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Carbon chemistry: organic compounds

机译:碳化学:有机化合物

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The distribution of participate Fe (pFe), suspended paniculate matter (SPM), and other paniculate trace metals were investigated in Terra Nova Bay as part of CDW Effects on glaciaL mElting and on Bulk of Fe in the Western Ross sea (CELEBeR) and Plankton biodiversity and functioning of the Ross Sea ecosystems in a changing Southern Ocean (P-ROSE) projects. Variable concentrations of SPM (0.09-97 mg L~(-1) ), pFe (0.51-8.70 nM) and other trace metals were found in the Antarctic Surface waters (AASW) layer, where the addition of meltwater contributed to the pool with both lithogenic and biogenic forms. The deeper layer of the water column was occupied by High Salinity Shelf Water (HSSW) and Terra Nova Bay Ice Shelf Water (TISW) encompassing glacial water as confirmed by the lightest δ~(18) O measured values. The concentration of pFe in TISW (11.7 ± 9.2 nM) was higher than in HSSW samples (5.55 ± 4.43 nM), suggesting that the drainage of material released from glaciers surrounding the area is relevant in terms of pFe contribution. Paniculate Fe/AI and Mn/Al ratios were substantially in excess compared with the mean crustal ratios. Microscopic analyses confirmed that more labile Fe oxyhydroxides and authigenic MnO_2 phases were present together with biogenic sinking material. Future expected increasing melt rates of these glaciers enlarge Fe input, thus having a greater role in supplying iron and counteracting the reductions in sea ice cover around Terra Nova Bay.
机译:在Terra Nova Bay中研究了参与Fe(PFE),悬浮的捕捞物质(SPM)和其他对痕量痕量金属的分布,作为CDW对冰川融化的一部分以及西罗海(Celeber)和浮游生物的大部分Fe南海(P-玫瑰)项目中罗斯海洋生态系统的生物多样性与运作。 SPM的可变浓度(0.09-97mg L〜(-1)),PFE(0.51-8.70nm)和其他痕量金属在南极表面水(AASW)层中发现,其中添加熔融水有助于游泳池岩性和生物形式。水柱的深层层由高盐度货物水(HSSW)和Terra Nova湾冰块水(TISW)占据,包括由最轻δ〜(18)O测量值确认的冰川水。 TISW(11.7±9.2nm)中PFE的浓度高于HSSW样品(5.55±4.43纳米),表明该地区周围冰川中释放的材料的排水在PFE贡献方面是相关的。与平均的地壳比相比,胰腺Fe / Ai和Mn / Al比率基本上含量超过。微观分析证实,与生物沉降材料一起存在更多不稳定的Fe羟基氧化物和Aheyigenic MnO_2相。未来预期这些冰川的熔体率扩大了FE投入,因此在供应熨斗中具有更大的作用,并抵消了在Terra Nova湾周围的海冰覆盖的减少。

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    《Oceanographic Literature Review》 |2021年第2期|283-285|共3页
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