Wang, Yanning Qiu, Zhiyong Han, Chi Xu, Shuang-Ye Wu, Yao Wang, Milena Holmgren, Zhiwei Xu*. Climate, topography and anthropogenic effects on desert greening: A 40-year satellite monitoring in the Tengger desert, northern China. Catena, 2022, 209: 105851. (学生一作)

[56]     Shuangwen Yi*, Lin Zeng*, Zhiwei Xu, Yao Wang, Xianyan Wang, Jiang Wu, Huayu Lu. Sea-level changes in the Bohai Sea, northern China, constrained by coastal loess accumulation over the past 200 ka. Quaternary Science Reviews, 2022, 277: 107368.

[55]     Le Li*, Xiaoyu Zhu, Gen K. Li, Lianwen Liu*, Zhiwei Xu, Huayu Lu, Xiaomin Fang, Yougui Song, Liang Zhao, Jun Chen, Gaojun Li. In-situ silt generation in the Taklimakan Desert evidenced by uranium isotopes. Journal of Geophysical Research: Atmospheres, 2022, 127(17): e2022JD036435. (Nature Index刊物)

[54]     Bin J. W. Chen, Shuqing N. Teng, Guang Zheng, Lijuan Cui, Shao-peng Li, Arie Staal, Jan U. H. Eitel, Thomas W. Crowther, Miguel Berdugo, Lidong Mo, Haozhi Ma, Lalasia Bialic-Murphy, Constantin M. Zohner, Daniel S. Maynard, Colin Averill, Jian Zhang, Qiang He, Jochem B. Evers, Niels P. R. Anten, Hezi Yizhaq, Ilan Stavi, Eli Argaman, Uri Basson, Zhiwei Xu, Ming-Juan Zhang, Kechang Niu, Quan-Xing Liu, Chi Xu*. Inferring plant–plant interactions using remote sensing. Journal of Ecology, 2022, 110(10): 2268-2287, doi: 10.1111/1365-2745.13980.

[53] 安宇, 范念念*, 徐志伟, 刘兴年. 基于碎屑锆石的黄土高原-毛乌素交界区石茆黄土粉尘物源估算. 古地理学报, 2022, 24(4): 802-812.

2021

[50] Shushan Wang, Yan Yu, Xiao-Xiao Zhang, Huayu Lu, Xiao-Ye Zhang, Zhiwei Xu*. Weakened dust activity over China and Mongolia from 2001-2020 associated with climate change and land-use management. Environmental Research Letters, 2021, doi: 10.1088/1748-9326/ac3b79. (学生一作)

[49] Shihan Li, Joseph A. Mason, Yihong Xu, Chi Xu, Guang Zheng, Jinchang Li, Hezi Yizhaq, Shaoming Pan, Huayu Lu, Zhiwei Xu*. Biogeomorphology of nebkhas in the Mu Us dune field, north-central China: chronological and morphological results. Geomorphology, 2021, 107979. (学生一作)

[48] Yongxin Chen, Hezi Yizhaq, Joseph A. Mason, Xueliang Zhang, Zhiwei Xu*. Dune bistability identified by remote sensing in a semi-arid dune field of northern China. Aeolian Research, 2021, 53: 100751. (学生一作)

[47] 徐志伟*, 鹿化煜. 毛乌素沙地风沙环境变化研究的理论和新认识. 地理学报, 2021, 76(9): 2203-2223. (综述论文)

[46] Wei Yuan, Shuang-Ye Wu*, Shugui Hou, Zhiwei Xu, Hongxi Pang, Huayu Lu. Projecting Future Vegetation Change for Northeast China Using CMIP6 Model. Remote Sensing, 2021, 13(17): 3531.

