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Xiao, Jingyun, Song, Yougui, Ning, Qiangqiang, Sun, Huanyu, Li, Yue, Yu, Shiyong, Liu, Huifang (2025) Stepwise evolution of the Weihe Basin since the late Pliocene and implications for Yellow River development. Palaeogeography, Palaeoclimatology, Palaeoecology, 661. doi:10.1016/j.palaeo.2025.112721

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Reference TypeJournal (article/letter/editorial)
TitleStepwise evolution of the Weihe Basin since the late Pliocene and implications for Yellow River development
JournalPalaeogeography, Palaeoclimatology, Palaeoecology
AuthorsXiao, JingyunAuthor
Song, YouguiAuthor
Ning, QiangqiangAuthor
Sun, HuanyuAuthor
Li, YueAuthor
Yu, ShiyongAuthor
Liu, HuifangAuthor
Year2025 (March)Volume661
PublisherElsevier BV
DOIdoi:10.1016/j.palaeo.2025.112721Search in ResearchGate
Generate Citation Formats
Mindat Ref. ID17857579Long-form Identifiermindat:1:5:17857579:3
GUID0
Full ReferenceXiao, Jingyun, Song, Yougui, Ning, Qiangqiang, Sun, Huanyu, Li, Yue, Yu, Shiyong, Liu, Huifang (2025) Stepwise evolution of the Weihe Basin since the late Pliocene and implications for Yellow River development. Palaeogeography, Palaeoclimatology, Palaeoecology, 661. doi:10.1016/j.palaeo.2025.112721
Plain TextXiao, Jingyun, Song, Yougui, Ning, Qiangqiang, Sun, Huanyu, Li, Yue, Yu, Shiyong, Liu, Huifang (2025) Stepwise evolution of the Weihe Basin since the late Pliocene and implications for Yellow River development. Palaeogeography, Palaeoclimatology, Palaeoecology, 661. doi:10.1016/j.palaeo.2025.112721
In(2025) Palaeogeography, Palaeoclimatology, Palaeoecology Vol. 661. Elsevier BV

References Listed

These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.

Not Yet Imported: - journal-article : 10.5194/sd-28-63-2020

If you would like this item imported into the Digital Library, please contact us quoting Journal ID
Chen (1999) J. Geomech. Tectonic climate response in the geomorphology of the Weihe river valley aroud Baoji, Shaanxi province 5, 49
Chen (2016) J. Geom. Sedimentation of the Pliocene Pleistocene Chaizhuang section in the central of Linfen basin, North China and its tectonic significance 22, 984
Feng (1999) Seismol. Geol. Another study on the time and process of quaternary crustal movement of the Chinese Continent 01, 83
Fu (2015)
Fu (2013) Earth Sci. Front. The terrace (T5 and T4) formation since the late Middle Pleistocene and its implication in the through cutting of the middle reach of Yellow River 20, 166
Han (2001) J. Seismol. Res. Geomorphological structure in the Weihe Basin and neotectonic movement 24, 251
Han (2002) J. Seismol. Res. The evolution of Weihe Down-faulted Basin and the movement of the fault blocks 25, 362
He (1984) Geol. Rev. The age of the “Sanmen Series” and the evolution of its depositional environment discussed in the light of the Dongpogou section in the Sanmen Gorge area 30, 161
He (2012) Bull. Soil Water Conserv. Temporal and spatial characteristics of temperature and precipitation in Weihe River Basin 32, 102
Hu (1993) Geol. Shaanxi On the magnetostratigraphy of the Songjia-Beigou section, Youhe, Weinan 2, 26
IDBMC (1984)
Jiang (2005) J. Geomech. The Age of the Yellow River Passing through the Sanmen Gorge 11, 293
Lei (2006) Mar. Geol. Quat. Geol. Models of loess stratigraphical structure on the terraces in the Loess Plateau of China 26, 113
Li (2017)
Li (1998) Chin. Sci. Bull. Study on Qinghai-Xizang Plateau uplift and environmental change 43, 1569
Li (1996) Sci. China Ser. D Earth Sci. Geomorphological and environmental evolution in the upper reaches of the Yellow River during the late Cenozoic 4, 380
Li (2001) Quat. Sci. Late Cenozoic intensive uplift of Qinghai-Xizang Plateau and its impacts on environments in surrounding area 21, 381
Li (2015) J. Paleogeogr. Sedimentary facies of the Cenozoic in Weihe Basin 17, 529
Li (2016) Stratigraphy Cenozoic stratigraphy and Paleoenvironments in the Weihe area, Shaanxi province 40, 168
Li (2023) J. Geophys. Res. Earth Provenance analysis of Yellow River terraces highlights causes of siltation and natural hazards in the North China Plain 128
Liang (2023) Geol. Soc. Am. Bull. How headward erosion breaches upstream paleolakes: insights from dated longitudinal fluvial terrace correlations within the Sanmen Gorge, Yellow River 135, 1602
Liu (1985)
Liu (2007)
Liu (2004) J. Earth Sci. Environ. Discussion on the Cenozoic and its chronology in the Weihe River basin 04, 1
Liu (2015) J. Fuzhou Univ. (Nat. Sci. Edn.) The Cenozoic tectonic and sedimentary framework and preliminary study on the hydrocarbon accumulation potential of the Weihe basin 43, 708
Liu (2006) J. Northwest Univ. Nat. Sci. Edn. Calculation on the paleosalinity of the ancient Sanmen Lake in the Weinan area of Weihe River Basin 36, 112
Liu (2020) Earth Sci. Sedimentary characteristics, provenance and tectonic significance of the Sanmen Formation in Weihe-Sanmenxia Basin 45, 2673
Lu (2018) Quat. Sci. Cenozoic depositional sequence in the Weihe Basin (central China): a long-term record of Asian monsoon precipitation from the greenhouse to icehouse earth 38, 1057
Not Yet Imported: The Innovation Geoscience - journal-article : 10.59717/j.xinn-geo.2023.100020

