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Climate and Fuel Controls on North American Paleofires: Smoldering to Flaming in the Late-glacial-Holocene Transition

机译:北美古火的气候和燃料控制:晚冰期-全新世过渡期的闷烧到火焰

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摘要

Smoldering and flaming fires, which emit different proportions of organic (OC) and black carbon (BC, in the form of char and soot), have long been recognized in modern wildfire observations but never in a paleo-record, and little is known about their interactions with climate. Here we show that in the late glacial-early Holocene transition period, when the climate was moist, relatively high quantities of char were deposited in Linsley Pond, Connecticut, USA while soot was more abundant during the warmer and drier early Holocene interval. The highest soot mass accumulation rates (MARs) occurred at the beginning of the Holocene as fuel availability increased through the climatic transition when boreal forests were locally extirpated. These variations with time are related to the different formation pathways of char and soot, which are governed by combustion efficiency. This study provides an approach for differentiating smoldering from flaming combustion in paleo-wildfire reconstructions. Our results suggest that climate and fuel loads control the occurrence of different wildfire types and precipitation may play a key role.
机译:长期以来,在现代野火观测中已经认识到闷燃和熊熊燃烧的烈火,散发出不同比例的有机(OC)和黑碳(炭黑和烟灰形式的BC),但从未在古记录中被发现,对此知之甚少它们与气候的相互作用。在这里,我们表明,在冰川-全新世晚期过渡期,当气候潮湿时,相对较大量的木炭沉积在美国康涅狄格州的林斯利塘,而在全新世较早和较暖和较干燥的时间段中,烟灰更丰富。当全新世初期,由于北方森林被局部灭绝,通过气候转变,燃料的供应量增加,因此最高的烟尘质量累积率(MARs)出现了。这些随时间的变化与炭和煤烟形成途径的不同有关,炭和煤烟的形成途径受燃烧效率的控制。这项研究提供了一种区分古野火重建中的阴燃与火焰燃烧的方法。我们的结果表明,气候和燃料负荷控制着不同类型的野火的发生,而降水可能起关键作用。

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