[1] 蔡廷禄,倪建宇,贾建军,等. 2016. 海南岛典型港湾沉积物化学特征及重金属污染评价[J]. 第四纪研究,36(1):93-102.

Cai Tinglu, Ni Jianyu, Jia Jianjun, et al. 2016. The characteristics of chemical parameters and the pollution evaluation of heavy metals in surficial sediments of four typical bays, Hainan province[J]. Quaternary Sciences, 36(1): 93-102.
[2] 曹琼英. 1986. 海南岛西北岸三万年前后浅海相地层的发现及其意义[J]. 南京大学学报(自然科学版),22(3):545-550.

Cao Qiong-ying. 1986. Marine strata around coast of northwest part of Hainan Island[J]. Journal of Nanjing University (Natural Sciences), 22(3): 545-550.
[3] 方小敏,吕连清,杨胜利,等. 2001. 昆仑山黄土与中国西部沙漠发育和高原隆升[J]. 中国科学:地球科学,31(3):177-184.

Fang Xiaomin, Lianqing Lü, Yang Shengli, et al. 2001. Loess in Kunlun Mountains and its implications on desert development and Tibetan Plateau uplift in west China[J]. Science China Earth Sciences, 31(3): 177-184.
[4] 方小敏,史正涛,杨胜利,等. 2002. 天山黄土和古尔班通古特沙漠发育及北疆干旱化[J]. 科学通报,47(7):540-545.

Fang Xiaomin, Shi Zhengtao, Yang Shengli, et al. 2002. Loess in the Tian Shan and its implications for the development of the Gurbantunggut desert and drying of northern Xinjiang[J]. Chinese Science Bulletin, 47(7): 540-545.
[5] 贺子丁,刘志飞,李建如,等. 2012. 南海西部54万年以来元素地球化学记录及其反映的古环境演变[J]. 地球科学进展,27(3):327-336.

He Ziding, Liu Zhifei, Li Jianru, et al. 2012. Elemental geochemical records in the western South China Sea since 540 ka and their paleoenvironmental implications[J]. Advances in Earth Science, 27(3): 327-336.
[6] 李高聪,高抒,戴晨. 2016. 海南岛主要入海河流流域地貌演化[J]. 第四纪研究,36(1):121-130.

Li Gaocong, Gao Shu, Dai Chen. 2016. Geomorphological evolution of major catchment basins of Hainan Island, southern China[J]. Quaternary Sciences, 36(1): 121-130.
[7] 梁定勇,李孙雄,魏昌欣,等. 2018. 海南岛西南部全新世海滩岩地球化学特征及其古气候意义[J]. 地层学杂志,42(1):108-116.

Liang Dingyong, Li Sunxiong, Wei Changxin, et al. 2018. Geochemical characteristics of Holocene beach rocks in southwestern Hainan Island and their paleoclimatic implications[J]. Journal of Stratigraphy, 42(1): 108-116.
[8] 梁定勇,许国强,肖瑶,等. 2021. 海口江东新区新近纪—第四纪标准地层与组合分区[J]. 科学技术与工程,21(26):11052-11063.

Liang Dingyong, Xu Guoqiang, Xiao Yao, et al. 2021. Neogene-Quaternary stratigraphic standard and combined zoning of Haikou Jiangdong new district[J]. Science Technology and Engineering, 21(26): 11052-11063.
[9] 林国尧,李文欢. 2009. 洋浦湾—新英湾地质及洋浦深槽的形成与演变[J]. 海洋开发与管理,26(4):68-71.

Lin Guoyao, Li Wenhuan. 2009. The geology of Yangpu Bay-Xinying Bay and the formation and evolution of Yangpu deep trough[J]. Ocean Development and Management, 26(4): 68-71.
[10] 林义华,梁定勇,魏昌欣,等. 2023. 海南岛西北部晚更新世海滩岩地球化学特征及其古环境意义[J]. 科学技术与工程,23(10):4079-4090.

