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Discontinuities in soil strength contribute to destabilization of nutrient-enriched creeks

机译:土壤强度的不连续性会导致营养丰富的小河不稳定

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摘要

In a whole-ecosystem, nutrient addition experiment in the Plum Island Sound Estuary (Massachusetts), we tested the effects of nitrogen enrichment on the carbon and nitrogen contents, respiration, and strength of marsh soils. We measured soil shear strength within and across vegetation zones. We found significantly higher soil percent organic matter, carbon, and nitrogen in the long-term enriched marshes and higher soil respiration rates with longer duration of enrichment. The soil strength was similar in magnitude across depths and vegetation zones in the reference creeks, but showed signs of significant nutrient-mediated alteration in enriched creeks where shear strength at rooting depths of the low marsh–high marsh interface zone was significantly lower than at the sub-rooting depths or in the creek bank vegetation zone. To more closely examine the soil strength of the rooting (10–30 cm) and sub-rooting (40–60 cm) depths in the interface and creek bank vegetation zones, we calculated a vertical shear strength differential between these depths. We found significantly lower differentials in shear strength (rooting depth < sub-rooting depths) in the enriched creeks and in the interface zones. The discontinuities in the vertical and horizontal shear strength across the enriched marshes may contribute to observed fracturing and slumping occurring in the marsh systems. Tide gauge data also showed a pattern of rapid sea level rise for the period of the study, and changes in plant distribution patterns were indicative of increased flooding. Longer exposure times to nutrient-enriched waters and increased hydraulic energy associated with sea level rise may exacerbate creek bank sloughing. Additional research is needed, however, to better understand the interactions of nutrient enrichment and sea level rise on soil shear strength and stability of tidal salt marshes.
机译:在梅花岛声音河口(马萨诸塞州)的整个生态系统中,进行营养添加实验,我们测试了氮富集对沼泽土壤碳,氮含量,呼吸作用和强度的影响。我们测量了植被区内外的土壤剪切强度。我们发现,在长期富集的沼泽中,土壤有机质,碳和氮的百分比显着提高,并且随着呼吸时间的延长,土壤呼吸速率也更高。在参考小河中,不同深度和植被区域的土壤强度在大小上相似,但是在富营养小河中表现出明显的养分介导的变化,其中低沼泽-高沼泽交界处生根深度的剪切强度显着低于土壤。分生根深处或小溪岸植被区。为了更仔细地检查界面和小溪岸植被带中生根深度(10–30 cm)和次生根深度(40–60 cm)的土壤强度,我们计算了这些深度之间的垂直剪切强度差。我们发现,在小溪和界面区域中,剪切强度的差异显着较低(生根深度<亚生根深度)。富集沼泽的垂直和水平剪切强度的不连续性可能有助于观察到在沼泽系统中发生的压裂和塌陷。潮汐仪数据也显示了在研究期间海平面迅速上升的模式,而植物分布模式的变化表明洪水泛滥。暴露于营养丰富的水中的时间更长,以及与海平面上升相关的水力能量的增加,可能加剧小溪河岸的塌陷。但是,还需要进行其他研究,以更好地了解养分富集和海平面上升对土壤剪切强度和潮汐盐沼稳定性的相互作用。

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