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A combination of δ~(18)O and salinity data was employed to explore the freshwater balance in the Canada Basin in summer 2008.The Arctic river water and Pacific river water were quantitatively distinguished by using different saline end-members.The fractions of total river water,including the Arctic and Pacific river water,were high in the upper 50 m and decreased with depth as well as increasing latitude.In contrast,the fraction of Pacific river water increased gradually with depth but decreased toward north.The inventory of total river water in the Canada Basin was higher than other arctic seas,indicating that Canada Basin was a main storage region for river water in the Arctic Ocean.The fraction of Arctic river water was higher than Pacific river water in the upper 50 m while the opposite was true below 50 m.As a result,the inventories of Pacific river water were higher than those of Arctic river water,demonstrating that the Pacific inflow through the Bering Strait is the main source of freshwater in the Canada Basin.Both the river water and sea-ice melted water in the permanent ice zone were more abundant than those in the region with sea-ice just melted.The fractions of total river water,Arctic river water,Pacific river water increased northward to the north of 82°N,indicating an additional source of river water in the permanent ice zone of the northern Canada Basin.A possible reason for the extra river water in the permanent ice zone is the lateral advection of shelf waters by the Trans-Polar Drift.The penetration depth of sea-ice melted waters was less than 30 m in the southern Canada Basin,while it extended to 125 m in the northern Canada Basin.The inventory of seaice melted water suggested that sea-ice melted waters were also accumulated in the permanent ice zone,attributing to the trap of earlier melted waters in the permanent ice zone via the Beaufort Gyre.  相似文献   
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本研究研制了由气压棒、气体控制阀、不锈钢管冷阱、石英毛细管冷阱、杜瓦瓶、化学阱等构成的N2O预富集装置,通过扩展GasbenchⅡ功能控制冷阱的升降,改造气体回路、进样针和样品盘,实现N2O的预富集以及GasbenchⅡ自动进样与IRMS联机测定.通过将海水中的硝酸盐经化学方法转化成N2O,建立了海水硝酸盐氮、氧同位素的分析方法.研究表明,所建立方法对海水硝酸盐氮、氧同位素的分析具有很好的精度,硝酸盐δ15N、δ18O及峰面积的相对标准偏差分别小于1%、3%和5%.对采自南极普里兹湾海水样品中硝酸盐氮、氧同位素的分析结果与文献报道值吻合,也与海水硝酸盐氮、氧同位素组成的变化规律相一致,证明所建立的技术方法可成功运用于海水硝酸盐氮、氧同位素的分析.  相似文献   
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随着海上行动愈发频繁和激烈,海上安全事故频发,深海打捞救援日趋重要。以美军 F-35C 战机南海坠机为案例,详细梳理深海打捞相关设备和流程,重点分析影响深海打捞作业的海洋环境要素,并使用业务化产品对比分析 F-35 战机 3 次坠海时海洋环境参数的异同,最后对加强遂行深海打捞任务的能力建设提出建议。  相似文献   
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