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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >The oxygen minimum zone (OMZ) off Chile as intense source of CO2 and N2O
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The oxygen minimum zone (OMZ) off Chile as intense source of CO2 and N2O

机译:智利以外的最小氧气区(OMZ)是CO2和N2O的强烈来源

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The oxygen minimum zones (OMZs) are recognized as intense sources of N2O greenhouse gas (GHG) and could also be potential sources Of CO2, the most important GHG for the present climate change. This study evaluates, for one of the most intense and shallow OMZ, the Chilean East South Pacific OMZ, the simultaneous N2O and CO2 fluxes at the air-sea interface. Four cruises (2000-2002) and 1 year of monitoring (21 degrees-30 degrees-36 degrees S) off Chile allowed the determination of the CO2 and N2O concentrations at the sea surface and the analysis of fluxes variations associated with different OMZ configurations. The Chilean OMZ area can be an intense GHG oceanic local source of both N2O and CO2. The mean N2O fluxes are 5-10 times higher than the maximal previous historical source in an OMZ open area as in the Pacific and Indian Oceans. For CO2, the mean fluxes are also positive and correspond to very high oceanic sources. Even if different coupling and decoupling between N2O and CO2 are observed along the Chilean OMZ, 65% of the situations represent high CO2 and/or N2O sources. The high GHG sources are associated with coastal upwelling transport of OMZ waters rich in N2O and probably also in CO2, located at a shallow depth. The integrated OMZ role on GHG should be better considered to improve our understanding of the past and future atmospheric CO2 and N2O evolutions. (C) 2008 Elsevier Ltd. All rights reserved.
机译:最低氧区(OMZs)被认为是N2O温室气体(GHG)的强烈来源,也可能是潜在的CO2来源,而CO2是当前气候变化最重要的温室气体。这项研究评估了智利南部东南太平洋最强,最浅的OMZ之一,即海-气界面处同时产生的N2O和CO2通量。智利外的四次航行(2000年至2002年)和1年的监测(南纬21度至30度至36度)允许确定海面的CO2和N2O浓度,并分析与不同OMZ配置相关的通量变化。智利的OMZ地区可能是N2O和CO2的强烈温室气体海洋本地来源。在太平洋和印度洋中,平均N2O通量比OMZ开放区域中以前的最大历史来源高5-10倍。对于二氧化碳,平均通量也为正,对应于非常高的海洋来源。即使在智利的OMZ区域观察到N2O和CO2之间的耦合和去耦合不同,其中65%的情况表示CO2和/或N2O来源较高。高温室气体源与OMZ水的沿海上升流有关,该水富含N2O,也可能含有CO2,位于浅深度。应该更好地考虑OMZ在温室气体中的综合作用,以增进我们对过去和未来大气中CO2和N2O演变的理解。 (C)2008 Elsevier Ltd.保留所有权利。

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