[1] |
Oba T,Irino T.Sea level at the last glacial maximum,constrained by oxygen isotopic curves of planktonic foraminifera in the Japan Sea[J].Journal of Quaternary Science,2012,27(9):941-947.
Google Scholar
|
[2] |
Yokoyama Y,Kido Y,Tada R,et al.Japan Sea oxygen isotope stratigraphy and global sea-level changes for the last 50000 years recorded in sediment cores from the Oki Ridge[J].Palaeogeography,Palaeoclimatology,Palaeoecology, 2007,247(1):5-17.
Google Scholar
|
[3] |
Tada R.Paleoceanographic evolution of the Japan Sea[J]. Palaeogeography,Palaeoclimatology,Palaeoecology,1994, 108(3):487-508.
Google Scholar
|
[4] |
李志国.日本海自然环境特征及生物资源开发利用[J].人文地理,1993,8(2):89-95.
Google Scholar
[LI Zhiguo.Characteristics of Natural environment and the exploitation of biological resources in the Japan Sea[J].Human Geography,1993,8(2):89-95.]
Google Scholar
|
[5] |
Tada R,Irino T,Koizumi I.Land-ocean linkages over orbital and millennial timescales recorded in Late Quaternary sediments of the Japan Sea[J].Paleoceanography,1999,14(2):236-247.
Google Scholar
|
[6] |
Nagashima K,Tada R,Matsui H,et al.Orbital-and millennial-scale variations in Asian dust transport path to the Japan Sea[J].Palaeogeography,Palaeoclimatology,Palaeoecology, 2007,247(1):144-161.
Google Scholar
|
[7] |
Irino T,Tada R.Quantification of aeolian dust(Kosa)contribution to the Japan Sea sediments and its variation during the last 200ky[J].Geochemical Journal,2000,34:59-93.
Google Scholar
|
[8] |
Jennerjahn T C,Ittekkot V,Arz H W,et al.Asynchronous terrestrial and marine signals of climate change during Heinrich events[J].Science,2004,306(5705):2236-2239.
Google Scholar
|
[9] |
陈建芳.古海洋研究中的地球化学新指标[J].地球科学进展,2002,17:402-409.[Chen Jianfang.New geochemical proxies in paleoceanography Studies[J].Advance in Earth Sciences, 2002
Google Scholar
,17:402-409.]
Google Scholar
|
[10] |
Tada R,Murray R W,Zarikian C A,et al.The Integrated Ocean Drilling Program Expedition 346 Preliminary Report, Asian Monsoon:Onset and evolution of millennial-scale variability of Asian monsoon and its possible relation with Himalaya and Tibetan Plateau uplift[C]//Proc.IODP,346:College Station,TX (Integrated Ocean Drilling Program), 2014.
Google Scholar
|
[11] |
Kang D J,Lee K E,Kim K R.Recent developments in chemical oceanography of the East(Japan)Sea with an emphasis on CREAMS findings:A review[J].Geosciences Journal,2003,7:179-197.
Google Scholar
|
[12] |
Jolivet L,Tamaki K,Fournier M.Japan Sea,opening history and mechanism:a synthesis[J].Journal of Geophysical Research:Solid Earth (1978-2012),1994,99(B11):22237-22259.
Google Scholar
|
[13] |
Itoh Y,Nakajima T,Takemura A.Neogene deformation of the back-arc shelf of Southwest Japan and its impact on the palaeoenvironments of the Japan Sea[J].Tectonophysics, 1997,281(1):71-82.
Google Scholar
|
[14] |
Nagashima K,Tada R,Tani A,et al.Millennial-scale oscillations of the westerly jet path during the last glacial period[J].Journal of Asian Earth Sciences,2011,40(6):1214-1220.
Google Scholar
|
[15] |
Milliman J D,Farnsworth K L.River Discharge to the Coastal Ocean:A Global Synthesis[M].Cambridge:Cambridge University Press,2011.
Google Scholar
|
[16] |
Tada R,Murray R W,Alvarez Zarikian C A,et al.Site U1424[C].Proc.IODP,346:College Station,TX (Integrated Ocean Drilling Program),2015.
Google Scholar
|
[17] |
Sun J.Nd and Sr isotopic variations in Chinese eolian deposits during the past 8 Ma:Implications for provenance change[J].Earth and Planetary Science Letters,2005,240(2):454-466.