Lin Yihua, Liang Dingyong, Wei Changxin, et al. 2023. Geochemical characteristics of Late Pleistocene beach rocks in northwest Hainan Island and their paleoenvironment implications[J]. Science Technology and Engineering, 23(10): 4079-4090.
[11] 彭晓彤,周怀阳,叶瑛,等. 2004. 珠江河口沉积物粒度特征及其对底层水动力环境的指示[J]. 沉积学报,22(3):487-493.

Peng Xiaotong, Zhou Huaiyang, Ye Ying, et al. 2004. Characteristics of sediment grain size and their implications for bottom hydrodynamic environment in the Pearl River estuary[J]. Acta Sedimentologica Sinica, 22(3): 487-493.
[12] 孙倩文,黄康有,谢德豪,等. 2019. 海南岛三亚湾全新世以来沉积特征与古环境演变[J]. 中山大学学报(自然科学版),58(3):13-21.

Sun Qianwen, Huang Kangyou, Xie Dehao, et al. 2019. On the sedimentary environment change since Holocene in the Sanya Bay, Hainan Island[J]. Acta Scientiarum Naturalium Universitatis Sunyatseni, 58(3): 13-21.
[13] 田成静,欧阳婷萍,朱照宇,等. 2013. 海南岛周边海域表层沉积物磁化率空间分布特征及其物源指示意义[J]. 热带地理,33(6):666-673.

Tian Chengjing, Ouyang Tingping, Zhu Zhaoyu, et al. 2013. Spatial distribution of magnetic susceptibility and its pro-venance implication of surface sediments in the sea areas around the Hainan Island[J]. Tropical Geography, 33(6): 666-673.
[14] 王建华,夏法,邹和平. 1995. 海南岛排浦现代白云岩若干特征及其岩化作用探讨[J]. 热带海洋,14(3):16-22.

Wang Jianhua, Xia Fa, Zou Heping. 1995. An approach to some characteristics and dolomitization of recent dolomite of Paipu, Hainan Island[J]. Tropic Oceanology, 14(3): 16-22.
[15] 王梦媛,郑卓,黄康有,等. 2016. 海南岛南部MIS-5海相沉积地层的发现及其意义[J]. 热带地理,36(3):399-405,416.

Wang Mengyuan, Zheng Zhuo, Huang Kangyou, et al. 2016. New insight on the marine deposit in the southern Hainan Island[J]. Tropical Geography, 36(3): 399-405, 416.
[16] 汪品先. 1995. 西太平洋边缘海对我国冰期干旱化影响的初步探讨[J]. 第四纪研究,15(1):32-42.

Wang Pinxian. 1995. The role of west pacific marginal seas in glacial aridification of China: A preliminary study[J]. Quaternary Sciences, 15(1): 32-42.
[17] 魏雨秋,胡雅婷,周炼,等. 2023. 动态多接收TIMS方法高精度测定岩石标准物质的锶同位素组成[J]. 岩矿测试,42(5):944-956.

Wei Yuqiu, Hu Yating, Zhou Lian, et al. 2023. High precision strontium isotope measurement of rock standard materials by multi-dynamic TIMS[J]. Rock and Mineral Analysis, 42(5): 944-956.
[18] 邬光剑,潘保田,管清玉,等. 2002. 中更新世全球最大冰期与中国沙漠扩张[J]. 冰川冻土,24(5):544-549.

Wu Guangjian, Pan Baotian, Guan Qingyu, et al. 2002. The maximum glaciation and desert expansion in China during MIS16[J]. Journal of Glaciology and Geocryology, 24(5): 544-549.
[19] 禤宇添,詹文欢,姚衍桃,等. 2022. 海南岛西北部更新世海相地层的石英ESR测年探讨[J]. 海洋地质与第四纪地质,42(3):123-132.

Xuan Yutian, Zhan Wenhuan, Yao Yantao, et al. 2022. Testing of quartz ESR dating for the marine strata on the northwestern coast of Hainan Island[J]. Marine Geology & Quaternary Geology, 42(3): 123-132.
[20] 姚衍桃,詹文欢,孙金龙,等. 2009. 海南岛西北部莲花山周缘海相地层的区内对比及意义[J]. 海洋地质与第四纪地质,29(3):43-51.

