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首页> 外文期刊>Science of the total environment >Can nutrient uptake by Carex counteract eutrophication in fen peatlands?
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Can nutrient uptake by Carex counteract eutrophication in fen peatlands?

机译:Carex可以营养营养吸收抑制芬兰的富营养化吗?

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摘要

Ground- and surface-water-fed peatlands (i.e., fens) of temperate Europe face high anthropogenic nutrient loads from atmospheric deposition, agricultural catchment areas, and from peat decomposition, if drained. As a result, nitrogen loads may exceed a fen's natural nutrient removal capacity, leading to increased eutrophication of adjacent water bodies. Therefore, it is important to address possible means to decrease a fen's nutrient load, including nutrient uptake by fen plants. To assess how much fen plants can contribute to nutrient removal by uptake, nutrient stocks of above- and below-ground biomass need to be quantified. Therefore, we investigated nitrogen, phosphorous, and potassium uptake capacities of sedges (Carex species), which are common dominants in fen plant communities. We grew specimens of five Carex species with varying preferences in nutrient availability under controlled, different nutrient levels. We show that Carex above-ground biomass harvest can remove up to one third of a system's total nitrogen even at high loads of about 40 g nitrogen m~(-2). Species-specific differences in biomass production, rather than preferences in nutrient availability under natural conditions, were drivers of standing nutrient stocks: Highly productive species, i.e., C. acutiformis and C. rostrata, had highest nutrient standing stocks across all nutrient levels. Amounts of nutrients stored in shoots increased almost linearly with increasing nutrient levels, whereas below-ground nutrient stocks species-specifically increased, saturated, or decreased, with increasing nutrient levels. As a rough estimate, depending on the species, 6-16 cycles of annual above-ground harvest would suffice to decrease nitrogen concentrations from the highest to the lowest level used in this study. Overall, our results indicate that Carex biomass harvest can be an efficient means to counteract anthropogenic nitrogen eutrophication in fens.
机译:温带欧洲的地面和地面水喂养的泥炭地(即葫芦)面临高度沉积,农业集水区区域的高人为营养负荷,如果排水,从泥炭分解。结果,氮负荷可能超过芬的天然营养消除能力,导致相邻水体的富营养化。因此,重要的是解决降低FEN营养负荷的可能手段,包括葫芦植物的营养吸收。评估植物可以通过摄取营养去除的养分,需要量化上述生物量和地下生物量的营养股。因此,我们研究了盐(Carex物种)的氮,磷和钾摄取能力,这是芬植物社区的常见主导体。我们在受控的不同营养水平下,在营养可用性下具有不同偏好的五种Carex物种。我们表明,即使在约40g氮气m〜(2)的高负荷下,Carex上面的地上生物质收获也可以去除最多三分之一的系统总氮。生物量产生的物种特异性差异,而不是自然条件下养分可用性的偏好,是营养股票的驱动因素:高效的物种,即C. Acutifiaris和C. rostrata,伴随所有营养水平的最高营养股。储存在芽中的营养素数量随着营养水平的增加而增加几乎是线性的,而低于地面营养量储备物种 - 特异性增加,饱和或减少,营养水平增加。作为粗略估计,根据物种,6-16个年度循环的年度收获将足以降低来自本研究中使用的最高水平的氮浓度。总体而言,我们的结果表明,Carex BioMass Harvest可以是抵消霜中的人为氮富营养化的有效手段。

著录项

  • 来源
    《Science of the total environment》 |2021年第1期|147276.1-147276.7|共7页
  • 作者单位

    Experimental Plant Ecology Institute of Botany and Landscape Ecology University of Greifswald partner in the Greifswald Mire Centre Germany;

    Experimental Plant Ecology Institute of Botany and Landscape Ecology University of Greifswald partner in the Greifswald Mire Centre Germany;

    Ecosystem Management Research Group Department of Biology University of Antwerp Belgium KWR Water Research Institute Nieuwegein The Netherlands;

    Experimental Plant Ecology Institute of Botany and Landscape Ecology University of Greifswald partner in the Greifswald Mire Centre Germany;

    Ecohydrology & Biogeochemistry Group Institute of Landscape Ecology University of Munster Germany;

    Department of Ecology and Environmental Conservation Institute of Environmental Biology Faculty of Biology University of Warsaw Poland;

    Department of Ecology and Environmental Conservation Institute of Environmental Biology Faculty of Biology University of Warsaw Poland;

    Experimental Plant Ecology Institute of Botany and Landscape Ecology University of Greifswald partner in the Greifswald Mire Centre Germany Department of Physical Geography and Geoecology Faculty of Science Charles University Prague Czech Republic;

    Department of Ecology and Environmental Conservation Institute of Environmental Biology Faculty of Biology University of Warsaw Poland;

    Department of Ecology and Environmental Conservation Institute of Environmental Biology Faculty of Biology University of Warsaw Poland Department of Plant Ecology Faculty of Biology University of Gdansk Poland;

    Experimental Plant Ecology Institute of Botany and Landscape Ecology University of Greifswald partner in the Greifswald Mire Centre Germany;

    Institute of Botany and Landscape Ecology University of Greifswald partner in the Greifswald Mire Centre Germany;

    Experimental Plant Ecology Institute of Botany and Landscape Ecology University of Greifswald partner in the Greifswald Mire Centre Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ecosystem restoration; Nitrogen; Stoichiometry; Phosphorous; Nutrient removal; Paludiculture;

    机译:生态系统恢复;氮;化学计量;磷;营养去除;洋化学;

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