[45] Nancy Shackelford*, Gustavo B. Paterno, Daniel E. Winkler, Todd E. Erickson, Elizabeth A. Leger, Lauren N. Svejcar, Martin F. Breed, Akasha M. Faist, Peter A. Harrison, Michael F. Curran, Qinfeng Guo, Anita Kirmer, Darin J. Law, Kevin Z. Mganga, Seth M. Munson, Lauren M. Porensky, R. Emiliano Quiroga, Péter Török, Claire E. Wainwright, Ali Abdullahi, Matt A. Bahm, Elizabeth A. Ballenger, Nichole Barger, Owen W. Baughman, Carina Becker, Manuel Esteban Lucas-Borja, Chad S. Boyd, Carla M. Burton, Philip J. Burton, Eman Calleja, Peter J. Carrick, Alex Caruana, Charlie D. Clements, Kirk W. Davies, Balázs Deák, Jessica Drake, Sandra Dullau, Joshua Eldridge, Erin Espeland, Hannah L. Farrell, Stephen E. Fick, Magda Garbowski, Enrique G. de la Riva, Peter J. Golos, Penelope A. Grey, Barry Heydenrych, Patricia M. Holmes, Jeremy J. James, Jayne Jonas-Bratten, Réka Kiss, Andrea T. Kramer, Julie E. Larson, Juan Lorite, C. Ellery Mayence, Luis Merino-Martín, Tamás Miglécz, Suanne Jane Milton, Thomas A. Monaco, Arlee M. Montalvo, Jose A. Navarro-Cano, Mark W. Paschke, Pablo Luis Peri, Monica L. Pokorny, Matthew J. Rinella, Nelmarie Saayman, Merilynn C. Schantz, Tina Parkhurst, Eric W. Seabloom, Katharine L. Stuble, Shauna M. Uselman, Orsolya Valkó, Kari Veblen, Scott Wilson, Megan Wong, Zhiwei Xu, Katharine L. Suding. Drivers of seedling establishment success in dryland restoration efforts. Nature Ecology & Evolution, 2021, 5: 1283-1290. (Nature 子刊)

2020

[43] Hezi Yizhaq*, Zhiwei Xu, Yosef Ashkenazy. The effect of  wind speed averaging time on the calculation of sand drift potential: new scaling laws. Earth and Planetary Science Letters, 2020, 544: 116373. (Nature Index刊物)

[42] Mengyao Jiang, Zhiyong Han*, Xusheng Li*, Yong Wang, Thomas Stevens, Jun Cheng, Cunjuan Lv, Yuwen Zhou, Qianqian Yang, Zhiwei Xu, Shuangwen Yi, Huayu Lu. Beach ridges of Dali Lake in Inner Mongolia reveal precipitation variation during the Holocene. Journal of Quaternary Science, 2020, doi: 10.1002/jqs.3195.

2019

[41] Mengchun Cui, Huayu Lu*, Giles F.S. Wiggs, Vicken Etyemezian, Mark R. Sweeney, Zhiwei Xu. Quantifying the effect of geomorphology on aeolian dust emission potential in northern China. Earth Surface Processes & Landforms, 2019, 44(14): 2872-2884, doi: 10.1002/esp.4714.

[40] Wei Yuan, Shuang-Ye Wu*, Shugui Hou*, Zhiwei Xu, Huayu Lu. NDVI-based assessment of climate change impact on vegetation growth in the humid-arid transition zone in northern China during 1982-2013. International Journal of Climatology, 2019, 39(15): 5583-5598, doi: 10.1002/joc.6172.

[39] 邱燕宁,任世钰,王鑫,杨鹏浩,李媛媛,李世寒,伍锡林,吴书翰,徐志伟,李国旗,黄成,徐驰*.基于无人机影像的草方格生态恢复区植被空间格局演化研究.生态学报, 2019, 39(24): 9058-9067.

[38] Huayu Lu*, Xianyan Wang, Xiaoyong Wang, Xi Chang, Hanzhi Zhang, Zhiwei Xu, Wenchao Zhang, Haizhen Wei, Xiaojian Zhang, Shuangwen Yi, Wenfang Zhang, Han Feng, Yichao Wang, Yao Wang, Zhiyong Han. Formation and evolution of desert-Gobi in central and eastern Asia. Earth-Science Reviews, 2019, 194, 251-263.

[37] Jiang Wu, Huayu Lu*, Shuangwen Yi, Zhiwei Xu, Yao Gu, Chenghong Liang, Mengchun Cui, Xuefeng Sun. Establishing a high-resolution luminescence chronology for the Zhenbeitai sand-loess section at Yulin, North-Central China. Quaternary Geochronology, 2019, 49, 78-84.