Yao Yantao, Zhan Wenhuan, Sun Jinlong, et al. 2009. Correlation and implication of marine strata around Lianhua Mountain in northwest Hainan Island[J]. Marine Geology & Quaternary Ge-ology, 29(3): 43-51.
[21] 张军龙,田勤俭,李峰,等. 2008. 海南岛北西部新构造特征及其演化研究[J]. 地震,28(3):85-94.

Zhang Junlong, Tian Qinjian, Li Feng, et al. 2008. Study on neotectonic characteristics and its evolution in northwestern Hainan Island[J]. Earthquake, 28(3): 85-94.
[22] 张磊,麦发海,王超群,等. 2022. 海南岛北部晚新生代沉积物Sr-Nd同位素组成及其物源示踪[J]. 地质通报,41(11):1996-2006.

Zhang Lei, Fahai Mai, Wang Chaoqun, et al. 2022. Sr-Nd isotopic composition and provenance tracing of Late Cenozoic sediments in the northern Hainan Island[J]. Geological Bulletin of China, 41(11): 1996-2006.
[23] 张立敏,王岳军,张玉芝,等. 2017. 海南岛北部古生界时代:碎屑锆石U-Pb年代学约束[J]. 吉林大学学报(地球科学版),47(4):1187-1206.

Zhang Limin, Wang Yuejun, Zhang Yuzhi, et al. 2017. Age of Paleozoic strata in northern Hainan Island: Constraints from the detrital zircon U-Pb geochronology[J]. Journal of Jilin University (Earth Science Edition), 47(4): 1187-1206.
[24] 张明强,朱丽东,姜永见,等. 2010. 九江JL红土剖面记录的中更新世气候转型事件[J]. 海洋地质与第四纪地质,30(6):115-123.

Zhang Mingqiang, Zhu Lidong, Jiang Yongjian, et al. 2010. Mid-Pleistocene climate transition event recorded by JL red earth section, Jiujiang, Jiangxi province[J]. Marine Geology & Quaternary Geology, 30(6): 115-123.
[25] 张明书. 1990. 海南排浦海相第四纪与上新世界限的发现及白云石化作用问题[J]. 海洋地质与第四纪地质,10(1):47-59.

Zhang Mingshu. 1990. A new discovery on Paipu of Hainan: Boundary between marine Quaternary and Pliocene and age of dolomitization[J]. Marine Geology & Quaternary Geology, 10(1): 47-59.
[26] 张振克,孟红明,谢丽,等. 2010. 海南岛东寨港红树林区岩芯地球化学特征及其古地震指示[J]. 地理科学,30(5):777-782.

Zhang Zhenke, Meng Hongming, Xie Li, et al. 2010. Geochemical records and its paleoearthquake significance of core sediments in Dongzhai Bay, Hainan Island, China[J]. Scientia Geographica Sinica, 30(5): 777-782.
[27] 赵梦,邵磊,梁建设,等. 2013. 古红河沉积物稀土元素特征及其物源指示意义[J]. 地球科学:中国地质大学学报,38(增刊1):61-69.

Zhao Meng, Shao Lei, Liang Jianshe, et al. 2013. REE character of sediment from the paleo-red river and its implication of pro-venance[J]. Earth Science: Journal of China University of Geo-sciences, 38(Suppl. 1): 61-69.
[28] 郑范,李前裕,陈木宏. 2006. 南海北部1144站中更新世浮游有孔虫的千年尺度古气候记录[J]. 地球科学:中国地质大学学报,31(6):780-786.

Zheng Fan, Li Qianyu, Chen Muhong. 2006. A millennial scale mid-Pleistocene paleoclimate record of planktonic foraminifera from the northern South China Sea site 1144[J]. Earth Science: Journal of China University of Geosciences, 31(6): 780-786.
[29] 郑志锋,秦菡,宋家伟,等. 2022. 海南岛海岸带地质环境调查评价与监测(2022年度)成果报告[R]. 海南:海南省海洋地质调查研究院.

