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Frontiers of Earth Science

ISSN 2095-0195

ISSN 2095-0209(Online)

CN 11-5982/P

Postal Subscription Code 80-963

2018 Impact Factor: 1.205

Front. Earth Sci.    0, Vol. Issue () : 302-313    https://doi.org/10.1007/s11707-008-0018-9
Timing of the Yangtze initiation draining the Tibetan Plateau throughout to the East China Sea: a review
FAN Daidu1, LI Congxian2
1.State Key Laboratory of Marine Geology, Tongji University; Key Laboratory of Yangtze River Water Environment, Ministry of Education; 2.State Key Laboratory of Marine Geology, Tongji University;
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Abstract The question of the Yangtze’s origins has been extensively researched by geologists and geomorphologists for more than a century, and a widely-accepted answer is still pending. Evidence of river piracy, diversion and incision in the upper river segment from Shigu town in Yunnan Province to Yichang City has been used to reconstruct the history of the Yangtze drainage system, and constrain the timing of the upper Yangtze diversion from south flowing to east, debouching into the East China Sea. There is much diversity in fluvial deposits and landforms even over small spatio-temporal scales in tectonic highly active regions. They are also liable to latter reworking by external forces, making their paleo-geographical interpretation a more complex and controversial matter. Based on evidence from fluvial strata and landforms, various hypotheses have been proposed with considerable discrepancies for the timing of the Jinsha River diversion from the south flowing into the east, and the timing of the upper Yangtze channeling through the Three Gorges area. The Yangtze was controversially assumed to be: (1) a very old river in existence since the Cretaceous and earlier, (2) a very young river that came into being only during the past several hundred thousand years, or (3) any age in between these two extremes.Techniques in microprobe dating of single crystalline grains have greatly improved, and they have been widely and successfully used in provenance studies, drainage evolution reconstruction, and tectonic history restoration through dating detrital zircon/monazite grains from the onshore/offshore deposits. The timing of the Yangtze formation was estimated at ca. 2.58 Ma based on analyses of time-series variation of EMP (electron microprobe) monazite ages in the late Cenozoic strata of the Yangtze delta. By revisiting fluvial deposits and landforms in the upper Yangtze drainage basin, some references also state the initiation time of the Yangtze at between the late Pliocene and early Pleistocene. This indicates that microprobe dating of single detrital mineral grains is an effective tool to study sedimentary provenance and reconstruct the evolution history of large rivers, like the Yangtze. Laser ablation-ICPMS, a newly-developed microprobe dating technique characterized by minimal sample preparation, low cost and high throughput, and high precision, makes it possible to date large volumes of single detrital mineral grains for provenance studies. Its application is expected to increase the precision of the timing of the Yangtze formation.
Issue Date: 05 September 2008
 Cite this article:   
FAN Daidu,LI Congxian. Timing of the Yangtze initiation draining the Tibetan Plateau throughout to the East China Sea: a review[J]. Front. Earth Sci., 0, (): 302-313.
 URL:  
https://academic.hep.com.cn/fesci/EN/10.1007/s11707-008-0018-9
https://academic.hep.com.cn/fesci/EN/Y0/V/I/302
1 Barbour G B (1936). Physiographic history of the Yangtze. Geographical Journal, 87: 17–34.
doi:10.2307/1786198
2 Brookfiled M E (1998). The evolution of the great river systems of southernAsia during the Cenozoic India-Asia collision: rivers draining southwards. Geomorphology, 22: 285–312.
doi:10.1016/S0169‐555X(97)00082‐2
3 Chen P J (1995). Coastal mountains of southeast China, volcanism anddesert climate during the Upper Cretaceous. In: :Sun A,Wang Y, eds.Sixth Symposium on Mesozoic Terrestrial Ecosystems and Biota. Beijing: China Ocean Press, 189–191