2018

[36] Zhiwei Xu*, Thomas Stevens, Shuangwen Yi, Joseph A. Mason, Huayu Lu. Seesaw pattern in dust accumulation on the Chinese Loess Plateau forced by late glacial shifts in the East Asian monsoon. Geology, 2018, 46: 871-874, doi: 10.1130/G45105.1. (Nature Index刊物)

[35] Zhiwei Xu*, Rui Hu, Kexin Wang, Joseph A. Mason, Shuang-Ye Wu, Huayu Lu. Recent greening (1981-2013) in the Mu Us dune field, north-central China, and its potential causes. Land Degradation & Development,  2018, 29(5): 1509-1520, doi: 10.1002/ldr.2910.

[34] 徐志伟, 鹿化煜. 自然地理学发展迎来新时代–从“2017年全国自然地理学大会”看自然地理学新发展与新挑战. 地理学报, 2018, 73(1): 192-196.

[33] Yuwen Zhou, Zhiyong Han*, Xusheng Li, Yong Wang, Cunjuan Lv, Mengyao Jiang, Qianqian Yang, Zhiwei Xu, Shuangwen Yi, Huayu Lu. Sandy Loess Records of Precipitation Changes and Monsoon Migrations in the Hunshandake Sandy Land since the Last Glacial Maximum. Paleoceanography and Paleoclimatology, 2018, 33(9): 945-957.

[32] Lin Zeng*, Shuangwen Yi*, Huayu Lu, Yingyong Chen, Fang Lei, Zhiwei Xu, Xianyan Wang, Wenfang Zhang. Response of dune mobility and pedogenesis to fluctuations in monsoon precipitation and human activity in the Hulunbuir dune field, northeastern China, since the last deglaciation. Global and Planetary Change, 2018, 168: 1-14.

[31] Cunjuan Lv, Xusheng Li*, Zhiyong Han, Yong Wang, Yuwen Zhou, Mengyao Jiang, Qianqian Yang, Zhiwei Xu, Shuangwen Yi, Huayu Lu. Fluvial response to precipitation variations since 36 ka in the Hunshandake Sandy Land in North China. Geomorphology, 2018, 317: 128-138.

2017

[30] Zhiwei Xu*, Joseph A. Mason, Huayu Lu, Shuangwen Yi, Yali Zhou, Jiang Wu, Zhiyong Han. Crescentic dune migration and stabilization: Implications for interpreting paleo-dune deposits as paleoenvironmental records. Journal of Geographical Sciences, 2017, 27(11): 1341-1358. (Invited Paper)

[29] Huayu Lu*, Haixin Zhuo, Wenchao Zhang, Shejiang Wang, Hongyan Zhang, Xuefeng Sun, Xin Jia, Zhiwei Xu, Xianyan Wang. Earth surface processes and their effects on human behavior in monsoonal China during the Pleistocene-Holocene epochs. Journal of Geographical Sciences, 2017, 27(11): 1311-1324.

[28] Xuefeng Sun*, Xin Jia, Huayu Lu, Xianyan Wang, Shuangwen Yi, Xiaoyong Wang, Zhiwei Xu, Fang Lei, Zhiyong Han. A modified depositional hypothesis of the Hanjiang Loess in the southern Qinling Mountains, central China. Progress in Physical Geography, 2017, 41(6): 775-787.

[27] Lin Zeng, Huayu Lu, Shuangwen Yi, Thomas Stevens, Zhiwei Xu, Haixing Zhuo, Kaifeng Yu, Hanzhi Zhang. Long-term Pleistocene aridification and possible linkage to high-latitude forcing: New evidence from grain size and magnetic susceptibility proxies from loess-paleosol record in northeastern China. Catena, 2017, 154: 21-32.

2016

[26] Hanzhi Zhang, Huayu Lu*, Xisheng Xu, Xiaoming Liu, Tao Yang, Thomas Stevens, Anna Bird, Zhiwei Xu, Tian Zhang, Fang Lei, Han Feng. Quantitative estimation of the contribution of dust sources to Chinese loess using detrital zircon U-Pb age patterns. Journal of Geophysical Research: Earth Surface, 2016, 121 (11): 2085–2099.