Google Scholar
|
[18] |
Zheng H,Powell C M,Rea D K,et al.Late Miocene and mid-Pliocene enhancement of the East Asian monsoon as viewed from the land and sea[J].Global and Planetary Change,2004,41(3-4):147-155.
Google Scholar
|
[19] |
Rea D K,Snoeckx H,Joseph L H.Late Cenozoic eolian deposition in the North Pacific:Asian drying,Tibetan uplift, and cooling of the northern hemisphere[J].Paleoceanography, 1998,13(3):215-224.
Google Scholar
|
[20] |
Wan S,Clift P D,Li A,et al.Geochemical records in the South China Sea:implications for East Asian summer monsoon evolution over the last 20 Ma[J].Geological Society, London,Special Publications,2010,342(1):245-263.
Google Scholar
|
[21] |
Lim D,Xu Z,Choi J,et al.Paleoceanographic changes in the Ulleung Basin,East (Japan)Sea,during the last 20000 years:Evidence from variations in element composition of core sediments[J].Progress in Oceanography,2011,88(1-4):101-115.
Google Scholar
|
[22] |
Rea D K.The paleoclimatic record provided by eolian deposition in the deep sea:the geologic history of wind[J].Rev. Geophys.,1994,32(2):159-195.
Google Scholar
|
[23] |
Irino T,Tada R.High-resolution reconstruction of variation in aeolian dust(Kosa)deposition at ODP site 797,the Japan Sea,during the last 200 ka[J].Global and Planetary Change,2003,35(1):143-156.
Google Scholar
|
[24] |
Leinen M,Prospero J M,Arnold E,et al.Mineralogy of aeolian dust reaching the North Pacific Ocean:1.Sampling and analysis[J].Journal of Geophysical Research:Atmospheres (1984-2012),1994,99(D10):21017-21023.
Google Scholar
|
[25] |
Weber E T,Owen R M,Dickens G R,et al.Quantitative resolution of eolian continental crustal material and volcanic detritus in North Pacific surface sediment[J].Paleoceanography, 1996,11(1):115-127.
Google Scholar
|
[26] |
Kohfeld K E,Harrison S P.DIRTMAP:the geological record of dust[J].Earth-Science Reviews,2001,54(1):81-114.
Google Scholar
|
[27] |
Dykoski C,Edwards R,Cheng H,et al.A high-resolution, absolute-dated Holocene and deglacial Asian monsoon record from Dongge Cave,China[J].Earth and Planetary Science Letters,2005,233(1-2):71-86.
Google Scholar
|
[28] |
Shi Y.Characteristics of late Quaternary monsoonal glaciation on the Tibetan Plateau and in East Asia[J].Quaternary International,2002,97:79-91.
Google Scholar
|
[29] |
Mckee B A,Aller R C,Allison M A,et al.Transport and transformation of dissolved and particulate materials on continental margins influenced by major rivers:benthic boundary layer and seabed processes[J].Continental Shelf Research, 2004,24(7-8):899-926.
Google Scholar
|
[30] |
Zhu Y-M,Lu X X,Zhou Y.Sediment flux sensitivity to climate change:A case study in the Longchuanjiang catchment of the upper Yangtze River,China[J].Global and Planetary Change,2008,60(3-4):429-442.
Google Scholar
|
[31] |
Saito Y,Yang Z,Hori K.The Huanghe(Yellow River)and Changjiang(Yangtze River)deltas:a review on their characteristics, evolution and sediment discharge during the Holocene[J].Geomorphology,2001,41:219-231.
Google Scholar
|
[32] |
邹建军,石学法,刘焱光,等末次冰期以来日本海陆源沉积的地球化学记录及其对海平面和气候变化的响应[J].海洋地质与第四纪地质,2010,30:75-85.[ZOU Jianjun,SHI Xuefa,LIU Yanguang,et al.Geochemical record of terrigenous sediments from the Sea of Japan since last glacial and its response to sea level and climate change[J].Marine Geology and Quaternary Geology,2010
Google Scholar
,30:75-85.]
Google Scholar
|
[33] |
Oba T,Kato M,Kitazato H.Paleoenironmental changes in the Japan Sea during the last 85000 years[J].Paleoceanography, 1991,6(4):499-518.
Google Scholar
|
[34] |
Meade R H.River-sediment inputs to major deltas[M].Sealevel rise and coastal subsidence.Springer.1996:63-85.
