1996 - 2013年斯瓦尔巴群岛Ny-Ålesund观测大气甲烷摩尔分数和碳同位素比值的长期变化

S. Morimoto, R. Fujita, S. Aoki, D. Goto, T. Nakazawa
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引用次数: 12

摘要

利用1991年和1996年以来每周采集的空气样本,对斯瓦尔巴群岛Ny-Ålesund(78°55′n, 11°56′e)的CH4摩尔分数及其碳同位素比值(δ13C)进行了系统观测。CH4摩尔分数在1999年之前呈长期上升趋势,在2000 - 2006年之间停滞不前,2006年之后呈上升趋势。δ13C在2006年以前呈单调上升趋势,2006年以后呈下降趋势。在假定大气CH4寿命不变的情况下,通过比较CH4摩尔分数和δ13C的变化率,认为在Ny-Ålesund观测到的CH4摩尔分数的时间停顿是由于微生物和化石燃料部门释放的CH4减少所致。另一方面,2006年后CH4的增加可能归因于微生物CH4释放的增加。本文提供的CH4和δ13C数据将有助于澄清它们在北极大气中的时间变化,并为全球CH4收支提供额外的约束条件。
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Long-term variations of the mole fraction and carbon isotope ratio of atmospheric methane observed at Ny-Ålesund, Svalbard from 1996 to 2013
Abstract We have conducted systematic observations of the CH4 mole fraction and its carbon isotope ratio (δ13C) at Ny-Ålesund, Svalbard (78°55′N, 11°56′E) using air samples collected weekly since 1991 and 1996, respectively. The CH4 mole fraction showed long-term increase until 1999, stagnation between 2000 and 2006, followed by an increase after 2006. On the other hand, δ13C showed monotonous increase until 2006 and decrease after 2006. By comparing the rates of change in the CH4 mole fraction and δ13C under the assumption that the atmospheric CH4 lifetime is constant, it is suggested that the temporal pause of the CH4 mole fraction observed at Ny-Ålesund is attributed to reductions of CH4 release from the microbial and fossil fuel sectors. On the other hand, the increase in CH4 after 2006 could be ascribed to an increase in microbial CH4 release. The CH4 and δ13C data presented in this paper would be useful for clarifying their temporal variations in the Arctic atmosphere, as well as providing additional constraints on the global CH4 budget.
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