[24] Lin Zeng, Huayu Lu*, Shuangwen Yi, Yongxiang Li, Anqi Lv, Wenchao Zhang, Zhiwei Xu, Haifeng Wu, Han Feng, Mengchun Cui. New magnetostratigraphic and pedostratigraphic investigations of loess deposits in north-east China and their implications for regional environmental change during the Mid-Pleistocene climatic transition. Journal of Quaternary Science,2016, 31(1): 20-32.

[23] Mark R. Sweeney*, Huayu Lu, Mengchun Cui, Joseph A. Mason, Han Feng, Zhiwei Xu. Sand dunes as potential sources of dust in northern China. Science China Earth Sciences, 2016, 59(4): 760-769.

2015

[22] Zhiwei Xu*, Huayu Lu, Shuangwen Yi, Jef Vandenberghe, Joseph A. Mason, Yali Zhou, Xianyan Wang. Climate-driven changes to dune activity during the Last Glacial Maximum and deglaciation in the Mu Us dune field, north-central China. Earth and Planetary Science Letters, 2015, 427: 149-159. (Nature Index刊物)

[21] Zhiwei Xu, Joseph A. Mason*, Huayu Lu. Vegetated dune morphodynamics during recent stabilization of the Mu Us dune field, north-central China. Geomorphology,2015, 228: 486-503.

[20] Anna Bird, Thomas Stevens, Martin Rittner, Pieter Vermeesch, Andrew Carter, Sergio Andò, Eduardo Garzanti, Huayu Lu, Junsheng Nie, Lin Zeng, Hanzhi Zhang, Zhiwei Xu. Quaternary dust source variation across the Chinese Loess Plateau. Palaeogeography, Palaeoclimatology, Palaeoecology, 2015, 435: 254-264.

[19] Yingyong Chen, Huayu Lu*, Enlou Zhang, Hongyan Zhang, Zhiwei Xu, Shuangwen Yi, Shuang-Ye Wu. Test Organic Carbon Isotopic Composition of Surface Soils in Sandy Fields of Northern China as a Proxy Indicator of Past Precipitation Change. Quaternary International, 2015, 372: 79-86.

[18] Yingyong Chen, Huayu Lu*, Shuangwen Yi, Enlou Zhang, Zhiwei Xu, Kaifeng Yu, Joseph A. Mason. A preliminary quantitative reconstruction of precipitation in southern Mu Us sand field at the margin of the Asian monsoon-dominated region during the late Quaternary. Journal of Geographical Sciences, 2015, 25(3): 301-310.

[17] 崔梦淳, 鹿化煜*, Mark R. Sweeney, Joseph A. Mason, 冯晗, 徐志伟. 便携式粉尘观测仪测定腾格里沙漠和毛乌素沙地 PM10 释放通量. 科学通报, 2015, 60(17): 1621-1630.

2013

[16] 徐志伟, 鹿化煜*, 弋双文, 周亚利, Joseph A. Mason, 王晓勇, 陈英勇, 朱芳莹, 张瀚之, 翟秀敏. 末次盛冰期和全新世大暖期毛乌素沙地的空间变化. 第四纪研究, 2013, 33(2): 218-227.

[15] Huayu Lu*, Shuangwen Yi, Zhiwei Xu, Yali Zhou, Lin Zeng, Fangying Zhu, Han Feng, Lina Dong, Haixin Zhuo, Kaifeng Yu, Joseph A. Mason, Xiaoyong Wang, Yingyong Chen, Qi Lu, Bo Wu, Zhibao Dong, Jian Qu, Xunming Wang, Zhengtang Guo. Chinese deserts and sand fields in Last Glacial Maximum and Holocene Optimum. Chinese Science Bulletin, 2013, 58(23): 2775-2783. (鹿化煜, 弋双文, 徐志伟, 周亚利, 曾琳, 朱芳莹, 冯晗, 东丽娜, 卓海昕, 俞凯峰, Joseph A. Mason, 王晓勇, 陈英勇, 卢琦, 吴波, 董治宝, 屈建军, 王训明, 郭正堂. 末次盛冰期和全新世大暖期中国沙漠沙地的空间格局. 科学通报, 2013, doi: 10.1007/s11434-013-5919-7.)

