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Beneath the Salt Marsh Canopy: Loss of Soil Strength with Increasing Nutrient Loads

机译:盐沼冠层下:养分含量增加,土壤强度下降

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Although the broadly observed increase in nutrient loading rates to coastal waters in the last 100 years may increase aboveground biomass, it also tends to increase soil metabolism and lower root and rhizome biomass—responses that can compromise soil strength. Fourteen different multiyear field combinations of nutrient amendments to salt marshes were made to determine the relationship between soil strength and various nitrogen, phosphorus, and nitrogen+phosphorus loadings. There was a proportional decline in soil strength that reached 35% in the 60- to 100-cm soil layer at the highest loadings and did not level off. These loading rates are equivalent to those in the flow path of the Caernarvon river diversion, a major wetland restoration project near New Orleans; 12% of the wetlands in the flow path were converted to open water in 2005. The increased nutrient loading from the Mississippi River watershed this century has also driven the formation of the low oxygen zone (the “Dead Zone”) that forms off the Louisiana–Texas shelf each summer. These results suggest that improving water quality in the watershed will aid the restoration of both offshore waters and coastal wetland ecosystems.
机译:尽管在过去100年中广泛观察到的养分向沿海水域的装载量增加可能会增加地上生物量,但它也往往会增加土壤代谢,降低根和根茎生物量,这会损害土壤强度。对盐沼进行了十四种不同的多年生养分改良组合,以确定土壤强度与各种氮,磷和氮磷含量之间的关系。在最高负荷下,在60至100厘米土壤层中,土壤强度成比例下降,达到35%,并且没有趋于平稳。这些负荷率与新奥尔良附近的大型湿地恢复工程卡那封河引水流径相等。流域中的湿地中有12%在2005年被转化为开放水域。本世纪密西西比河流域增加的养分负荷也促使形成了低氧区(“死区”),该低氧区在路易斯安那州附近形成。 –每年夏天的德克萨斯州货架。这些结果表明,改善流域的水质将有助于恢复近海和沿海湿地生态系统。

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