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Effect of nutrient loading on biogeochemical and microbial processes in a New England salt marsh.

机译:营养盐负荷对新英格兰盐沼中生物地球化学和微生物过程的影响。

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Coastal marshes represent an important transitional zone between uplands and estuaries. One important function of marshes is to assimilate nutrient inputs from uplands, thus providing a buffer for anthropogenic nutrient loads. We examined the effects of nitrogen (N) and phosphorus (P) fertilization on biogeochemical and microbial processes during the summer growing season in a Spartina patens (Aiton (Muhl.)) marsh in the Narragansett Bay National Estuarine Research Reserve on Prudence Island (RI). Quadruplicate 1 m2 plots were fertilized with N and P additions, N-only, P-only, or no additions. N-only addition significantly stimulated bacterial production and increased pore water NH4+ and NO3- concentrations. Denitrification rates ranged from 0 to 8 mmol m-2 day-1. Fertilization had no apparent effect on soil oxygen consumption or denitrification measured in the summer in intact cores due to high core-to-core variation. P fertilization led to increased pore water dissolved inorganic phosphorus (DIP) concentrations and increased DIP release from soils. In contrast the control and N-only treatments had significant DIP uptake across the soil-water interface. The results suggest that in the summer fertilization has no apparent effect on denitrification rates, stimulates bacterial productivity, enhances pore water nutrient concentrations and alters some nutrient fluxes across the marsh surface..
机译:沿海沼泽代表着高地和河口之间的重要过渡带。沼泽的一项重要功能是吸收来自高地的养分输入,从而为人为养分的负载提供缓冲。我们在保育岛(RI)的纳拉甘西特湾国家河口研究保护区的斯帕蒂娜·帕滕斯(Aiton(穆尔))沼泽中,研究了夏季生长季节中氮(N)和磷(P)施肥对生物地球化学和微生物过程的影响。 )。使用N和P添加,仅N,仅P或不添加的方式对一式四份的1平方米地块施肥。仅氮的添加显着刺激了细菌的产生,并增加了孔隙水中NH4 +和NO3-的浓度。第1天的反硝化速率为0至8 mmol m-2。由于芯间差异很大,施肥对完整芯中夏季的土壤耗氧量或反硝化作用没有明显影响。磷肥导致增加的孔隙水溶解无机磷(DIP)浓度并增加土壤中DIP的释放。相比之下,对照和仅N处理在土壤-水界面的DIP吸收量很大。结果表明,夏季施肥对反硝化率没有明显影响,不会刺激细菌生产力,提高孔隙水养分浓度并改变整个沼泽地表层的养分通量。

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