4 Clark M K, Schoenbohm L M, Royden L H, et al. (2004). Surface uplift, tectonics,and erosion of eastern Tibet from large-scale drainage patterns. Tectonics, 23: TC1006.
doi: 10.1029/2002TC001402
5 Fan D D, Li C X, Yokoyama K, et al. (2005). Monazite age spectra inthe Late Cenozoic strata of the Changjiang delta and its implicationon the Changjiang run-through time. Sciencein China Series D Earth Sciences, 48: 1718–1727.
doi:10.1360/01YD0447
6 Gao S, Qiu Y M, Ling W L, et al. (2001). SHRIMP single zircon U-Pbdating of the Kongling high-grade metamorphic terrain: evidence for >3.2 Ga old continental crust in the Yangtze craton.Science in China (Series D), 44(4): 326–335.
doi:10.1007/BF02907103
7 Hanchar J M, Hoskin P W O (2003). Reviews in Mineralogy and Geochemistry. Zircon. 53: 1–500.
doi:10.2113/0530089
8 He H S, He K Z, Zhu X M, et al. (1989). A discussion on the problemof river-capturing of the Jinsha River in northwest Yunnan. Geoscience(Journal of Graduate School, China Universityof Geoscience), 3(3): 319–330 (in Chinese)
9 He H S, He K Z, Zhu X M, et al. (1991). A Study on the genesis ofShaxi-Hongwen valley in nothwest Yannan – an once more discussionon the capture problem of the Jinsha River. Geoscience (Journal of Graduate School, China University of Geoscience), 5(3): 280–289 (in Chinese)
10 Košler J, Fonneland H, Sylvester P, et al. (2002). U-Pb dating of detritalzircons for sediment provenance studies-a comparison of laser ablationICPMS and SIMS techniques. Chemical Geology, 182: 605–618.
doi:10.1016/S0009‐2541(01)00341‐2
11 Lee C (1933). The development of the upper Yangtze valley. Bulletin of the Geological Society of China, 13: 107–117
12 Lee J S, Chao Y T (1924). Geologyof the gorge district of the Yangtze (from Ichang to Tzekuei) withspecial reference to the development of the gorges. Bulletin of the Geological Society of China, 3(3–4): 361–391
13 Li C S (1944). History of the Yangtze River. Journal of Geography, 4: 3–14 (in Chinese)
14 Li C S (1956). History of the Yangtze River. Yangtze River, (12): 3–6 (in Chinese)
15 Li J J, Xie S Y, Kuang M S (2001). Geomorphic evolution of the YangtzeGorges and the time of their formation. Geomorphology, 41: 125–135.
doi:10.1016/S0169‐555X(01)00110‐6
16 Li X H, Liang X R, Sun M, et al. (2001). Precise 206Pb/238U age determinationon zircons by laser ablation microprobe-inductively coupled plasma-massspectrometry using continuous linear ablation. Chemical Geology, 175: 209–219.
doi:10.1016/S0009‐2541(00)00394‐6
17 Li Y J, Ding M Y (1996). A studyof morphotectonics on the Three Gorges region of the Yangtze River. International Journal Hydroelectric Energy, 14(1): 52–55 (in Chinese)
18 Liang X R, Li X H, Liu Y K, et al. (2000). U-Pb isotopic dating ofyoung zircons by laser ablation microprobe-inductively coupled plasmamass spectrometry (LAM-ICPMS). Geochimica, 29(1): 1–5 (in Chinese)
19 Liu X F, He Y B, Zhang H D (1999). Palaeotectonic reconstruction usingbackstripping analysis–example from the border areas of Sichuan,Hubei and Hunaan Provinces. Journal ofPalaeogeography, 1(2): 53–61 (in Chinese)
20 Liu X S (1983). The Quaternary System of Sichuan. Chengdu: Sichuan Science and TechnologyPress, 156 (inChinese)
21 Ma L F (2002). Atlas of China Geology. Beijing: Geologic Press, 348 (in Chinese)
22 Ren M E (1957). Survey of Yangtze Gorges. Geographical Knowledge, 8(3): 110–114 (in Chinese)
23 Ren M E, Bao H S, Han T C (1959). Geomorphology of the Jinsha Rivervalley and its river capture in northwestern Yunnan. Acta Geographica Sinica, 25(2): 135–155 (in Chinese)
24 Shen Y C (1965). The Valley Landform of the Upper Yangtze. Beijing: Science Press, 183 (in Chinese)
25 Shen Y C, Yang Y C (1963). New researchon the problem of river capture of Ching-Sha-Chiang (the upper Yangtze),western Yunnan, China. Acta GeographicaSinica, 29(2): 87–108 (in Chinese)
26 Tang G Z, Tao M (1997). Discussionon relationship between the middle Pleistocene glaciation and formationof the Yangtze Gorges. Geology and MineralResources of South China, (4): 9–18 (in Chinese)
