首页> 外文OA文献 >Temperature dependence of CO2-enhanced primary production in the European Arctic Ocean, supplement to: Holding, Johnna; Duarte, Carlos M; Sanz-Martín, Marina; Mesa, E; Arrieta, J M; Chierici, Melissa; Hendriks, Iris; García-Corral, L S; Regaudie-de-Gioux, A; Delgado, A; Reigstad, M; Wassmann, P; Agustí, Susana (2015): Temperature dependence of CO2-enhanced primary production in the European Arctic Ocean. Nature Climate Change, 5(12), 1079-1082
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Temperature dependence of CO2-enhanced primary production in the European Arctic Ocean, supplement to: Holding, Johnna; Duarte, Carlos M; Sanz-Martín, Marina; Mesa, E; Arrieta, J M; Chierici, Melissa; Hendriks, Iris; García-Corral, L S; Regaudie-de-Gioux, A; Delgado, A; Reigstad, M; Wassmann, P; Agustí, Susana (2015): Temperature dependence of CO2-enhanced primary production in the European Arctic Ocean. Nature Climate Change, 5(12), 1079-1082

机译:欧洲北冰洋地区二氧化碳对初级生产的温度依赖性,补充至:约翰娜控股公司; Duarte,Carlos M;桑兹·马丁(Sanz-Martín),玛丽娜(Marina);梅萨(Mesa); Arrieta,J M;梅利莎(Melissa)虹膜,亨德里克斯;加西亚科拉尔,路易斯安那州; Regaudie-de-Gioux,A;德尔加多,A;里格斯塔德,男; Wassmann,P; Sugusta,Agustí(2015年):欧洲北冰洋中二氧化碳对初级生产的温度依赖性。自然气候变化,5(12),1079-1082

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摘要

The Arctic Ocean is warming at two to three times the global rate and is perceived to be a bellwether for ocean acidification. Increased CO2 concentrations are expected to have a fertilization effect on marine autotrophs, and higher temperatures should lead to increased rates of planktonic primary production. Yet, simultaneous assessment of warming and increased CO2 on primary production in the Arctic has not been conducted. Here we test the expectation that CO2-enhanced gross primary production (GPP) may be temperature dependent, using data from several oceanographic cruises and experiments from both spring and summer in the European sector of the Arctic Ocean. Results confirm that CO2 enhances GPP (by a factor of up to ten) over a range of 145-2,099?µatm; however, the greatest effects are observed only at lower temperatures and are constrained by nutrient and light availability to the spring period. The temperature dependence of CO2-enhanced primary production has significant implications for metabolic balance in a warmer, CO2-enriched Arctic Ocean in the future. In particular, it indicates that a twofold increase in primary production during the spring is likely in the Arctic.
机译:北冰洋正以全球速度的两到三倍变暖,被认为是海洋酸化的领头羊。预计增加的CO2浓度会对海洋自养生物产生施肥作用,而较高的温度应导致浮游初级生产力的增加。但是,尚未同时评估北极初级生产中的变暖和二氧化碳增加情况。在这里,我们使用来自北冰洋欧洲部分地区几次海洋巡游的数据以及春季和夏季的实验,测试了对CO2增强的初级总产值(GPP)可能与温度有关的期望。结果证实,CO2可在145-2,099?atm的范围内提高GPP(最多可达10倍)。但是,只有在较低的温度下才能观察到最大的影响,并且受春季营养物和光的供应的限制。未来,CO2增强的初级生产对温度的依赖性将对温暖,富含CO2的北冰洋的代谢平衡产生重大影响。特别是,这表明北极地区春季的初级生产可能增加两倍。

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