[1] |
Jia J T, Zheng H B, Huang X T, et al. Detrital zircon U-Pb ages of Late Cenozoic sediments from the Yangtze delta: Implication for the evolution of the Yangtze River[J]. Chinese Science Bulletin, 2010, 55(15): 1520-1528. |
[2] |
Shao L, Li C A, Yuan S Y, et al. Neodymium isotopic variations of the Late Cenozoic sediments in the Jianghan Basin: Implications for sediment source and evolution of the Yangtze River[J]. Journal of Asian Earth Sciences, 2012, 45: 57-64. |
[3] |
Hu Z B, Pan B T, Bridgland D, et al. The linking of the upper-middle and lower reaches of the Yellow River as a result of fluvial entrenchment[J]. Quaternary Science Reviews, 2017, 166: 324-338. |
[4] |
Clark M K, Schoenbohm L M, Royden L H, et al. Surface uplift, tectonics, and erosion of eastern Tibet from large-scale drainage patterns[J]. Tectonics, 2004, 23(1): TC1006. |
[5] |
Richardson N J, Densmore A L, Seward D, et al. Did incision of the three gorges begin in the Eocene?[J]. Geology, 2010, 38(6): 551-554. |
[6] |
McPhillips D, Hoke G D, Jing L Z, et al. Dating the incision of the Yangtze River gorge at the first bend using three-nuclide burial ages[J]. Geophysical Research Letters, 2016, 43(1): 101-110. |
[7] |
Kong P, Jia J, Zheng Y. Time constraints for the Yellow River traversing the Sanmen Gorge[J]. Geochemistry, Geophysics, Geosystems, 2014, 15(2): 395-407. |
[8] |
Li B F, Sun D H, Xu W H, et al. Paleomagnetic chronology and paleoenvironmental records from drill cores from the Hetao Basin and their implications for the formation of the Hobq Desert and the Yellow River[J]. Quaternary Science Reviews, 2017, 156: 69-89. |
[9] |
Lin A M, Yang Z Y, Sun Z M, et al. How and when did the Yellow River develop its square bend?[J]. Geology, 2001, 29(10): 951-954. |
[10] |
裘善文,孙广友,李卫东,等. 三江平原松花江古水文网遗迹的发现[J]. 地理学报,1979,34(3):265-274.
Qiu Shanwen, Sun Guangyou, Li Weidong, et al. The discovery of the fossil hydrographic net of Songhua Jiang in the three-river plain[J]. Acta Geographica Sinica, 1979, 34(3): 265-274. |
[11] |
杨秉赓,孙肇春,吕金福. 松辽水系的变迁[J]. 地理研究,1983,2(1):48-56.
Yang Binggeng, Sun Zhaochun, Jinfu Lü. The changes of Songhua-Liao river system[J]. Geographical Research, 1983, 2(1): 48-56. |
[12] |
初本君,高振操,杨世生,等. 黑龙江省第四纪地质与环境[M]. 北京:海洋出版社,1988:1-146.
Chu Benjun, Gao Zhencao, Yang Shisheng, et al. Quaternary geology and environment of Heilongjiang province[M]. Beijing: Ocean Press, 1988: 1-146. |
[13] |
孙广友. 松辽平原中部第四纪地壳运动与平原发育:兼论松辽分水岭的形成[M]//裘善文. 中国东北平原第四纪自然环境形成与演化. 哈尔滨:哈尔滨地图出版社,1990:44-50.