Google Scholar
|
[35] |
Chun J H,Cheong D,Ikehara K,et al.Age of the SKP-I and SKP-Ⅱ tephras from the southern East Sea/Japan Sea:Implications for interstadial events recorded in sediment from marine isotope stages 3 and 4[J].Palaeogeography,Palaeoclimatology, Palaeoecology,2007,247(1-2):100-114.
Google Scholar
|
[36] |
Khim B,Bahk J,Hyun S,et al.Late Pleistocene dark laminated mud layers from the Korea Plateau,western East Sea/Japan Sea,and their paleoceanographic implications[J]. Palaeogeography,Palaeoclimatology,Palaeoecology,2007, 247(1):74-87.
Google Scholar
|
[37] |
Chun J H,Han S J,Cheong D K.Tephrostratigraphy in the Ulleung Basin,East Sea-late Pleistocene to Holocene[J]. Geoscience Journal,1997,3:154-166.
Google Scholar
|
[38] |
Park M H,Kim I S,Ryu B J.Distribution of late Quaternary tephra layers in the western part of the Ulleung Basin, East Sea[J].Geosciences Journal,2003,7(2):123-127.
Google Scholar
|
[39] |
Park M H,Kim J H,Kil Y W.Identification of the late Quaternary tephra layers in the Ulleung Basin of the East Sea using geochemical and statistical methods[J].Marine Geology, 2007,244(1-4):196-208.
Google Scholar
|
[40] |
Smith V C,Staff R A,Blockley S P E,et al.Identification and correlation of visible tephras in the Lake Suigetsu SG06 sedimentary archive,Japan:chronostratigraphic markers for synchronising of east Asian/west Pacific palaeoclimatic records across the last 150ka[J].Quaternary Science Reviews, 2013,67:121-137.
Google Scholar
|
[41] |
Aoki K.Revised age and distribution of ca.87ka Aso-4 tephra based on new evidence from the northwest Pacific Ocean[J].Quaternary International,2008,178(1):100-118.
Google Scholar
|
[42] |
Park M H,Kim I S,Shin J B.Characteristics of the late Quaternary tephra layers in the East/Japan Sea and their new occurrences in western Ulleung Basin sediments[J].Marine Geology,2003,202(3-4):135-142.
Google Scholar
|
[43] |
Chun J H,Han S J,Cheong D K.Volcanic processes of the Ulleung-Ⅱ tephra(Ulleung-Oki ash)erupted from the Ulleung Island[J].Oceanographic Literature Review,1998,9(45):1561.
Google Scholar
|
[44] |
Jicha B R,Scholl D W,Rea D K.Circum-Pacific arc flare-ups and global cooling near the Eocene-Oligocene boundary[J]. Geology,2009,37(4):303-306.
Google Scholar
|
[45] |
Libby M.Prueher,Rea D K.Volcanic triggering of late Pliocene glaciation-evidence from the flux of volcanic glass and ice-rafted debris to the North Pacific Ocean[J].Palaeogeography, Palaeoclimatology,Palaeoecology,2001,173:215-230.
Google Scholar
|
[46] |
Shackleton N J,Bac kman J,Zimmerman H,et al.Oxygen isotope calibration of the onset of ice-rafting and history of glaciation in the North Atlantic region[J].Nature,1984, 307(5952):620-623.
Google Scholar
|
[47] |
Ikehara K,Fujine K.Fluctuations in the late Quaternary East Asian winter monsoon recorded in sediment records of surface water cooling in the northern Japan Sea[J].Journal of Quaternary Science,2012,27(9):866-872.
Google Scholar
|
[48] |
Minobe S,Sako A,Nakamura M.Interannual to interdecadal variability in the Japan Sea based on a new gridded upper water temperature dataset[J].Journal of Physical Oceanography, 2004,34:2382-2397.
Google Scholar
|
[49] |
Ikehara K.Late Quaternary seasonal sea-ice history of the northeastern Japan Sea[J].Journal of Oceanography,2003, 59:585-593.
Google Scholar
|
[50] |
Lim C,Toyoda K,Ikehara K,et al.Late Quaternary tephrostratigraphy of Baegdusan and Ulleung volcanoes using marine sediments in the Japan Sea/East Sea[J].Quaternary Research,2013,80(1):76-87.
Google Scholar
|
[51] |
Lim C,Lee I,Ikehara K.Geochemical identification of cryptotephras using INAA from Late Quaternary hemipelagic sediments, southwest Japan[J].Marine Geology,2013,346:233-245.
