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首页> 外文期刊>Marine Geology >Biogeochemistry and dynamics of particulate organic matter in a shallow-water hydrothermal field (Kueishantao Islet, NE Taiwan)
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Biogeochemistry and dynamics of particulate organic matter in a shallow-water hydrothermal field (Kueishantao Islet, NE Taiwan)

机译:浅水热水场中颗粒化学化学和颗粒状有机物动态(Kueishantao Islet,Ne Taiwan)

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The particulate organic matter (POM) of shallow-water hydrothermal fields has been studied in the context of food web reconstruction, but the processes governing its biogeochemistry and dynamics are poorly explored. Here, we investigate the POM in the Kueishantao hydrothermal field using chemical and hydrodynamic approaches. The depletion of total suspended matter, lower C/N ratios, and higher carbon isotopic values of particulate organic carbon (delta C-13(POC)) in the vertical plumes relative to values derived from Si-based models were attributed to the hydraulic sorting of the vented particles, which tend to have more N and C-13 in the fine fraction. The particulate organic carbon (POC), unlike the total suspended matter, was enriched in the vertical plumes and explained by physicochemical processes rather than biological addition. The POC-enriched plume-top water was found to be a better endmember than the vent fluids to explain particle mixing in the lateral plume. Physical mixing played a steering role in shaping the particle chemistry of the lateral plumes, but markedly C-13-enriched POC was still observable in several near-vent, low-to-intermediate-Si plume waters, implying locally enhanced primary production of at least 0.1-0.4 mg C/m(3)/h. The presence of eddies, confirmed by flow field measurements, should have contributed to the detection of biogeochemical anomalies via extending the retention time of plume water to 1-2 h. The dominating mixing process resulted in decoupling between the delta C-13(POC) signatures and carbonate chemistry in this shallow-water hydrothermal plume.
机译:在食品Web重建的背景下研究了浅水水热场的颗粒状有机物(POM),但探索了其生物地球化学和动态的过程。在这里,我们研究了使用化学和流体动力学方法的Kueishantao水热场中的POM。在垂直羽柱中颗粒有机碳(Delta C-13(Poc)的颗粒状有机碳(Delta C-13(Poc)的较高碳同位素值的耗竭归因于液压分类通气颗粒倾向于在细部分中具有更多N和C-13。与总悬浮物不同的颗粒有机碳(POC)在垂直羽毛中富集,并通过物理化学方法而不是生物加入解释。发现富含POC的羽流水,比排气流体解释横向羽流中的颗粒混合,是更好的端部。物理混合在塑造侧缘的颗粒化学方面发挥了转向作用,但在几个近代的近代的低对 - 中间Si羽流水域中仍然可观察到明显的C-13富集的PoC,这意味着局部增强的主要生产至少0.1-0.4mg c / m(3)/ h。通过流场测量确认的漩涡的存在应该有助于通过将羽流水的保留时间延伸至1-2小时来促进生物态化异常的检测。主导的混合过程导致在该浅水热水羽流中的Delta C-13(PoC)签名和碳酸盐化学之间去耦。

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