Sun Guangyou. The Quaternary crustal movement and the plain development in the Central Songliao Plain, the formation of Songliao divide[M]//Qiu Shanwen. The formation and evolution of quaternary natural environment in North East China plain. Harbin: Harbin Map Press, 1990: 44-50.] |
[14] |
张庆云. 松辽分水岭的形成及其演化[M]//裘善文. 中国东北平原第四纪自然环境形成与演化. 哈尔滨:哈尔滨地图出版社,1990:30-33. [
Zhang Qingyun. The formation of Songliao divide[M]//Qiu Shanwen. The formation and evolution of Quaternary natural environment in North East China plain. Harbin: Harbin Map Press, 1990: 30-33. |
[15] |
Krishnaswami S, Trivedi J R, Sarin M M, et al. Strontium isotopes and rubidium in the Ganga-Brahmaputra river system: Weathering in the Himalaya, fluxes to the Bay of Bengal and contributions to the evolution of oceanic 87Sr/86Sr[J]. Earth and Planetary Science Letters, 1992, 109(1/2): 243-253. |
[16] |
Pande K, Sarin M M, Trivedi J R, et al. The Indus River system (India-Pakistan): Major-ion chemistry, uranium and strontium isotopes[J]. Chemical Geology, 1994, 116(3/4): 245-259. |
[17] |
Derry L A, France-Lanord C. Neogene Himalayan weathering history and river87Sr/86Sr: Impact on the marine Sr record[J]. Earth and Planetary Science Letters, 1996, 142(1/2): 59-74. |
[18] |
Quade J, Roe L, DeCelles P G, et al. The Late Neogene 87Sr/86Sr record of lowland Himalayan rivers[J]. Science, 1997, 276(5320): 1828-1831. |
[19] |
Goldstein S L, O’Nions R K, Hamilton P J. A Sm-Nd isotopic study of atmospheric dusts and particulates from major river systems[J]. Earth and Planetary Science Letters, 1984, 70(2): 221-236. |
[20] |
Goldstein S J, Jacobsen S B. Nd and Sr isotopic systematics of river water suspended material: Implications for crustal evolution[J]. Earth and Planetary Science Letters, 1988, 87(3): 249-265. |
[21] |
Grousset F E, Biscaye P E, Zindler A, et al. Neodymium isotopes as tracers in marine sediments and aerosols: North Atlantic[J]. Earth and Planetary Science Letters, 1988, 87(4): 367-378. |
[22] |
Revel M, Cremer M, Grousset F E, et al. Grain-size and Sr-Nd isotopes as tracer of paleo-bottom current strength, Northeast Atlantic Ocean[J]. Marine Geology, 1996, 131(3/4): 233-249. |
[23] |
Grousset F E, Biscaye P E. Tracing dust sources and transport patterns using Sr, Nd and Pb isotopes[J]. Chemical Geology, 2005, 222(3/4): 149-167. |
[24] |
叶启晓,吴金城,魏正一. 哈尔滨荒山近期的上升运动[J]. 地理科学,1984,4(4):383-388.
Ye Qixiao, Wu Jincheng, Wei Zhengyi. The tectonic uplift occured in Huang Shan in the last thousants of year[J]. Scientia Geographica Sinica, 1984, 4(4): 383-388. |
[25] |
朱景湖. 哈尔滨地区地貌和第四纪沉积及其在农业利用上的意义[J]. 哈尔滨师范学院学报(自然科学版),1963:188-205.
Zhu Jinghu. Geomorphology and quaternary sediments in Harbin area and their significance in agricultural utilization[J]. Natural Science Journal of Harbin Normal University, 1963: 188-205. |
[26] |
张序强. 哈尔滨荒山地区100万年来地理环境分析[J]. 哈尔滨师范大学自然科学学报,1995(3):96-97.
Zhang Xuqiang. The differentite on palaeoenvironment of Huang Shan area since 100 million years[J]. Natural Science Journal of Harbin Normal University, 1995(3): 96-97. |
[27] |
Újvári G, Varga A, Ramos F C, et al. Evaluating the use of clay mineralogy, Sr–Nd isotopes and zircon U–Pb ages in tracking dust provenance: An example from loess of the Carpathian Basin[J]. Chemical Geology, 2012, 304-305: 83-96. |
[28] |
Cande S C, Kent D V. Revised calibration of the geomagnetic polarity timescale for the Late Cretaceous and Cenozoic[J]. Journal of Geophysical Research, 1995, 100(B4): 6093-6095. |
[29] |
Gradstein F M, Ogg J G, Smith A G. A geologic time scale 2004[M]. Cambridge: Cambridge University Press, 2004: 1-589. |
[30] |
Laj C, Channell J E T. Geomagnetic excursions[M]//Kono M. Treatise on geophysics, geomagnetism. Amsterdam: Elsevier, 2007: 373-416. |
[31] |
Reading H G. Sedimentary environments: Processes, facies and stratigraphy[M]. 3rd ed. Oxford: Blackwell Science, 1996: 1-231. |
[32] |
Pan B T, Chen D B, Hu X F, et al. Drainage evolution of the Heihe River in western Hexi Corridor, China, derived from sedimentary and magnetostratigraphic results[J]. Quaternary Science Reviews, 2016, 150: 250-263. |
[33] |
杨晓强,李华梅. 泥河湾盆地典型剖面沉积物磁化率特征及其意义[J]. 海洋地质与第四纪地质,1999,19(1):75-84.
Yang Xiaoqiang, Li Huamei. The susceptibility characteristics of the typical sections of the Nihewan Basin and its implication[J]. Marine Geology & Quaternary Geology, 1999, 19(1): 75-84. |
[34] |
Awasthi N, Ray E, Paul D. Sr and Nd isotope compositions of alluvial sediments from the Ganga Basin and their use as potential proxies for source identification and apportionment[J]. Chemical Geology, 2018, 476: 327-339. |
[35] |
Li X H, Wei G J, Shao L, et al. Geochemical and Nd isotopic variations in sediments of the South China Sea: A response to Cenozoic tectonism in SE Asia[J]. Earth and Planetary Science Letters, 2003, 211(3/4): 207-220. |
[36] |
Clift P D, Lee J I, Hildebrand P, et al. Nd and Pb isotope variability in the Indus River system: Implications for sediment provenance and crustal heterogeneity in the western Himalaya[J]. Earth and Planetary Science Letters, 2002, 200(1/2): 91-106. |
[37] |
Weldeab S, Emeis K C, Hemleben C, et al. Provenance of lithogenic surface sediments and pathways of riverine suspended matter in the eastern Mediterranean Sea: Evidence from 143Nd/144Nd and 87Sr/86Sr ratios[J]. Chemical Geology, 2002, 186(1/2): 139-149. |
[38] |
刘祥,孙文丽. 西辽河水系变迁[J]. 内蒙古水利,2001(4):70-72.
