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首页> 外文期刊>Scientific reports. >The influence of hydrodynamic exposure on carbon storage and nutrient retention in eelgrass ( Zostera marina L.) meadows on the Swedish Skagerrak coast
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The influence of hydrodynamic exposure on carbon storage and nutrient retention in eelgrass ( Zostera marina L.) meadows on the Swedish Skagerrak coast

机译:水动力暴露对瑞典斯卡拉克海岸牛草(Zostera Marina L.)草甸碳储存和养分保留的影响

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Cold-temperate seagrass (Zostera marina) meadows provide several important ecosystem services, including trapping and storage of sedimentary organic carbon and nutrients. However, seagrass meadows are rapidly decreasing worldwide and there is a pressing need for protective management of the meadows and the organic matter sinks they create. Their carbon and nutrient storage potential must be properly evaluated, both at present situation and under future climate change impacts. In this study, we assessed the effect of wave exposure on sedimentary carbon and nitrogen accumulation using existing data from 53 Z. marina meadows at the Swedish west coast. We found that meadows with higher hydrodynamic exposure had larger absolute organic carbon and nitrogen stocks (at 0–25?cm depth). This can be explained by a hydrodynamically induced sediment compaction in more exposed sites, resulting in increased sediment density and higher accumulation (per unit volume) of sedimentary organic carbon and nitrogen. With higher sediment density, the erosion threshold is assumed to increase, and as climate change-induced storms are predicted to be more common, we suggest that wave exposed meadows can be more resilient toward storms and might therefore be even more important as carbon- and nutrient sinks in the future.
机译:冷温带海草(Zostera Marina)草甸提供了几种重要的生态系统服务,包括沉积有机碳和营养素的诱捕和储存。然而,海草草甸在全球范围内迅速下降,并且需要迫切需要草甸的保护性管理和他们创造的有机物质汇。目前,必须适当地评估其碳和营养储存潜力,并在未来的气候变化影响下进行适当评估。在这项研究中,我们评估了使用来自53 Z.Marina Meadows在瑞典西海岸的现有数据对沉积碳和氮气积累的影响。我们发现具有较高水动力暴露的草地具有较大的绝对有机碳和氮素股(在0-25℃深度)。这可以通过更曝光位点中的流体动力学诱导的沉积物压实来解释,导致沉积有机碳和氮的沉积物密度和较高的积累(每单位体积)增加。具有较高的沉积物密度,假设侵蚀阈值增加,随着气候变化引起的风暴预测更为常见,我们建议波暴露的草地可能对暴风雨更具弹性,因此可能更为重要,而且可能更为重要未来的营养水槽。

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