首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Coastal iron and nitrate distributions during the spring and summer upwelling season in the central California Current upwelling regime
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Coastal iron and nitrate distributions during the spring and summer upwelling season in the central California Current upwelling regime

机译:加利福尼亚中部春季和夏季上升季节沿海铁和硝酸盐的分布

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Distributions of iron and nitrate in the central California Current System upwelling regime (cCCS) from 34 to 41°N were determined during cruises in May 2010 and August 2011. High spatial and temporal resolution data for dissolved Fe and NO3- (nitrate+nitrite) in the cCCS from this study greatly expands upon previous studies that were narrower in scope (e.g., focused on just the Monterey Bay region). Shelf sediments from mid-shelf mud belts in this region provide the dominant source of Fe, and there are areas in the cCCS where insufficient Fe is upwelled to accompany elevated levels of other macronutrients (nitrate, phosphate, silicate) to fuel extensive diatom blooms. Surface dissolved Fe concentrations were related to continental shelf width and upwelling strength, and surface Fe concentrations tended to be lower in the late summer than early spring. We present extensive benthic boundary layer (BBL) dissolved and leachable particulate Fe data from both seasons in the mid-shelf region along the central California coast. Leachable particulate Fe concentrations were strongly related to the width of the mid-shelf mud belts (i.e., the continental shelf between the 50 and 90. m isobaths). Dissolved Fe concentrations in the BBL over the mid-shelf were generally highest in wide mud belt areas as well as in areas with very low dissolved oxygen concentrations but did not show a clear seasonal trend. Evidence for probable Fe limitation in upwelled waters was found by using surface dissolved Fe:. NO3- ratios and the estimated specific growth rate of coastal diatoms based on either Fe or NO3- concentrations. Several coastal upwelling regions with only moderate to narrow continental shelves (Pt. Arena to Cape Mendocino and the Big Sur Coast) exhibited evidence for Fe limitation in both the spring and summer upwelling seasons.
机译:在2010年5月和2011年8月的航行中,确定了加利福尼亚中部电流系统上升区(cCCS)从34°N到41°N时铁和硝酸盐的分布。溶解的Fe和NO3-(硝酸盐+亚硝酸盐)的高时空分辨率数据本研究在cCCS中的应用大大扩展了先前范围较窄的研究(例如,仅针对蒙特雷湾地区)。来自该区域中层架子泥带的层状沉积物是铁的主要来源,在cCCS中有一些区域,其中铁含量不足,无法补充其他大量营养素(硝酸盐,磷酸盐,硅酸盐),从而为硅藻的大量开花提供燃料。表面溶解的铁浓度与大陆架宽度和上升强度有关,夏末的表面铁浓度往往比早春的低。我们介绍了加利福尼亚中部沿海中部地区两个季节广泛的底栖边界层(BBL)溶解和可浸出的颗粒状铁数据。可浸出的颗粒铁浓度与中层泥带的宽度(即等深线50至90 m的大陆架)的宽度密切相关。 BBL在中层架上的溶解铁浓度通常在宽阔的泥土带地区以及溶解氧浓度非常低的地区最高,但没有明显的季节性趋势。通过使用表面溶解的Fe :,发现了上升流水中可能的Fe限制的证据。基于Fe或NO3-的浓度,NO3-的比例和沿海硅藻的估计比增长率。几个仅具有中度至狭窄大陆架的沿海上升区(Pt。Arena至Mendocino角和大苏尔海岸)在春季和夏季上升季节都显示出铁含量受限的证据。

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