[14] Huayu Lu*, Shuangwen Yi, Zhengyu Liu, Joseph A. Mason, Dabang Jiang, Jun Cheng, Thomas Stevens, Zhiwei Xu, Enlou Zhang, Liya Jin, Zhaohui Zhang, Zhengtang Guo, Yi Wang, Bette Otto-Bliesner. Variation of East Asian monsoon precipitation during the past 21 k.y. and potential CO2 forcing. Geology, 2013, 41(9), 1023-102. (Nature Index刊物)

[13] 弋双文, 鹿化煜, 曾琳, 徐志伟. 末次盛冰期以来科尔沁沙地古气候变化及其边界重建. 第四纪研究, 2013, 33 (2): 206-217.

[12] 张瀚之, 鹿化煜, 弋双文, 徐志伟, 周亚利, 谭红兵. 中国北方沙漠/沙地锆石形态特征及其对物源的指示. 第四纪研究, 2013, 33(2): 334-344.

[11] 鹿化煜, 杜子图, 苏志珠, 赵存法, 徐志伟. 地质背景和晚新生代形成演化//库姆塔格沙漠研究[M]. 北京: 科学出版社. 2013.

[10] 朱芳莹, 鹿化煜, 张文超, 陈英勇, 曾琳, 徐志伟, 张瀚之, 东丽娜. 中国北方沙漠(沙地)地理底图绘制与地表动态过程分析--基于3S技术的新结果. 第四纪研究, 2013, 33(2): 197-205.

[9] 东丽娜, 鹿化煜, 王晓勇, 弋双文, 王先彦, 赵存法, 徐志伟, 曾琳, 朱芳莹. 末次盛冰期和全新世大暖期新疆地区沙漠边界移动初探. 第四纪研究, 2013, 33(2): 398-400.

[8] 陈英勇, 鹿化煜, 张恩楼, 周亚利, 王晓勇, 韩志勇, 徐志伟. 浑善达克沙地地表沉积物有机碳同位素组成与植被-气候的关系. 第四纪研究, 2013, 33 (2): 351-359.

2011

[7] Zhiwei Xu, Huayu Lu*, Cunfa Zhao, Xianyan Wang, Zhizhu Su, Zhenting Wang, Hongyi Liu, Lixin Wang, Qi Lu. Composition, origin and weathering process of surface sediment in Kumtagh Desert, Northwest China. Journal of Geographical Sciences, 2011, 21(6): 1062-1076.

[6] 曾琳, 鹿化煜, 弋双文, 徐志伟, 邱志敏, 杨振宇, 李永祥. 我国东北地区黄土堆积的磁性地层年代与古气候变化. 科学通报, 2011, 56(27): 2267–2275.

2010

[5] 徐志伟, 鹿化煜*, 赵存法, 王先彦, 苏志珠, 王振亭, 刘宏宜, 王立新, 卢琦. 库姆塔格沙漠地表物质组成、来源和风化过程. 地理学报, 2010, 65(1): 53-64.

[4] 徐志伟, 汪亚平*, 李炎, 马菲, 张凡, 叶长江. 多元统计及物源分析支持的北部湾东部海域沉积物输运趋势. 海洋学报, 2010, 32(3): 67-78.

[3] Zhiwei Xu. Wet-dry climatic variations in dune fields of north China and its driving mechanism. College Natural Sciences, 2010, 2: 67. (南京大学学生自创期刊)

[2] Ma Fei, Wang Yaping, Li Yan, Ye Changjiang, Xu Zhiwei, Zhang Fan. The application of geostatistics in grain size trend analysis: A case study of eastern Beibu Gulf. Journal of Geographical Science, 2010, 20(1): 77-90.

2008

[1] 马菲, 汪亚平, 李炎, 叶长江, 徐志伟, 张凡. 地统计法支持的北部湾东部海域沉积物粒径趋势分析. 地理学报, 2008, 63(11): 1207-1217.

