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The effect of beaver pond drainage on carbon dioxide and methane fluxes in a Canadian temperate peatland.

机译:海狸池塘排水对加拿大温带泥炭地二氧化碳和甲烷通量的影响。

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摘要

Beaver ponds are important parts of peatland landscapes and have high fluxes of CO2 and CH4. This study was undertaken in Mer Bleue Bog, Ontario, to determine the response of a beaver pond to drainage (lowering by 25 cm) as a sink or source of carbon. Plant distribution was changed in response to a new water table gradient. Each vegetation community and the remaining beaver pond were sampled for fluxes of CO2 and CH4 from mid-April to end-November, 1999, one year after the water table was lowered.;A flow-through chamber system was used to measure CO2 flux from vegetated sites. Mean daily CO2 flux ranged from 0.4--1.6 g CO2-C M-2 (positive denoting uptake from the atmosphere). Variations in CO2 flux amongst the sites along the gradient could not be related to differences in plant species composition, peat temperature, or water table. The mean daily CO2 emission measured by a static floating chamber on the pond area was -24.1 g CO2-C m-2.;A closed chamber was used to measure CH4 on vegetated sites. Daily CH4 fluxes ranged from 1 to -159 mg CH4-C m-2, increasing from the beaver pond margin to the open water surface. The water table explained 83% of the seasonal average CH 4 flux variability and the vegetation added another 11%. The mean daily CH4 flux measured by a static floating chamber on the pond area was -54 mg CH4-C m-2.;The seasonal measurements were integrated into an areal estimate of CO 2 and CH4 flux for the beaver pond area prior to and after drainage. The beaver pond area sequestered 96 g m-2 before drainage (104 g CO2-C m-2 and -8 g CH 4-C m-2), and the same area more than doubled the uptake to 231 g m-2 after being drained (233 g CO 2-C m-2 and -3 g CH4-C m -2).
机译:海狸池塘是泥炭地景观的重要组成部分,并且具有较高的CO2和CH4通量。这项研究是在安大略省的Mer Bleue Bog进行的,旨在确定海狸池塘作为碳汇或碳源对排水(下降25厘米)的响应。响应于新的地下水位梯度,改变了植物分布。降低地下水位一年后,从1999年4月中旬到11月底,对每个植被群落和剩余的海狸池塘进行CO2和CH4流量通量采样;采用流通池系统测量植被繁茂的地点。日平均CO2通量范围为0.4--1.6 g CO2-C M-2(正表示从大气中吸收)。沿梯度位置之间CO2通量的变化与植物物种组成,泥炭温度或地下水位的差异无关。通过静态浮箱在池塘区域测得的日平均CO2排放量为-24.1 g CO2-C m-2。;使用密闭箱测量植被区的CH4。每天的CH4通量范围从1到-159 mg CH4-C m-2,从海狸池塘边缘到开阔水面逐渐增加。地下水位解释了季节性平均CH 4通量变化的83%,植被增加了11%。静态浮池在池塘区域测得的日平均CH4通量为-54 mg CH4-C m-2。排水后。海狸池塘面积在排水前被隔离为96 g m-2(104 g CO2-C m-2和-8 g CH 4-C m-2),相同面积在吸收后被吸收到231 g m-2的两倍以上。排干(233 g CO 2-C m-2和-3 g CH4-C m -2)。

著录项

  • 作者

    Isernhagen, Birgit.;

  • 作者单位

    McGill University (Canada).;

  • 授予单位 McGill University (Canada).;
  • 学科 Physical Geography.;Biology Ecology.
  • 学位 M.Sc.
  • 年度 2002
  • 页码 99 p.
  • 总页数 99
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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