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泥炭地水文与碳释放:为何小尺度过程至关重要。

Peatland hydrology and carbon release: why small-scale process matters.

作者信息

Holden Joseph

机构信息

University of Leeds Earth and Biosphere Institute, School of Geography Leeds LS2 9JT, UK.

出版信息

Philos Trans A Math Phys Eng Sci. 2005 Dec 15;363(1837):2891-913. doi: 10.1098/rsta.2005.1671.

Abstract

Peatlands cover over 400 million hectares of the Earth's surface and store between one-third and one-half of the world's soil carbon pool. The long-term ability of peatlands to absorb carbon dioxide from the atmosphere means that they play a major role in moderating global climate. Peatlands can also either attenuate or accentuate flooding. Changing climate or management can alter peatland hydrological processes and pathways for water movement across and below the peat surface. It is the movement of water in peats that drives carbon storage and flux. These small-scale processes can have global impacts through exacerbated terrestrial carbon release. This paper will describe advances in understanding environmental processes operating in peatlands. Recent (and future) advances in high-resolution topographic data collection and hydrological modelling provide an insight into the spatial impacts of land management and climate change in peatlands. Nevertheless, there are still some major challenges for future research. These include the problem that impacts of disturbance in peat can be irreversible, at least on human time-scales. This has implications for the perceived success and understanding of peatland restoration strategies. In some circumstances, peatland restoration may lead to exacerbated carbon loss. This will also be important if we decide to start to create peatlands in order to counter the threat from enhanced atmospheric carbon.

摘要

泥炭地覆盖了超过4亿公顷的地球表面,储存了全球土壤碳库三分之一到二分之一的碳。泥炭地长期从大气中吸收二氧化碳的能力意味着它们在调节全球气候方面发挥着重要作用。泥炭地还可以减轻或加剧洪水。气候变化或管理方式的改变会改变泥炭地的水文过程以及泥炭表面上下水的流动路径。正是泥炭中的水的流动驱动着碳的储存和通量。这些小规模过程可能通过加剧陆地碳释放而产生全球影响。本文将描述在理解泥炭地环境过程方面取得的进展。高分辨率地形数据收集和水文建模方面的最新(以及未来)进展为洞察泥炭地土地管理和气候变化的空间影响提供了依据。然而,未来研究仍面临一些重大挑战。这些挑战包括泥炭地受到干扰的影响可能是不可逆的这一问题,至少在人类时间尺度上是这样。这对泥炭地恢复策略的预期成效和理解都有影响。在某些情况下,泥炭地恢复可能会导致碳损失加剧。如果我们决定开始创建泥炭地以应对大气碳增加带来的威胁,这一点也将很重要。

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