If you would like this item imported into the Digital Library, please contact us quoting Journal ID
Ogg (2020) Chapter 5 - Geomagnetic polarity time scale , 159
Not Yet Imported: Progress in Natural Science - journal-article : 10.1080/10020070512331343191

If you would like this item imported into the Digital Library, please contact us quoting Journal ID
Pan (2012) Quat. Sci. Time-slice of the fluvial evolution in the northern Jinshaan Gorge during Late Cenozoic 32, 111
Not Yet Imported: - journal-article : 10.1016/j.jseaes.2019.01.018

If you would like this item imported into the Digital Library, please contact us quoting Journal ID
Song (2021) Bull. Geol. Sci. Technol. Cenozoic stratigraphic correlation and the lower limit of Quaternary in Guanzhong Basin 40, 24
Tan (2017)
Wang (2005) Earth Sci. Cenozoic deformation and history of sea-land interactions in Asia 30, 1
Wang (1982) Geol. Rev. Discovery of the Cenozoic foraminifera in the Fen-Wei Basin and its significance 28, 93
Wang (1999) J. Geomech. A study on the age of Sanmen group in Sanmenxia area 5, 65
Wang (2004) Quat. Sci. The connotation and significance of Sanmen Formation 24, 116
Wang (2013) Adv. Earth Sci. The Cenozoic strata and depositional evolution of Weihe Basin: progresses and problems 28, 1126
Wei (2022) Quat. Sci. Discussion on Late Cenozoic stratigraphic features and earth surface processes in the middle reaches of the Yellow River and its adjacent regions 42, 823
Xing (2005) Earth Sci. Front. The formation of the Fenwei rift valley 12, 247
Yang (2013)
Yuan (1995) Quat. Sci. Uplift of the Qinghai-Xizang Plateau and the Yellow River physiographic period 04, 353
Yuan (2012) Quat. Sci. Control action on the geomorphic differentiation in Loess Plateau and the formation of Yellow River by Cenozoic tectogenesis 32, 829
Yue (1996) Acta Sediment. Sin. Depositional ralation between the loess, red clay and sedimtation of the lake basin in the Loess Plateau 14, 148
Yue (1997) Geol. Rev. The age of terrace development in the middle reaches of the Yellow River 43, 186
Zhang (1957) Chin. Sci. Bull. Development of the Yellow River 08, 231
Zhang (1998) Tectonophysics Extension in the graben systems around the Ordos (China), and its contribution to the extrusion tectonics of South China with respect to Gobi-Mongolia 285, 41
Zhang (2003) Seismol. Geol. Neotectonic activity of the southern marginal fault zone of the taihangshan mountains and its regional kinematic implications 25, 169
Zhang (2006) Geol. J. China Univ. Neotectonic evolution of the peripheral zones of the Ordos Basin and geodynamic setting 12, 285
Zhang (2018) Mount. Res. On the Chronology of the Yellow Rivers and the Yangtze Rivers 36, 661
Zhong (2022) J. Geophys. Res. Earth Spatial and temporal variations of incision rate of the middle Yellow River and its tributaries 127
Zhu (1989) Acta Geograph. Sin. The formation of river terraces and evolution of drainage system in the middle Yellow River 44, 429
Zhu (1994) Quat. Sci. Activations of neotectonics and draistic changes in climate 01, 56
Zijderveld (2013) , 254


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