THE END
0.李峁潼等沙漠沙丘通常被认为具有均匀的矿物组成,因为沙子在横向移动过程中广泛混合,这使得沙漠物源研究复杂化。中国北方毛乌素沙地靠近东亚夏季风降水边界,气候比大多数沙漠湿润。气候变暖导致的湿润以及中国政府实施的防沙治沙工程减少了该区域沙丘的横向移动,为研究沙子产生和运输的地表过程提供了机会。先前使用锆石U–Pb年代学和jvzquC41gcxuj7q|w0kew7hp1eumat~ei1814>5;1:<8F9:599755L72E2>45OGC65716JI490nuo
1.巴丹吉林沙漠物源——地球化学和地貌学证据学位沙漠地貌学物质来源粉尘来源地球化学特征 授予学位: 博士 学科专业: 第四纪地质学 导师姓名: 杨小平 学位年度: 2016 语种: 中文 分类号: P931.3(部门自然地理学) 参考文献 (112) 仅看全文 排序: 发表时间 被引频次 查看引文网络 [1]张瀚之,鹿化煜,弋双文,等.中国北方沙漠/沙地锆石形态特征及其对物源的指示[JjvzquC41f0}bpofpifguc7hqo0io1}mguky0[<845;;8
2.南京大学地理与海洋科学学院导师教师师资介绍简介张瀚之张瀚之, 鹿化煜*, 弋双文, 徐志伟, 周亚利, 谭红兵, 中国北方沙漠/沙地锆石形态特征及其对物源的指示, 第四纪研究, 2013, 33 (02): 334-344 鹿化煜,张瀚之,王逸超, 赵琳, 王翰林, 孙文峰, 张红艳.渭河盆地新生代沉积序列与亚洲季风气候起源演化,第四纪研究,2018, 38(5): 1057 jvzq<84uejupn7ktggqbq‚fp0eun1sx1pl{0fjtujk532;612432886835:83:=635:84@>0ujznn
3.李峁潼等研究结果表明,钻孔岩芯样品的数据范围与黄河上游青藏高原东北缘的沉积物特征一致,证实了在不受人类活动影响的时期,黄河从青藏高原搬运来的物质大部分没有到达中游,反而沉积在银川—河套地区并被冬季风搬运到了黄土高原和毛乌素沙漠西部。该研究进一步凸显了风成-河流相互作用在中国北方干旱区地貌塑造中的关键作用。这一jvzquC41gcxuj7q|w0kew7hp1eumat~ei1814>571CHE7L5:D2H2DO;FCE9BGO8:;G:1H@6370nuo
4.浑善达克沙地沉积物粒度特征及其指示意义沙漠/沙地中沉积物的粒度是物源及各种地表过程长期作用的结果。研究沉积物粒度特征对认识沙漠/沙地形成演变和防沙治沙具有重要意义。本文对浑善达克沙地不同类型沉积物进行了详细采样,对其进行粒度和端元分析。结果表明,浑善达克沙地风成沙受风力分选作用影响,平均粒径和分选系数沿盛行风向存在显著变化趋势。偏度和峰度的jvzquC41yy}/inti0eun0ls1EP5bd|ytcez0ckxvtciu7=:;60yivvq
5.统一检索科尔沁沙地 ; 地球化学 ; 重矿物 ; sr-nd同位素 ; 锆石u-pb测年 ; 物源 摘要 : 科尔沁沙地是中国北方面积最大的半固定沙地,追踪其物质来源对认识沙地/沙漠的形成演化和重建碎屑物质的迁移路径至关重要.为此,本研究对科尔沁沙地风成沙的细颗粒组分(<63μm和<11μm)进行了岩石学分析,元素地球化学分析,sr-ndjvzquC41nkh/mvrw0gjv0ls1ctzjeujugcxdj8|gdayfc{hjkpmEg}fknAoe?;5534>34;:59:
6.统一检索全部 图书 期刊论文 学位论文 会议论文 专利 站内检索 芸台购 opac 高级检索 收藏 引用 分享 评论 期刊文献 中国北方沙漠河岸沙丘地球化学特征及其物源指示意义 geochemical features and their implication of provenances of riparian dunes in the northern china deserts 语种 : 英语 作者 : 李小妹 ; 刘小糠 ;jvzquC41vum/|snre0io1jwvkerfunftej5xgkdugcxdjrsiFgzbkuDkf?815:755:=47<6
