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首页> 外文期刊>Geophysical Research Letters >Measuring terrestrial fluxes of methyl chloride and methyl bromide using a stable isotope tracer technique - art. no. 2103
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Measuring terrestrial fluxes of methyl chloride and methyl bromide using a stable isotope tracer technique - art. no. 2103

机译:使用稳定的同位素示踪技术测量甲基氯和甲基溴的地面通量-技术没有。 2103

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摘要

Atmospheric methyl chloride (CH3Cl) and methyl bromide (CH3Br), compounds involved in the destruction of stratospheric ozone, are simultaneously produced and consumed by the terrestrial biosphere. Here we present a stable isotope incubation technique using (CH3Cl)-C-13 and (CH3Br)-C-13 as tracers to simultaneously determine production and consumption fluxes in boreal forest soils from Alaska, USA. Measured uptake rates are consistent with previously reported boreal soil results for CH3Br and show a CH3Cl:CH3Br molar consumption ratio of 40:1. Boreal forest soils appear to produce small amounts of these methyl halides as well, but at rates that are negligible in their global budgets. This isotope tracer technique can be applied to laboratory studies of plants and other soils and to field measurements where disturbances to the system can be minimized. [References: 35]
机译:陆地生物圈同时生产和消耗大气氯甲烷(CH3Cl)和甲基溴(CH3Br),这些物质与平流层臭氧的破坏有关。在这里,我们介绍一种稳定的同位素孵化技术,使用(CH3Cl)-C-13和(CH3Br)-C-13作为示踪剂,同时确定美国阿拉斯加北方森林土壤中的生产和消耗通量。测得的吸收速率与先前报道的CH3Br北方土壤测量结果一致,并显示CH3Cl:CH3Br摩尔消耗比为40:1。北方森林土壤似乎也产生少量的这些甲基卤化物,但其全球预算中的比率可忽略不计。这种同位素示踪技术可用于植物和其他土壤的实验室研究,以及可将对系统的干扰降至最低的现场测量。 [参考:35]

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