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首页> 外文期刊>Scientific reports. >Temperature and Monsoon Tango in a Tropical Stalagmite: Last Glacial-Interglacial Climate Dynamics
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Temperature and Monsoon Tango in a Tropical Stalagmite: Last Glacial-Interglacial Climate Dynamics

机译:热带石笋中的温度和季风探戈:最后的冰期至冰期气候动力学

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High-resolution paleoclimate data on stable isotopes in a stalagmite were coupled to glycerol dialkyl glycerol tetraethers (GDGTs). The Indian Summer Monsoon (ISM) transitioned from limited rainfall during the Last Glacial Maximum (LGM) to intense precipitation during early Holocene (22 to 6 ka). This was associated with changes in stalagmite growth, abundance of branched (br) and isoprenoid (iso) GDGTs, as well as δ18O, δ13C, Sr/Ca and GDGT-derived signals providing both temperature and moisture information. The reconstructed mean annual air temperature (MAAT) of the most modern stalagmite sample at ~19?°C, matches the surface and cave MAAT, but was ~4?°C lower during LGM. Warming at the end of LGM occurred before ISM strengthened and indicate 6 ka lag consistent with sea surface temperature records. The isotope records during the Younger Dryas show rapid progressions to dry conditions and weak monsoons, but these shifts are not coupled to TEX86. Moreover, change to wetter and stronger ISM, along with warmer Holocene conditions are not continuous indicating a decoupling of local temperatures from ISM.
机译:将石笋中稳定同位素的高分辨率古气候数据与甘油二烷基甘油四醚(GDGT)耦合。印度夏季风(ISM)从上次冰期最大值(LGM)的有限降雨过渡到了全新世早期(22至6 ka)的强降雨。这与石笋生长的变化,分支的(br)和类异戊二烯的(iso)GDGT的变化以及δ18O,δ13C,Sr / Ca和GDGT衍生的提供温度和湿度信息的信号有关。最现代的石笋样品的重构平均年气温(MAAT)在〜19?C,与表面和洞穴MAAT相匹配,但在LGM期间降低了约4?°C。 LGM末期的变暖发生在ISM加强之前,并表明与海表温度记录相符的6 ka滞后。 Younger Dryas时期的同位素记录显示,迅速发展到干燥条件和弱季风,但是这些变化与TEX86无关。此外,向更湿,更强的ISM转变以及全新世的变暖并不连续,这表明局部温度与ISM脱钩。

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