7.河海大学地球科学与工程学院导师教师师资介绍简介29) 谭红兵,孔娜,张文杰,苏治国. 盐类矿物结晶水H和O 同位素研究的科学意义与测定方法. 河海大学学报( 自然科学版),2013,41(4):307-314. (IF:0.635) 30) 张瀚之,鹿化煜,弋双文,徐志伟,周亚利,谭红兵.中国北方沙漠/沙地锆石形态特征及其对物源的指示.第四纪研究,2013,33(2):334-344. 31) Jiansheng Chejvzq<84uejupn7ktggqbq‚fp0eun1sx1jj{0fjtujk532;612433286835>35?>735;8;A60ujznn
8.海洋地质与第四纪地质2025年45卷4期结合流域构造、火山岩与沉积地层信息,本文认为研究区碎屑锆石年龄的空间分布特征与中生代以来太平洋板块向欧亚板块俯冲引发的中国东部大规模构造、岩浆活动相关。此外,锆石等效球径与形态学研究发现研究区河流的锆石粒度大小与年龄无显著相关性,指示了是物源而非水动力分选对锆石年龄谱有显著影响。然而,锆石磨圆度与锆石jvzq<84lj{j{0lto0et0ew4ctvodnn4ewtxfp}
9.青藏高原东部黄土地球化学元素与碎屑锆石物源指示意义青藏高原东部黄土地球化学元素与碎屑锆石物源指示意义,青藏高原,黄土,地球化学元素分析,锆石U–Pb年龄,物源,在当今全球变暖的气候背景下,青藏高原作为对全球气候响应最为敏感的地区之一,理解其地表过程和生态系统演化,对于适应和减轻未来气jvzquC41ycv/ewpk0pku1}twej5xgk4Fkuyft}fvkqt0C{ykenk0397482<38:3pj0nuou
10.青海昆仑河地区早侏罗世花岗岩中锆石微量元素地球化学特征及其青海昆仑河地区早侏罗世花岗岩中锆石微量元素地球化学特征及其地质意义,锆石,微量元素,早侏罗世花岗岩,昆仑河,东昆仑,东昆仑造山带出露大量与古特提斯洋有关的花岗岩,是研究古特提斯洋演化的关键区域之一。锆石作为花岗岩中具有稳定的物理化学性质的jvzquC41ycv/ewpk0pku1}twej5xgk4Lqwxocu4Ctvodnn4MY[Y32;:242660qyon
11.科学网—中国北方风成沉积物物质来源研究获进展中国北方沙漠、黄土、红粘土是记录古环境信息的良好载体。以往的研究主要侧重于古气候重建,而对物源研究则相对较少,且多偏重于地球化学方法。中国北方风成沉积物的物质来源问题,一直是学术界争议的难题。这些争议主要集中于:不同沙漠的物质来源是否一致?中国北方戈壁、沙漠是否是黄土的主要物源区?从第三纪红粘土到第四jvzquC41pg}t0|hkgpifpny0ep5ivvqrcrks1;533;>26;645262;;980unuo
12.柴达木盆地北缘侏罗系碎屑锆石U30宋鹰;钱禛钰;张俊霞;Stepashko Andrei;碎屑锆石形态学分类体系及其在物源分析中的应用:以松辽盆地松科一井为例[J];地球科学;2018年06期 中国重要会议论文全文数据库前30条 1张晨雨;肖安成;吴磊;南祁连山-柴达木盆地北缘侏罗系碎屑锆石U-Pb年龄特征:对新生代物源和高原扩展的启示[A];2018年中国地球科学联合学术jvzquC41erle0lsmk0ipo7hp1Cxuklqg1EVGF]TVCN3[IM\423>2295:22>/j}r
13.西秦岭三叠纪大河坝组砂岩构造背景与物质来源笔者基于大河坝组层序特征、砂岩主微量元素成分和碎屑锆石U-Pb年龄基础上,探索其物质来源特征和构造背景指示意义。大河坝组主体为砂板岩复理石建造,包括长石砂岩、岩屑长石砂岩、含砾岩屑长石砂岩等。其中,砂岩具有中等SiO2(64.11%~68.27%,平均为65.45%),较高Al2O3(13.61%~15.19%,平均为14.51%),较低Fe2O3(jvzquC41yy}/zki|0pku0ls1ep5bt}neng5eqr4320736961l0txi77246647