[1]高文婷,王 斌,彭 俊,等.腾格里沙漠南缘风积物粒度空间分布及物源指示[J].水土保持研究,2022,29(06):129-137.
 GAO Wenting,WANG Bin,PENG Jun,et al.Spatial Bistribution of Granularity Parameter and Provenance Indication of Aeolian Deposits on the Southern Margin of the Tengger Desert[J].Research of Soil and Water Conservation,2022,29(06):129-137.
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腾格里沙漠南缘风积物粒度空间分布及物源指示

参考文献/References:

[1] 肖洪浪,张继贤,李金贵.腾格里沙漠东南缘降尘粒度特征和沉积速率[J].中国沙漠,1997,17(2):127-132.
[2] 赵万苍,刘连文,陈骏,等.中国沙漠元素地球化学区域特征及其对黄土物源的指示意义[J].中国科学,2019,49(9):1425-1438.
[3] 钱广强,董治宝,罗万银,等.巴丹吉林沙漠地表沉积物粒度特征及区域差异[J].中国沙漠,2011,31(6):10-17.
[4] 庞红丽,程捷,丛殿阁,等.腾格里沙漠北缘沙丘粒度特征及区域差异分析[J].宁夏大学学报:自然科学版,2015,36(3):267-273.
[5] 曲政.沉积物粒度数据表征方法的研究[J].中国粉体技术,2001,7(4):24-31.
[6] 陈渭南.塔克拉玛干沙漠84°E沿线砂物质的粒度特征[J].地理学报,1993,48(1):33-46.
[7] 安福元,马海州,樊启顺,等.粒度在沉积物物源判别中的运用[J].盐湖研究,2012,20(1):49-56.
[8] 李琼,潘保田,高红山,等.腾格里沙漠南缘末次冰盛期以来沙漠演化与气候变化[J].中国沙漠,2006,26(6):875-879.
[9] Fan Y, Li Z, Wang F, et al. Provenance variations of the Tengger Desert since 2.35 Ma and its linkage with the Northern Tibetan Plateau:Evidence from U-Pb age spectra of detrital zircons[J]. Qu Aternary Science Reviews, 2019,223.DOI:10.1016/j.quascirev.2019.105916.
[10] Qiang M, Chen F, Wang Z, et al. Aeolian deposits at the southeastern margin of the Tengger Desert(China): Implications for surface wind strength in the Asian dust source area over the past 20,000 years[J]. Palaeogeography Palaeo-Climatology Palaeoecology, 2010,286(1):66-80.
[11] 张正偲,董治宝,钱广强,等.腾格里沙漠西部和西南部风能环境与风沙地貌[J].中国沙漠,2012,32(6):1528-1533.
[12] Li G, Pettke T, Chen J. Increasing Nd isotopic ratio of Asian dust indicates progressive uplift of the north Tibetan Plateau since the middle Miocene[J]. Geology, 2011,39(3):199-202.
[13] 李志忠,凌智永,陈秀玲,等.新疆伊犁河谷晚全新世风砂沉积粒度旋回与气候变化[J].地理科学,2010,30(4):613-619.
[14] Paterson G, Heslop D. New methods for unmixing sediment grain size data [J]. Geochemistry, Geophysics, Geosystems, 2015,16(12):4494-4506.
[15] 张登山,田丽慧,鲁瑞洁,等.青海湖湖东砂地风砂沉积物的粒度特征[J].干旱区地理,2013,36(2):203-211.
[16] Paterson G A, Heslop D. New methods for unmixing sediment grain size data [J]. Geochemistry Geophysics Geosystems, 2015,16(12):4494-4506.
[17] 王立强,王亲.河西走廊及其毗邻地区地表物沉积元素特征[J].西北地质,2013,46(2):69-80.
[18] 李小妹,严平,吴伟,等.毛布拉格孔兑地表风砂沉积物粒度与地球化学元素分布特征[J].干旱区地理,2016,39(3):468-476.
[19] 李恩菊.巴丹吉林沙漠与腾格里沙漠沉积物特征的对比研究[D].西安:陕西师范大学,2011.
[20] 张虎才,李吉均.腾格里沙漠南缘武威黄土沉积元素地球化学特征[J].沉积学报,1997,15(4):153-158.
[21] Li Z, Wang F, Wang X, et al. A multi-proxy climatic record from the central Tengger Desert, southern Mongolian Plateau: Implications for the aridification of inner Asia since the late Pliocene[J]. Journal of Asian Earth Sciences, 2018,160:27-37.
[22] Jiang H, Ding Z. Eolian grain-size signature of the Sikouzi lacus-trine sediments(Chinese Loess Plateau):implications for Neo-gene evolution of the East-Asian winter monsoon[J]. Geological Society of America Bulletin, 2010,122(5/6):843-854.
[23] Dietze E, Maussion F, Ahlborn M, et al. Sediment transport processes across the Tibetan Plateau inferred from robust grain-size end members in lake sediments[J]. Climate of the Past, 2014,10(1):91-106.
[24] 牟雪松,马俊,王永达,等.粒度分布的端元建模分析及检验:以“吉兰泰—河套”盆地西部DK-12钻孔晚第四纪沉积物为例[J].古地理学报,2018,20(3):489-500.
[25] Sun D H, Bloemendal J, Rea D K, et al. Grain-size distribution function of polymodal sedimentsin hydraulic and aeolian environments and numerical partitioning of the sedimentary components[J]. Sedimentary Geology, 2002,152(3):263-277.
[26] Yang J, Li G, Rao W, et al. Isotopic evidences for provenance of East Asian Dust[J]. Atmospheric Environment, 2009,43(29):4481-4490.
[27] Li G, Pettke T, Chen J. Increasing Nd isotopic ratio of Asian dust indicates progressive uplift of the north Tibetan Plateau since the middle Miocene[J]. Geology, 2011,39(3):199-202.
[28] Jerolmack D, Reitz M, Martin R. Sorting out Abrasion in a gyp-sum Dune Field[J]. Journal of Geophysical Research, 2011,116(2):1-15.
[29] Kuenen P H. Experimental abrasion 4: eolian action[J]. the Journal of Geology, 1960,68(4):427-449.

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备注/Memo

收稿日期:2021-08-19 修回日期:2021-09-09
资助项目:国家自然科学基金(42072208); 陕西省自然科学基础研究计划面上项目(2018JM4027); 中央高校基本科研业务费(GK201803056)
第一作者:高文婷(1997—),女,河南周口人,硕士研究生,研究方向为地表过程与全球变化。E-mail:191984@snnu.edu.cn
通信作者:王斌(1984—),男,陕西商洛人,博士,副教授,主要从事地貌学研究。E-mail:bin.wang@snnu.edu.cn

更新日期/Last Update: 2022-10-20