Liu Xiang, Sun Wenli. Changes of Xiliao River system[J]. Inner Mongolia Water Resourcas, 2001(4): 70-72. |
[39] |
赵济. 中国自然地理[M]. 北京:高等教育出版社,1995:1-343.
Zhao Ji. Atlas of Chinese physical geography[M]. Beijing: Higher Education Press, 1995: 1-343. |
[40] |
裘善文,王锡魁,张淑芹,等. 松辽平原古大湖演变及其平原的形成[J]. 第四纪研究,2012,32(5):1011-1021.
Qiu Shanwen, Wang Xikui, Zhang Shuqin, et al. The evolution of the large paleolake in Songliao Plain and its formation[J]. Quaternary Sciences, 2012, 32(5): 1011-1021. |
[41] |
裘善文,夏玉梅,李凤华,等. 松辽平原第四纪中期古地理研究[J]. 科学通报,1984(3):172-174.
Qiu Shanwen, Xia Yumei, Li Fenghua, et al. Palaeogeography of the Songliao Plain in the Middle Quaternary[J]. Chinese Science Bulletin, 1984(3): 172-174. |
[42] |
裘善文,王锡魁,Makhinov A N,等. 中国东北平原及毗邻地区古水文网变迁研究综述[J]. 地理学报,2014,69(11):1604-1614.
Qiu Shanwen, Wang Xikui, Makhinov A N, et al. Summary of the paleodrainage pattern changes in the Northeast China Plain and its neighboring areas[J]. Acta Geographica Sinica, 2014, 69(11): 1604-1614. |
[43] |
斯米尔诺夫A M. 东北平原地形与水文网的发育[J]. 中国第四纪研究,1958,1(2):159-162.
Smirnov A M. The development of the landforms and drainage patterns in the North East China Plain[J]. Quaternaria Sinica, 1958, 1(2): 159-162. |
[44] |
孙肇春,钟金岳,胡俭彬,等. 东北河流阶地与河流劫夺[J]. 吉林师大学报,1964(2):135-152.
Sun Zhaochun, Zhong Jinyue, Hu Jianbin, et al. River terraces and river robberies in Northeast China[J]. Journal of Jilin Normal University, 1964(2): 135-152. |
[45] |
傅开道,方小敏,高军平,等. 青藏高原北部砾石粒径变化对气候和构造演化的响应[J]. 中国科学(D辑):地球科学,2006,36(8):733-742.
Fu Kaidao, Fang Xiaomin, Gao Junping, et al. Response of gravel size change to climate and tectonic evolution in the northern Qinghai-Tibet Plateau China[J]. Science China (Seri. D): Earth Sciences, 2006, 36(8): 733-742. |
[46] |
蔡观强,郭锋,刘显太,等. 碎屑沉积物地球化学:物源属性、构造环境和影响因素[J]. 地球与环境,2006,34(4):75-83.
Cai Guanqiang, Guo Feng, Liu Xiantai, et al. Clastic sediment geochemistry: Implications for provenance and tectonic setting and its influential factors[J]. Earth and Environment, 2006, 34(4): 75-83. |
[47] |
Strani F, DeMiguel D, Alba D M, et al. The effects of the “0.9 Ma event” on the Mediterranean ecosystems during the Early-Middle Pleistocene transition as revealed by dental wear patterns of fossil ungulates[J]. Quaternary Science Reviews, 2019, 210: 80-89. |
[48] |
王婷,孙有斌,刘星星. 中更新世气候转型:特征、机制和展望[J]. 科学通报,2017,62(33):3861-3872.
Wang Ting, Sun Youbin, Liu Xingxing. Mid-Pleistocene climate transition: Characteristic, mechanism and perspective[J]. Chinese Science Bulletin, 2017, 62(33): 3861-3872. |
[49] |
王海粟,党皓文,翦知湣. 中更新世转型时期南海北部上层水体结构演化特征:ODP1146站浮游有孔虫稳定同位素记录[J]. 第四纪研究,2019,39(2):316-327.
Wang Haisu, Dang Haowen, Jian Zhimin. Variations in the upper water structure of northern South China Sea during the Mid-Pleistocene climate transition period: Planktonic foraminifera oxygen isotope records of ODP site 1146[J]. Quaternary Sciences, 2019, 39(2): 316-327. |