Zheng Zhifeng, Qin Han, Song Jiawei, et al. 2022. Results report of geological environment survey, evaluation and monitoring of Hainan Island coastal zone (2022)[R]. Hainan: Hainan Institute of Marine Geological Survey.
[30] Asahara Y, Tanaka T, Kamioka H, et al. 1999. Provenance of the north Pacific sediments and process of source material transport as derived from Rb–Sr isotopic systematics[J]. Chemical Geology, 158(3/4): 271-291.
[31] Berger W H, Yasuda M K, Bickert T, et al. 1994. Quaternary time scale for the Ontong Java Plateau: Milankovitch template for Ocean Drilling Program Site 806[J]. Geology, 22(5): 463-467.
[32] Cao L, Liu J G, Shi X F, et al. 2019. Source-to-sink processes of fluvial sediments in the northern South China Sea: Constraints from river sediments in the coastal region of South China[J]. Journal of Asian Earth Sciences, 185: 104020.
[33] Chen J, Wang Z H, Chen Z Y, et al. 2009. Diagnostic heavy minerals in Plio–Pleistocene sediments of the Yangtze coast, China with special reference to the Yangtze River connection into the sea[J]. Geomorphology, 113(3/4): 129-136.
[34] Clift P D, Sun Z. 2006. The sedimentary and tectonic evolution of the Yinggehai–Song Hong Basin and the southern Hainan margin, South China Sea: Implications for Tibetan uplift and monsoon intensification[J]. Journal of Geophysical Research: Solid Earth, 111(B6): B06405.
[35] Ding Z, Yu Z, Rutter N W, et al. 1994. Towards an orbital time scale for Chinese loess deposits[J]. Quaternary Science Reviews, 13(1): 39-70.
[36] Garçon M, Chauvel C, France-Lanord C, et al. 2014. Which minerals control the Nd–Hf–Sr–Pb isotopic compositions of river sediments?[J]. Chemical Geology, 364: 42-55.
[37] Hayashi K I, Fujisawa H, Holland H D, et al. 1997. Geochemistry of ∼1.9 Ga sedimentary rocks from northeastern Labrador, Canada[J]. Geochimica Et Cosmochimica Acta, 61(19): 4115-4137.
[38] He H Y, Wang Y J, Cawood P A, et al. 2020. Permo–Triassic granitoids, Hainan Island, link to Paleotethyan not Paleopacific tectonics[J]. GSA Bulletin, 132(9/10): 2067-2083.
[39] Hemming S R, van de Flierdt T, Goldstein S L, et al. 2007. Strontium isotope tracing of terrigenous sediment dispersal in the Antarctic Circumpolar Current: Implications for constraining frontal positions[J]. Geochemistry, Geophysics, Geosystems, 8(6): Q06N13.
[40] Johnsson M J, Stallard R F, Meade R H. 1988. First-cycle quartz arenites in the Orinoco River Basin, Venezuela and Colombia[J]. The Journal of Geology, 96(3): 263-277.
[41] Li X H, Wei G J, Shao L, et al. 2003. 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, 211(3/4): 207-220.
[42] Li X H, Zhou H W, Chung S L, et al. 2002. Geochemical and Sm–Nd isotopic characteristics of metabasites from central Hainan Island, South China and their tectonic significance[J]. Island Arc, 11(3): 193-205.
[43] Li Z X, Li X H, Li W X, et al. 2008. Was cathaysia part of Proterozoic Laurentia?: New data from Hainan Island, South China[J]. Terra Nova, 20(2): 154-164.
[44] Ling Y, Tang W K, Wang Y, et al. 2020. Evidence of abrupt climate change during the mid- to Late-Holocene recorded in a tropical lake, southern China[J]. Acta Geologica Sinica, 94(4): 1187-1193.
[45] Liu J G, Chen Z, Chen M H, et al. 2010. Magnetic susceptibility variations and provenance of surface sediments in the South China Sea[J]. Sedimentary Geology, 230(1/2): 77-85.
