长江三角洲北翼后缘晚第四纪以来的沉积粒度特征及环境演化

丁大林, 张训华, 于俊杰, 王丽艳, 王丰, 商守卫. 长江三角洲北翼后缘晚第四纪以来的沉积粒度特征及环境演化[J]. 海洋地质与第四纪地质, 2019, 39(4): 34-45. doi: 10.16562/j.cnki.0256-1492.2019022801
引用本文: 丁大林, 张训华, 于俊杰, 王丽艳, 王丰, 商守卫. 长江三角洲北翼后缘晚第四纪以来的沉积粒度特征及环境演化[J]. 海洋地质与第四纪地质, 2019, 39(4): 34-45. doi: 10.16562/j.cnki.0256-1492.2019022801
DING Dalin, ZHANG Xunhua, YU Junjie, WANG Liyan, WANG Feng, SHANG Shouwei. Sediment grain size distribution patterns of the late Quaternary on the back side of northern Yangtze River Delta and their environmental implications[J]. Marine Geology & Quaternary Geology, 2019, 39(4): 34-45. doi: 10.16562/j.cnki.0256-1492.2019022801
Citation: DING Dalin, ZHANG Xunhua, YU Junjie, WANG Liyan, WANG Feng, SHANG Shouwei. Sediment grain size distribution patterns of the late Quaternary on the back side of northern Yangtze River Delta and their environmental implications[J]. Marine Geology & Quaternary Geology, 2019, 39(4): 34-45. doi: 10.16562/j.cnki.0256-1492.2019022801

长江三角洲北翼后缘晚第四纪以来的沉积粒度特征及环境演化

  • 基金项目:
    中国地质调查局海岸带调查项目“宁德海岸带陆海统筹综合地质调查项目”(121201008000182401)
详细信息
    作者简介: 丁大林(1992—),男,在读博士,主要从事海洋沉积与第四纪研究,E-mail: oucdalin@163.com
    通讯作者: 于俊杰(1983—),男,高级工程师,主要从事第四纪研究,E-mail: 25320701@qq.com
  • 中图分类号: P535

  • 周立君编辑

Sediment grain size distribution patterns of the late Quaternary on the back side of northern Yangtze River Delta and their environmental implications

More Information
  • 对长江三角洲北翼CSJA3孔的粒度数据及粒度参数、频率分布曲线和概率累积曲线等沉积物粒度特征进行了详细分析,并结合岩性、沉积构造、孢粉和有孔虫组合等数据,探讨了研究区晚第四纪以来的沉积环境演化及海侵记录。分析表明,粒度数据可以很好地反映沉积环境的变化,间冰期黏土含量降低,砂含量增加,平均粒径较大;冰期正好相反。根据岩性、测年、孢粉、有孔虫等建立的年代框架确定CSJA3孔底部为MIS6期。CSJA3孔自下而上可分为6个沉积单元:U6(泛滥平原—河漫滩)、U5(河口—潮坪)、U4(河漫滩)、U3(潮坪—滨浅海)、U2(河漫滩)、U1(澙湖—潮坪)。CSJA3孔共记录三次海侵,U5、U3和U1地层分别对应MIS5期太湖海侵、MIS3期滆湖海侵和MIS1期镇江海侵。其中,MIS3期海侵强度比MIS5期更大,与全球海平面变化不符。造成这种差异的原因可能是在全球气候变化的大背景下,构造作用控制的古地势变化造成的。

  • 加载中
  • 图 1  长江三角洲地貌区划及钻孔位置图

    Figure 1. 

    图 2  氧同位素年代框架的岩心证据

    Figure 2. 

    图 3  CSJA3孔黏土、粉砂、砂含量以及粒度参数随深度变化曲线

    Figure 3. 

    图 4  典型沉积物粒度频率分布曲线

    Figure 4. 

    图 5  典型粒度概率累积曲线

    Figure 5. 

    图 6  CSJA3孔主要孢粉百分含量

    Figure 6. 

    图 7  有孔虫主要种属百分含量

    Figure 7. 

    图 8  长江三角洲晚更新世海侵地层对比

    Figure 8. 

    表 1  CSJA3钻孔AMS14C测年结果[44]

    Table 1.  AMS14C dating results of core CSJA3

    Lab编号 岩性 样品原编号 深度/m 14C年代/aBP 误差/aBP 校正年龄/cal.aBP
    1倍标准偏差范围 2倍标准偏差范围 概率中值
    BA120979 淤质黏土 CSJA314C-1 3.9 7815 30 8244~8335 8191~8356 8287
    BA120980 淤质黏土 CSJA314C-2 4.1 6240 30 6646~6728 6607~6778 6689
    BA120981 淤质黏土 CSJA314C-3 6.4 7950 30 8367~8435 8341~8493 8404
    BA120982 植物碎叶片 CSJA314C-5 21.4 33550 150 36913~37651 36658~38026 37303
    BA120983 淤质黏土 CSJA314C-6 27.4 26690 80 30513~30766 30363~30878 30635
    注:所用14C半衰期为5568年,BP为距1950年的年代。
    下载: 导出CSV

    表 2  各沉积单元黏土、粉砂和砂含量变化范围

    Table 2.  Clay, silt and sand contents in each unit

    深度/m 黏土/% 粉砂/% 砂/%
    U1 0~7.8 13.6~24.6 47.0~76.8 0~30.1
    U2 7.8~11.0 19.8~25.8 48.7~59.3 15.3~31.5
    U3 11.0~26.6 3.3~14.3 17.4~75.4 10.3~79.1
    U4 26.6~37.2 12.5~31.8 31.3~60.7 7.5~62.4
    U5 37.2~65.0 1.7~49.2 5.9~68.5 0~92.4
    U6 65.0~74.0 8.9~28.0 41.0~66.1 5.8~53.4
    下载: 导出CSV
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出版历程
收稿日期:  2019-02-28
修回日期:  2019-04-11
刊出日期:  2019-08-28

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