Google Scholar
|
[52] |
Wang Y J,Cheng H,Edwards R L,et al.A high-resolution absolute-dated late Pleistocene monsoon record from Hulu Cave,China[J].Science,2001,294(5550):2345-2348.
Google Scholar
|
[53] |
Wang Y,Cheng H,Edwards R L,et al.Millennial-and orbital-scale changes in the East Asian monsoon over the past 224000 years[J].Nature,2008,451(7182):1090-1093.
Google Scholar
|
[54] |
Hyun S,Bahk J J,Suk B-C,et al.Alternative modes of Quaternary pelagic biosiliceous and carbonate sedimentation:A perspective from the East Sea(Japan Sea)[J].Palaeogeography, Palaeoclimatology,Palaeoecology,2007,247(1-2):88-99.
Google Scholar
|
[55] |
Khim B K,Ikehara K,Irino T.Orbital-and millennial-scale paleoceanographic changes in the north-eastern Japan Basin, East Sea/Japan Sea during the late Quaternary[J].Journal of Quaternary Science,2012,27(3):328-335.
Google Scholar
|
[56] |
Lee G,Park S,Kim D.Fluctuations of the calcite compensation depth(CCD)in the East Sea(Sea of Japan)[J].Geo-Marine Letters,2000,20(1):20-26.
Google Scholar
|
[57] |
Kido Y,Minami I,Tada R,et al.Orbital-scale stratigraphy and high-resolution analysis of biogenic components and deepwater oxygenation conditions in the Japan Sea during the last 640kyr[J].Palaeogeography,Palaeoclimatology,Palaeoecology, 2007,247(1):32-49.
Google Scholar
|
[58] |
Lee K E,Bahk J J,Narita H.Temporal variations in productivity and planktonic ecological structure in the East Sea(Japan Sea)since the last glaciation[J].Geo-Marine Letters, 2003,23(2):125-129.
Google Scholar
|
[59] |
Xing L,Zhang R,Liu Y,et al.Biomarker records of phytoplankton productivity and community structure changes in the Japan Sea over the last 166 kyr[J].Quaternary Science Reviews, 2011,30(19-20):2666-2675.
Google Scholar
|
[60] |
Watanabe S,Tada R,Ikehara K,et al.Sediment fabrics, oxygenation history,and circulation modes of Japan Sea during the Late Quaternary[J].Palaeogeography,Palaeoclimatology, Palaeoecology,2007,247(1-2):50-64.
Google Scholar
|
[61] |
Bahk J,Chough S,Jeong K,et al.Sedimentary records of paleoenvironmental changes during the last deglaciation in the Ulleung Interplain Gap,East Sea(Sea of Japan)[J].Global and Planetary Change,2001,28(1):241-253.
Google Scholar
|
[62] |
Zou J,Shi X,Liu Y,et al.Reconstruction of environmental changes using a multi-proxy approach in the Ulleung Basin (Sea of Japan)over the last 48 ka[J].Journal of Quaternary Science,2012,27(9):891-900.
Google Scholar
|
[63] |
Takei T,Minoura K,Tsukawaki S,et al.Intrusion of a branch of the Oyashio Current into the Japan Sea during the Holocene[J].Paleoceanography,2002,17(3):11-1-11-10.
Google Scholar
|
[64] |
Lee K E.Surface water changes recorded in Late Quaternary marine sediments of the Ulleung Basin,East Sea(Japan Sea)[J].Palaeogeography,Palaeoclimatology,Palaeoecology, 2007,247(1-2):18-31.
Google Scholar
|
[65] |
Ishiwatari.R,Houtatsu.M,Okada H.Alkenone-sea surface temperatures in the Japan Sea over the past 36 kyr-warm temperatures at the last glacial maximum[J].Organic Geochemistry, 2001,32:57-67.
Google Scholar
|
[66] |
Ikehara K,Oshima H.Orbital-and millennial-scale fluctuations in late Quaternary marine pollen records from the Japan Sea[J].Journal of Quaternary Science,2009,24(8):866-879.
Google Scholar
|
[67] |
Kitamura A.Early Pleistocene evolution of the Japan Sea Intermediate Water[J].Journal of Quaternary Science,2009, 24(8):880-889.
Google Scholar
|
[68] |
Handley H K,Turner S,Afonso J C,et al.Sediment residence times constrained by uranium-series isotopes:A critical appraisal of the comminution approach[J].Geochimica et Cosmochimica Acta,2013,103:245-262.
Google Scholar
|