郑思琦,林振文,李出安,等. 珠江三角洲第四纪沉积物初始沉积年龄及沉积演化[J]. 海洋地质与第四纪地质,2023,43(6): 145-156. doi: 10.16562/j.cnki.0256-1492.2023033001
引用本文: 郑思琦,林振文,李出安,等. 珠江三角洲第四纪沉积物初始沉积年龄及沉积演化[J]. 海洋地质与第四纪地质,2023,43(6): 145-156. doi: 10.16562/j.cnki.0256-1492.2023033001
ZHENG Siqi,LIN Zhenwen,LI Chu’an,et al. Discussion on the Quaternary initial sedimentary age and sedimentary evolution in the Pearl River Delta[J]. Marine Geology & Quaternary Geology,2023,43(6):145-156. doi: 10.16562/j.cnki.0256-1492.2023033001
Citation: ZHENG Siqi,LIN Zhenwen,LI Chu’an,et al. Discussion on the Quaternary initial sedimentary age and sedimentary evolution in the Pearl River Delta[J]. Marine Geology & Quaternary Geology,2023,43(6):145-156. doi: 10.16562/j.cnki.0256-1492.2023033001

珠江三角洲第四纪沉积物初始沉积年龄及沉积演化

Discussion on the Quaternary initial sedimentary age and sedimentary evolution in the Pearl River Delta

  • 摘要: 第四纪沉积物特征及年龄对研究河流三角洲沉积演化历史、古海平面变化及古地理环境演变具有重要意义。珠江三角洲是研究华南地区第四纪环境与气候演化的重要区域,通过对珠江三角洲河口地区的钻孔沉积物进行光释光(OSL)年龄限定,珠江三角洲底部沉积物年龄为102.52±6.14 ka,表明珠江三角洲第四纪沉积始于晚更新世。通过系统的AMS 14C和OSL测定,结合前人研究认为,珠江三角洲第四纪以来至少经历了晚更新世和全新世两次主要的海侵和一次海退事件。三角洲初次海侵开始于晚更新世早期(MIS5阶段),于晚更新世晚期(MIS2阶段晚期)发生大规模海退,之后在全新世早期(约11 kaBP,MIS1阶段)再次海侵,形成了至少3层风化黏土层。晚更新世海侵过程中海平面显著波动,其中在约40 kaBP(MIS3阶段)海平面显著降低,形成下风化黏土层;至约30 kaBP海平面上升,三角洲重新接受沉积至MIS2晚期,之后海平面大幅降低形成中、上风化黏土层。

     

    Abstract: The characteristics and the age of the Quaternary sediments of the Pearl River Delta are important to understand the evolution in fluvial-delta sedimentation, fluctuations in sea level change, climate, and geography of the area as well as the South China. The optical stimulated luminescence (OSL) of the bottom sediment from the estuaries of the Pearl River Delta was studied and the age was determined to be 102.52±6.14 ka, indicating that the Quaternary deposition started in the late Pleistocene. In addition, AMS 14C dateing was conducted. Combining the OSL results and precious studies, we believe that the Pearl River Delta experienced at least two major transgressions and one regression since the late Pleistocene to Holocene. The first large-scale transgression began in the early Late Pleistocene (MIS5 stage), followed by regression in the late MIS2 stage, and transgressed again in the early Holocene (about 11 kaBP, MIS1 stage), forming at least three layers of weathered clay. During the late Pleistocene transgression, sea level fluctuated significantly. Sea level dropped notably at about 40 kaBP (MIS3 stage), forming the lower weathered clay layer; rose at about 30 kaBP, during which the delta received sediments until the late MIS2; and then the sea level went down again apparently, forming the middle and upper weathered clay layers.

     

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