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首页> 外文期刊>Ecological Applications >Rapid peat development beneath created, maturing mangrove forests: ecosystem changes across a 25-yr chronosequence
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Rapid peat development beneath created, maturing mangrove forests: ecosystem changes across a 25-yr chronosequence

机译:在创造的快速泥炭开发,成熟的红树林森林:生态系统跨越25年的时间变化

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摘要

Mangrove forests are among the world's most productive and carbon-rich ecosystems. Despite growing understanding of factors controlling mangrove forest soil carbon stocks, there is a need to advance understanding of the speed of peat development beneath maturing mangrove forests, especially in created and restored mangrove forests that are intended to compensate for ecosystem functions lost during mangrove forest conversion to other land uses. To better quantify the rate of soil organic matter development beneath created, maturing mangrove forests, we measured ecosystem changes across a 25-yr chronosequence.We compared ecosystem properties in created, maturing mangrove forests to adjacent natural mangrove forests.We also quantified site-specific changes that occurred between 2010 and 2016. Soil organic matter accumulated rapidly beneath maturing mangrove forests as sandy soils transitioned to organic-rich soils (peat). Within 25 yr, a 20-cm deep peat layer developed. The time required for created mangrove forests to reach equivalency with natural mangrove forests was estimated as (1) <15 yr for herbaceous and juvenile vegetation, (2) ~55 yr for adult trees, (3) ~25 yr for the upper soil layer (0–10 cm), and (4) ~45–80 yr for the lower soil layer (10–30 cm). For soil elevation change, the created mangrove forests were equivalent to or surpassed natural mangrove forests within the first 5 yr. A comparison to chronosequence studies from other ecosystems indicates that the rate of soil organic matter accumulation beneath maturing mangrove forests may be among the fastest globally. In most peatland ecosystems, soil organic matter formation occurs slowly (over centuries, millennia); however, these results show that mangrove peat formation can occur within decades. Peat development, primarily due to subsurface root accumulation, enables mangrove forests to sequester carbon, adjust their elevation relative to sea level, and adapt to changing conditions at the dynamic lan
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  • 来源
    《Ecological Applications》 |2020年第4期|共12页
  • 作者单位

    U.S. Geological Survey Wetland and Aquatic Research Center 700 Cajundome Blvd Lafayette Louisiana 70506 USA;

    U.S. Geological Survey Wetland and Aquatic Research Center 700 Cajundome Blvd Lafayette Louisiana 70506 USA;

    Department of Marine Sciences University of Georgia 325 Sanford Drive Athens Georgia 30602 USA;

    USEPA Environmental Effects Research Laboratory Gulf Ecology Division/ORD 1 Sabine Island Drive Gulf Breeze Florida 32561-5299 USA;

    USEPA Environmental Effects Research Laboratory Gulf Ecology Division/ORD 1 Sabine Island Drive Gulf Breeze Florida 32561-5299 USA;

    Department of Environmental Sciences Macquarie University North Ryde Sydney New SouthWales 2109 Australia;

    U.S. Geological Survey Wetland and Aquatic Research Center 700 Cajundome Blvd Lafayette Louisiana 70506 USA;

    U.S. Geological Survey Wetland and Aquatic Research Center 700 Cajundome Blvd Lafayette Louisiana 70506 USA;

    USEPA Environmental Effects Research Laboratory Gulf Ecology Division/ORD 1 Sabine Island Drive Gulf Breeze Florida 32561-5299 USA;

    USEPA Environmental Effects Research Laboratory Gulf Ecology Division/ORD 1 Sabine Island Drive Gulf Breeze Florida 32561-5299 USA;

    USEPA Environmental Effects Research Laboratory Gulf Ecology Division/ORD 1 Sabine Island Drive Gulf Breeze Florida 32561-5299 USA;

    USEPA Environmental Effects Research Laboratory Gulf Ecology Division/ORD 1 Sabine Island Drive Gulf Breeze Florida 32561-5299 USA;

    U.S. Geological Survey Wetland and Aquatic Research Center 700 Cajundome Blvd Lafayette Louisiana 70506 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境生物学;生态学(生物生态学);
  • 关键词

    chronosequence; coastal wetland; ecosystem development; functional equivalency; mangrove forest; peat; sea-level rise; soil organic matter;

    机译:一致性;沿海湿地;生态系统发展;功能等效;红树林;泥炭;海平面;土壤有机质;

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