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自末次盛冰期以来,地质储层是否曾突然大量释放甲烷,这种释放还会再次发生吗?

Have sudden large releases of methane from geological reservoirs occurred since the Last Glacial Maximum, and could such releases occur again?

作者信息

Nisbet Euan G

机构信息

Department of Geology, Royal Holloway, University of London, Egham, Surrey TW20 0EX, UK.

出版信息

Philos Trans A Math Phys Eng Sci. 2002 Apr 15;360(1793):581-607. doi: 10.1098/rsta.2001.0958.

Abstract

Methane emissions from geological reservoirs may have played a major role in the sudden events terminating glaciation, both at the start of the Bølling/Allerød and also at the end of the Younger Dryas. These reservoirs include Arctic methane hydrates and also methane hydrate stored in offshore marine sediments in tropical and temperate latitudes. Emissions from hydrate stores may have resonated with tropical wetland emissions, each reinforcing the other. Because methane is such a powerful greenhouse gas, much smaller emissions of methane, compared with carbon dioxide, are required in order to have the same short-term impact by climate forcing. The methane-linked hypothesis has much geological support from sea-floor evidence of emission. However, Greenland ice-core records have been interpreted as showing methane as a consequential factor, rather than the leader, of change. This interpretation can be challenged on the grounds that temperature gradients in Greenland ice record local changes and local timing of a step-like shift in weather fronts, while methane concentrations record changes on a hemispheric and global scale. There are large remaining hydrate reservoirs in the Arctic and in shelf sediments globally, and there is substantial risk of further emissions.

摘要

地质储层的甲烷排放可能在终止冰川作用的突发事件中发挥了重要作用,无论是在博林/阿勒罗德期开始时,还是在新仙女木期结束时。这些储层包括北极甲烷水合物以及储存在热带和温带纬度近海海洋沉积物中的甲烷水合物。水合物储存的排放可能与热带湿地排放产生共鸣,二者相互强化。由于甲烷是一种强大的温室气体,与二氧化碳相比,要产生相同的短期气候强迫影响,所需的甲烷排放量要小得多。甲烷关联假说得到了来自海底排放证据的大量地质支持。然而,格陵兰冰芯记录被解释为表明甲烷是变化的一个结果因素,而非主导因素。这种解释可以受到质疑:格陵兰冰中的温度梯度记录了局部变化以及锋面阶梯状移动的局部时间,而甲烷浓度记录的是半球和全球尺度的变化。北极和全球大陆架沉积物中仍有大量水合物储层,存在进一步排放的重大风险。

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