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The role of sulfur in the carbon balance of boreal peatlands.

机译:硫在北方泥炭地碳平衡中的作用。

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摘要

With the exception of photosynthesis, carbon dioxide (CO2) emissions from soils exceed all other terrestrial-atmospheric carbon fluxes. Due to the magnitude of this soil-to-atmosphere CO2 flux, and the great mineralization capabilities associated with this large soil carbon pool, any increases in soil carbon fluxes have the potential to provide a large positive feedback to global warming. This dissertation examines the role of atmospheric sulfur deposition on anaerobic carbon fluxes from peatland soils, which contain one-third of the world's soil carbon pool. The first objective of this dissertation was to determine the contribution of sulfate reduction to anaerobic carbon mineralization in peatlands across a regional atmospheric sulfur deposition gradient. The second objective was to determine the fate of currently retained sulfur in peatlands under changing atmospheric sulfur depositional regimes, using stable sulfur isotopes as a tool.; We determined the relationship between rates of sulfate reduction, and CO2 and CH4 production in peatlands spanning a wide atmospheric sulfur gradient in central Alberta, Canada and Červené Blato and Oceán bog, The Czech Republic. Results from this study suggest that although peatlands are important global sources of CH4, methanogenesis is responsible for a small proportion of anaerobic carbon cycling in these ecosystems.; We further tested the hypothesis that in peatlands receiving low sulfate inputs, methane production will predominate during anaerobic carbon mineralization. We hypothesized that with sulfate amendments, anaerobic carbon mineralization at Bleak Lake Bog would be governed by sulfate reduction. In opposition to our hypotheses, sulfate amendments did not increase rates of sulfate reduction, increase CO2 production, or decrease CH4 production.; We conducted a peat transplant experiment to evaluate the impact of atmospheric sulfur deposition on sulfur cycling processes in soil under alternate scenarios of increasing and decreasing atmospheric sulfur deposition. We found that a substantial fraction of the sulfur that enters a peatland via atmospheric deposition is retained in the peat, and this fraction increases with a concomitant increase in rates of atmospheric sulfur deposition. Implications for total sulfur pools, extrapolated to the long term, may be a gain of total sulfur under a scenario of both increasing and decreasing rates of sulfate reduction.
机译:除光合作用外,土壤排放的二氧化碳(CO 2 )超过了所有其他陆地大气碳通量。由于这种土壤-大气CO 2 通量的大小,以及与此庞大的土壤碳库相关的强大矿化能力,任何土壤碳通量的增加都有可能提供较大的正反馈导致全球变暖。本文研究了大气硫沉积在泥炭地土壤厌氧碳通量中的作用,泥炭地土壤占世界土壤碳库的三分之一。本文的首要目的是确定整个区域泥炭中硫酸盐还原对厌氧碳矿化的贡献。第二个目标是使用稳定的硫同位素作为工具,确定在变化的大气硫沉积制度下泥炭地中目前残留的硫的命运。我们确定了加拿大艾伯塔省中部和&carcaron;ervenéBlato和美国的泥炭地中宽广的硫梯度下,硫酸盐还原速率与CO 2 和CH 4 产量之间的关系。 Oceán沼泽,捷克共和国。这项研究的结果表明,尽管泥炭地是CH 4 的重要全球来源,但甲烷生成是这些生态系统中一小部分厌氧碳循环的原因。我们进一步检验了以下假设:在接受低硫酸盐输入的泥炭地中,厌氧碳矿化过程中甲烷的产生将占主导地位。我们假设通过硫酸盐的修正,Bleak Lake Bog的厌氧碳矿化将受硫酸盐还原的控制。与我们的假设相反,硫酸盐修正并没有增加硫酸盐还原的速度,增加CO 2 的产生或减少CH 4 的产生。我们进行了泥炭移植实验,以评估在增加和减少大气硫沉积的替代方案下,大气硫沉积对土壤中硫循环过程的影响。我们发现,通过大气沉积进入泥炭地的大部分硫保留在泥炭中,并且随着大气硫沉积速率的增加而增加。在硫酸盐还原速率增加和降低的情况下,从长期上推断总硫藏可能意味着总硫的增加。

著录项

  • 作者

    Vile, Melanie Ann.;

  • 作者单位

    University of Notre Dame.;

  • 授予单位 University of Notre Dame.;
  • 学科 Biogeochemistry.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 176 p.
  • 总页数 176
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物地球化学、气体地球化学;
  • 关键词

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