[46] Liu Z F, Colin C, Huang W, et al. 2007. Climatic and tectonic controls on weathering in South China and Indochina peninsula: Clay mineralogical and geochemical investigations from the Pearl, Red, and Mekong drainage basins[J]. Geochemistry, Geophysics, Geo-systems, 8(5): Q05005.
[47] Ma Z B, Xia M, Zhang C H, et al. 1999. High-precision U-series dating of Holocene corals from South China Sea by thermal ionization mass spectrometry (TIMS)[J]. Chinese Science Bulletin, 44(10): 937-941.
[48] McLennan S M, Hemming S, McDaniel D K, et al. 1993. Geochemical approaches to sedimentation, provenance, and tectonics[J]. Special Papers-Geological Society of America: 21-21.
[49] Mudelsee M, Schulz M. 1997. The mid-Pleistocene climate transition: Onset of 100 ka cycle lags ice volume build-up by 280 ka[J]. Earth and Planetary Science Letters, 151(1/2): 117-123.
[50] Nádor A, Lantos M, Tóth-Makk Á, et al. 2003. Milankovitch-scale multi-proxy records from fluvial sediments of the last 2.6Ma, Pannonian Basin, Hungary[J]. Quaternary Science Reviews, 22(20): 2157-2175.
[51] Nesbitt H W, Young G M. 1982. Early Proterozoic climates and plate motions inferred from major element chemistry of lutites[J]. Nature, 299(5885): 715-717.
[52] Nichol S L, Goff J R, Devoy R J N, et al. 2007. Lagoon subsidence and tsunami on the West coast of New Zealand[J]. Sedimentary Ge-ology, 200(3/4): 248-262.
[53] Robles E, Piper P, Ochoa J, et al. 2015. Late Quaternary sea-level changes and the palaeohistory of Palawan Island, Philippines[J]. The Journal of Island and Coastal Archaeology, 10(1): 76-96.
[54] Santschi P H, Oktay S D, Cifuentes L. 2007. Carbon isotopes and iodine concentrations in a Mississippi River delta core recording land use, sediment transport, and dam building in the river’s drainage basin[J]. Marine Environmental Research, 63(3): 278-290.
[55] Wang C, Liang X Q, Xie Y H, et al. 2014. Provenance of Upper Miocene to Quaternary sediments in the Yinggehai-Song Hong Basin, South China Sea: Evidence from detrital zircon U–Pb ages[J]. Marine Geology, 355: 202-217.
[56] Wang G H, Wang H, Gan H J, et al. 2016. Paleogene tectonic evolution controls on sequence stratigraphic patterns in the Fushan Sag, northern South China Sea[J]. Journal of Earth Science, 27(4): 654-669.
[57] Weaver C E. 1967. Potassium, illite and the ocean[J]. Geochimica et Cosmochimica Acta, 31(11): 2181-2196.
[58] Yan Y, Xia B, Lin G, et al. 2007. Geochemical and Nd isotope composition of detrital sediments on the north margin of the South China Sea: Provenance and tectonic implications[J]. Sedimentology, 54(1): 1-17.
[59] Zhang L M, Wang Y J, Qian X, et al. 2018. Petrogenesis of Mesoproterozoic mafic rocks in Hainan (South China) and its implication on the southwest Hainan-Laurentia-Australia connection[J]. Precambrian Research, 313: 119-133.
[60] Zhou Y, Liang X Q, Liang X R, et al. 2015. U–Pb geochronology and Hf-isotopes on detrital zircons of Lower Paleozoic strata from Hainan Island: New clues for the early crustal evolution of southeastern South China[J]. Gondwana Research, 27(4): 1586-1598.
[61] Zhu Z F, Yuan W L, Song J W, et al. 2026. Provenance Shift recorded in core sediments from northwest Hainan Island during the Middle Pleistocene: Evidence from clay minerals and trace element geochemistry[J].Geological Journal, https://doi.org/10.1002/gj.70279. doi:  10.1002/gj.70279