27 Tian L J, Li P Z, Luo Y (1996). Developmental History of YangtzeGorges. Chengdu: Southwest Communications University Press, 254 (in Chinese)
28 Wang H Z (1985). Altas of the Palaeogeography of China. Beijing: Cartographic PublishingHouse, 1–85 (in Chinese), 1–28 (in English)
29 Wang P X (2005). Cenozoic deformation and history of sea-land interactionsin Asia. Earth Science-Journal of ChinaUniversity of Geosciences, 30(1): 1–18 (in Chinese)
30 Wills B, Blackwelder E, Sargent R H, et al. (1907). Research in China, Vol 1. Washington: Carnegie Institution of Washington, 353
31 Xia J W, Li C A (2005). Discussionon coupling relation of new tectonic movement and landslide in theThree Gorges reservoir area. Yangtze River, 36(3): 16–19 (in Chinese)
32 Xiang F, Zhu L D, Wang C S, et al. (2005). Terrace age correlationand its significance in research of Yangtze Three Gorges, China. Journal of Chengdu University of Technology (Scienceand Technology Edition), 32(2): 162–166 (in Chinese)
33 Xie G Q, Hu R Z, Jiang G H, et al. (2001). Evaluation of the Genesisof zircons and U-Pb isotopic dating. Geology-Geochemistry, 29(4): 64–70 (in Chinese)
34 Xie M (1991). Water level change amplitude-a key factor influencingterrace differentiation and neotectonic analysis. Acta Geographica Sinica, 46(3): 353–359 (in Chinese)
35 Xiong C Y, Wei C S, Jin G F, et al. (2004). Pre-Sinian paleostructruralframework and major geological events in the Huangling anticline,western Hubei. Journal of Geomechanics, 10(2): 97–112 (in Chinese)
36 Xu Z L, Li X J (1982). Discussionon the genesis of the Hongwen-Diannan valley and the piracy of theJinsha River in northwestern Yunnan. ActaGeographica Sinica, 37(3): 325–333 (in Chinese)
37 Yang D Y (2004). Study on the Changjiang River. Nanjing: Hohai University Press, 214 (in Chinese)
38 Yang S N, Li J F, Wei B Z, et al. (1996). New study of formation andevolution for the structures in the Dam area of the Yangtze ThreeGorge. Geological Science and TechnologyInformation, 15(4): 73–80 (in Chinese)
39 YBGMR (Yunnan Bureauof Geology and Mineral Resources). (1990). RegionalGeology of Yunnan Province. Beijing: Geological Press, 728 (in Chinese)
40 Ye L F, Xie J R (1925). Structuralgeology and geological history of the Yangtze eastward from Wushan. Geological Report, (7): 69–70 (in Chinese)
41 Yuan F L (1957). A complementary study of evolution history of the YangtzeRiver. Yangtze River, (2): 1–9 (in Chinese)
42 Yuan H L, Wu F Y, Gao S, et al. (2003). Determination of U-Pb ageand rare earth element concentrations of zircons from Cenozoic intrusionsin northeastern China by laser ablation ICP-MS. Chinese Science Bulletin, 48(22): 2411–2421
43 Zeng P S (2002). Relationship between the formation of the First Bendof Changjiang River and the magmatic activity in Laojunshan district. Acta Geographica Sinica, 57(3): 310–316 (in Chinese)
44 Zhang L P, Yang D Y, Zhu D K (2004). Denudation rates of crystalline rockin the Huangling anticline of the Three Gorges of the Yangtze Riverin China since the Eocene. Science in China(Series D), 46(9): 928–940.
doi:10.1360/02yd0467
45 Zhang S, Zhu C, Yu S Y, et al. (2002). Discovery of the Nanshataobinary structure and its study significance. Scientia Geographica Sinica, 22(1): 63–66 (in Chinese)
46 Zhang Y C (1995). Formation of the Yangtze Gorges and its significance. Journal of Northwest Normal University (NaturalScience), 31(2): 52–56 (in Chinese)
47 Zhao C (1996). River capture and origin of the Yangtze Gorges. Journal Changchun University of Earth Sciences, 26(4): 428–433 (in Chinese)
48 Zhao C (1998). Refluent tributaries and wind gaps on the Three Gorgesand its upper reaches of the Yangtze River. The Chinese Journal of Geological Hazard and Control, 9(3): 7–14 (in Chinese)
49 Zhao C, Wang S M (2000). New recognitionof river captures in Three Gorges and its upper reaches. Journal of University of Hydr and Elec Eng/Yichang, 22(3): 196–199 (in Chinese)
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