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首页> 外文期刊>Estuaries and coasts >Temporal Variability in Ecological Stoichiometry and Material Exchange in a Tidally Dominated Estuary (North Inlet, South Carolina) and the Impact on Community Nutrient Status
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Temporal Variability in Ecological Stoichiometry and Material Exchange in a Tidally Dominated Estuary (North Inlet, South Carolina) and the Impact on Community Nutrient Status

机译:生态化学计量和材料交换中的时间变异,在整个主导的河口(北入口,南卡罗来纳州)和对社区营养状况的影响

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摘要

Across the coastal zone, rates of carbon and nutrient exchange are defined by the spatiotemporal heterogeneity of individual estuarine systems. Elemental stoichiometry provides a mechanism for simplifying overlapping physical, chemical, and biological drivers into proxies that can be used to compare and monitor estuarine biogeochemistry. To this end, the seasonal and tidal variability of estuarine stoichiometry was examined over an annual cycle in North Inlet (NI), South Carolina. Surface samples for dissolved and particulate carbon (C), nitrogen (N), and phosphorus (P) were collected every 20days (August 2014 to August 2015) over a semi-diurnal tidal cycle. Dissolved nutrient flux estimates of an individual tidal creek were also made. Overall, the results demonstrated the dominance of seasonal versus tidal forcing on water column C:N:P stoichiometry. This seasonal behavior mediated the relative exchange of N and P into and out of the tidal creek and influenced the nutrient status index (NSI) of NI plankton communities. These communities were largely N deficient with the magnitude of this deficiency impacted by assumptions of inorganic versus organic plankton P demand and nutrient supply. Persistent N deficiency appeared to help drive the net import of N, while temporary P surplus likely drives its seasonal export. Combined, these results indicate that material delivery must be considered on seasonal time frames, as net annual fluxes do not reflect the short-term deliveries of C and nutrients into nearshore ecosystems.
机译:在沿海地区,碳和营养交换率由个体偏卤素系统的时空异质性定义。元素化学计量提供了一种用于将重叠的物理,化学品和生物驱动器简化到可用于比较和监测酯生物地球化学的代理中的机构。为此,在南卡罗来纳州北入口(NI)的年度周期中检查了雌曲调化学计量的季节性和潮汐变异。每20天(2014年8月至2015年8月)每20天收集用于溶解和颗粒碳(C),氮(N)和磷(P)的表面样品。还制造了个体潮汐小溪的溶解营养磁通量估计。总体而言,结果表明季节性与潮汐迫使水柱C:N:P化学计量。这种季节性行为介导N和P的相对交流进出潮汐小溪,影响了NI普拉克斯群落的营养状况指数(NSI)。这些社区主要是缺乏这种缺陷因无机假设影响的缺陷的大小,而有机浮游生物P需求和营养供应影响。持久性N缺乏似乎有助于推动N的净进口,而临时P剩余可能会推动其季节性出口。结合,这些结果表明,必须在季节性时间框架上考虑物料递送,因为净年度助势不会将C和营养素的短期交付到近岸生态系统中。

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