首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Net, actual, and potential sediment-water interface NH_4~+ fluxes in the northern Gulf of Mexico (NGOMEX): Evidence for NH_4~+ limitation of microbial dynamics
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Net, actual, and potential sediment-water interface NH_4~+ fluxes in the northern Gulf of Mexico (NGOMEX): Evidence for NH_4~+ limitation of microbial dynamics

机译:墨西哥湾北部(NGOMEX)净,实际和潜在的沉积物-水界面NH_4〜+通量:NH_4〜+限制微生物动力学的证据

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摘要

A new approach, combining ~(15)NH_4~+ isotope dilution and continuous-flow techniques, provided estimates of "actual" and "net" NH_4~+ flux and sediment NH_4~+ demand (SAD) at the sediment-water interface (SWI) of sites in the northern Gulf of Mexico (NGOMEX). The sites included a hypoxic site (C6), two sites with intermediate oxygen levels (B7 and F5), and a normoxic site (CT). Control cores without isotope addition and other cores from the same site treated with ~(15)NH_4~+ labeled overflowing water differentiated between net and actual regeneration flux and actual vs. potential uptake flux of NH_4~+. Experiments were conducted in 2008 before (July) and after (September) two successive hurricanes (Gustav and Ike) and in January and August, 2009. Actual regeneration was significantly higher than net flux at most sites. Net flux did not differ significantly in most sites/dates, but the actual regeneration, and the actual and potential uptake, showed temporal and spatial variation; the flux at the hypoxic site was more active than non-hypoxic sites. SAD, the difference between potential and actual NH_4~+ uptake flux, was higher at the hypoxic site than at non-hypoxic sites before and after the hurricanes in 2008 and during the hypoxia season in 2009. SAD related negatively to bottom water DO values. Conclusions: (1) net flux often underestimated actual regeneration, (2) hurricane activity decreased N dynamics, and (3) microbial N limitation status at the hypoxic site related to NH_4~+ removal processes that were independent of oxygen (e.g., anaerobic heterotrophic uptake or anammox). These results indicate a rather consistent NH_4~+ demand at the SWI during the hypoxic season and suggest that reduced nitrogen may limit microbial dynamics in the region.
机译:结合〜(15)NH_4〜+同位素稀释和连续流技术的新方法,提供了沉积物-水界面的“实际”和“净” NH_4〜+通量和沉积物NH_4〜+需求量(SAD)的估算值( SWI)位于墨西哥湾北部(NGOMEX)的站点。这些位点包括一个缺氧位点(C6),两个具有中等氧水平的位点(B7和F5)和一个常氧位点(CT)。没有同位素添加的对照岩心和其他用〜(15)NH_4〜+标记溢水处理过的同一地点的岩心,在净再生通量和实际再生通量之间以及NH_4〜+的实际与潜在吸收通量之间进行了区分。在2008年之前(7月)和之后(9月)以及连续两次飓风(古斯塔夫和艾克)以及2009年1月和8月进行了实验。在大多数站点,实际再生显着高于净通量。在大多数地点/日期,净通量没有显着差异,但是实际的再生以及实际和潜在的吸收显示出时空变化。低氧位点的通量比非低氧位点的活性高。 SAD,即潜在的和实际的NH_4〜+吸收通量之差,在低氧位点高于2008年飓风前后,2009年低氧季节的低氧位点。SAD与底水DO值负相关。结论:(1)净通量经常低估了实际再生;(2)飓风活动降低了氮的动力学;(3)与氧气无关的NH_4〜+去除过程相关的低氧位点的微生物氮限制状态(例如厌氧异养)摄取或厌氧消化)。这些结果表明在低氧季节SWI的NH_4〜+需求相当稳定,表明氮的减少可能会限制该地区的微生物动态。

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