FN Archimer Export Format PT J TI Sediment provenance and evolution of the East Asian winter monsoon since 700 ka recorded by major elements in the West Philippine Sea BT AF XU, ZhaoKai LI, Tiegang YU, XinKe LI, AnChun TANG, Zheng CHOI, JinYong NAN, QingYun AS 1:1;2:1;3:1;4:1;5:2;6:3;7:1; FF 1:;2:;3:;4:;5:;6:;7:; C1 Chinese Acad Sci, Inst Oceanol, Key Lab Marine Geol & Environm, Qingdao 266071, Peoples R China. Minist Land & Resources China, Qingdao Inst Marine Geol, Key Lab Marine Hydrocarbon Resources & Environm G, Qingdao 266071, Peoples R China. Kunsan Natl Univ, Dept Oceanog, Kunsan 573701, South Korea. C2 CHINESE ACAD SCI, CHINA QIMG, CHINA UNIV KUNSAN NATL, SOUTH KOREA IF 1.365 TC 5 UR https://archimer.ifremer.fr/doc/00264/37557/36494.pdf LA English DT Article CR MD 155 / MARCO-POLO2 BO Marion Dufresne DE ;major elements;provenance;eolian dust;East Asian winter monsoon;West Philippine Sea AB To synthetically realize the character of major-element compositions as well as its significance for provenance and paleoenvironment recorded in core sediments of the West Philippine Sea over the last 700 ka, grain size and major elements of 221 bulk sediments, together with major-element compositions in the detrital phase of 16 typical samples, in core MD06-3047 collected from the Benham Rise were analyzed. Both discrimination plot and R-mode factor analysis indicate that vertical changes of major elements are mainly controlled by the sedimentation of nearby volcanic matter and the eolian dust input, whereas influences from marine biologic deposition and hydrothermal activity are minor. In particular, Al2O3 and K2O are representative of an eolian dust factor. The variation in the eolian dust factor score is characterized by the obviously glacial-interglacial periodicity and can be well compared with the paleotemperature record of the Antarctic ice core and the evolution of the East Asian winter monsoon (EAWM) recorded in the Chinese loess sequence, and then offers a new proxy for the evolution history of eolian dust input into the study area that is controlled by the EAWM intensity and aridity in the continental source regions of atmospheric dust. PY 2013 PD MAR SO Chinese Science Bulletin SN 1001-6538 PU Science Press VL 58 IS 9 UT 000316219500013 BP 1044 EP 1052 DI 10.1007/s11434-012-5538-8 ID 37557 ER EF