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首页> 外文期刊>Deep-Sea Research >Barium In Twilight Zone Suspended Matter As A Potential Proxy For Particulate Organic Carbon Remineralization: Results For The North Pacific
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Barium In Twilight Zone Suspended Matter As A Potential Proxy For Particulate Organic Carbon Remineralization: Results For The North Pacific

机译:暮光区的钡悬浮物可能成为颗粒状有机碳再矿化的潜在替代物:北太平洋的结果

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This study focuses on the fate of exported organic carbon'in the twilight zone at two contrasting environments in the North Pacific: the oligotrophic ALOHA site (22°45'N, 158°W; Hawaii; studied during June-July 2004) and the mesotrophic Subarctic Pacific K2 site (47°N, 161 °W; studied during July-August 2005). Earlier work has shown that non-lithogenic, excess particulate Ba (Ba_(xs)) in the mesopelagic water column is a potential proxy of organic carbon remineralization. In general, Ba_(xs) contents were significantly larger at K2 than at ALOHA. At ALOHA, the Ba_(xs) profiles from repeated sampling (five casts) showed remarkable consistency over a period of three weeks, suggesting that the system was close to being at steady state. In contrast, more variability was observed at K2 (six casts sampled), reflecting the more dynamic physical and biological conditions prevailing in this environment. While for both sites Ba_(xs) concentrations increased with depth, at K2 a clear maximum was present between the base of the mixed layer at around 50 and 500 m, reflecting production and release of Ba_(xs). Larger mesopelagic Ba_(xs) contents and larger bacterial production in the twilight zone at the K2 site indicate that more material was exported from the upper mixed layer for bacterial degradation deeper, compared to the ALOHA site. Furthermore, application of a published transfer function [Dehairs, F., Shopova, D., Ober, S., Veth, C, Goeyens, L, 1997. Particulate barium stocks and oxygen consumption in the Southern Ocean mesopelagic water column during spring and early summer: relationship with export production. Deep-Sea Research II 44(1-2), 497-516] relating oxygen consumption to the observed Ba_(xs) data indicated that the latter were in good agreement with bacterial respiration, calculated from bacterial production. These results corroborate earlier findings highlighting the potential of Ba_(xs) as a proxy for organic carbon remineralization.rnThe range of POC remineralization rates calculated from twilight zone excess particulate Ba contents also compared well with the depth dependent POC flux decrease as recorded by neutrally buoyant sediment traps, except in one case (out of four). This discrepancy could indicate that differences in sinking velocities cause an uncoupling of the processes occurring in the fine suspended particle pool from those affecting the larger particle pool which sustains the vertical flux, thus rendering comparison between both approaches risky.
机译:这项研究的重点是北太平洋两个相对环境下暮光带中出口有机碳的命运:贫营养的ALOHA站点(北纬22°45',北纬158°;夏威夷; 2004年6月至7月研究)和中营养亚太平洋太平洋K2站点(北纬47°,西经161°; 2005年7月至8月研究)。较早的工作表明,中弹性水柱中的非岩性,过量的Ba(Ba_(xs))是有机碳再矿化的潜在替代物。通常,K2处的Ba_(xs)含量显着大于ALOHA处。在ALOHA,重复采样(五个转换)的Ba_(xs)曲线在三周的时间内显示出显着的一致性,这表明该系统已接近稳定状态。相反,在K2处观察到更多的变异性(采样了六个铸模),反映出在这种环境中普遍存在的更动态的物理和生物学条件。尽管两个地点的Ba_(xs)浓度均随深度增加,但在K2处,混合层底部之间约50和500 m处存在明显的最大值,反映了Ba_(xs)的产生和释放。与ALOHA位点相比,K2位点的暮光区中生弹性Ba_(xs)含量更高,细菌产生量更大,表明从上层混合层输出的材料更多,可更深地降解细菌。此外,应用已公开的传递函数[Dehairs,F.,Shopova,D.,Ober,S.,Veth,C,Goeyens,L,1997。春季和春季,南大洋中弹性水柱中钡的存量和氧气消耗量。初夏:与出口生产的关系。 Deep-Sea Research II 44(1-2),497-516]将耗氧量与观察到的Ba_(xs)数据相关联,表明后者与根据细菌产量计算出的细菌呼吸非常吻合。这些结果证实了先前的发现,突出了Ba_(xs)作为有机碳再矿化的潜力.rn从暮光区过量的Ba含量计算出的POC再矿化率范围也与中性浮力所记录的深度相关POC通量下降进行了比较沉积物捕集器,一种情况除外(四分之一)。这种差异可能表明,下沉速度的差异会导致细悬浮颗粒池中发生的过程与影响较大颗粒池(保持垂直通量)的过程解耦,从而使两种方法之间的比较具有风险。

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