中-晚始新世渭河盆地古气候变化的红河组磁化率记录

被引:3
作者
郁晓春 [1 ]
鹿化煜 [1 ]
吕恒志 [1 ]
王可欣 [1 ,2 ]
杨帆 [1 ]
赖文 [1 ]
机构
[1] 南京大学地理与海洋科学学院
[2] 西安交通大学全球环境变化研究院
关键词
中-晚始新世; 渭河盆地; 磁化率; 河湖相沉积物; 古气候变化;
D O I
暂无
中图分类号
P534.613 []; P532 [古气候学];
学科分类号
070903 [古生物学与地层学];
摘要
始新世暖期可为理解现代增温过程和机制提供历史相似型。广泛分布于渭河盆地的红河组为中始新世到晚始新世的滨浅湖相-冲积扇堆积,剖面出露厚度超过330 m,盆地沉积中心钻探厚度大于1000 m,为一套红色的碎屑沉积间化学沉积序列。盆地边缘的红河组沉积物含碳酸盐岩、泥岩、砂岩和少量砾岩,沉积中心以泥质灰岩、泥岩和粉砂岩为主。对蓝田支家沟红河组(时代为46~33 Ma)2910个样品的磁化率测试表明,红河组沉积物磁化率值在0~20×10-8 m3/kg之间,整体偏低,频率磁化率值也相对较低(0~11%),与中国西北部新生代红层磁化率总体较低相似。高分辨率磁化率测试证实了红河组堆积时期干湿变化的多旋回和阶段性,受到太阳辐射变化影响,并受到下垫面的反馈驱动。红河组泥岩和粉砂岩的磁化率值偏高,而砂岩的磁化率值较低,载磁矿物以赤铁矿为主。盆地周围岩体弱磁性物质的快速输入,降低了红河组粗颗粒沉积物的磁化率值。在中、晚始新世的轨道-构造时间尺度,红河组沉积序列粒度变化受到湖面波动控制。湖面上升时湖滨地区沉积物颗粒偏细,磁化率值高;反之,磁化率值低。因此,磁化率高低变化指示了湖面高低波动,进而指示了气候的干湿变化。分析还表明,中、晚始新世渭河盆地湖面多旋回变化和阶段性变干,与全球温度变化和降温过程可良好对比,指示全球温度降低可能抑制水汽循环,进而驱动始新世东亚内陆干旱的发展。
引用
收藏
页码:325 / 337
页数:13
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