Collaborative Research: Long-term changes in peatland C fluxes and the interactive roles of soil climate, vegetation, and redox supply in governing anaerobic microbial activity
Collaborative Research: Long-term changes in peatland C fluxes and the interactive roles of soil climate, vegetation, and redox supply in governing anaerobic microbial activity
批准号:
1354007
负责人:
Merritt Turetsky
金额:
$14.64万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-08-01 至 2021-07-31
中文摘要
北方泥炭地储存了世界上大部分(30%)的土壤碳,鉴于其在高纬度地区的优势,预计将以全球速度的两倍经历变暖。因此,泥炭地的变暖很有可能对全球气候产生强烈的反馈,如果它导致分解速度加快,导致这种碳释放到大气中。我们目前对泥炭地碳循环的看法表明,大部分分解发生在地下水位上方薄而富氧的泥炭层中。 一旦碳被转移到更深的饱和泥炭层,由于低温和低氧条件抑制分解,碳的分解率被认为是可以忽略不计的。 然而,地下水位以下的泥炭土壤碳可以被微生物利用各种生物化学过程分解,这些过程不依赖于自由氧,但能量效率较低。这些替代的代谢途径可能导致甲烷(CH4)的产生,这是一种比二氧化碳(CO2)具有更高温室效应的微量气体。 因此,地下水位的位置传统上被用作泥炭地整体分解率和甲烷产量的预测指标。 然而,阿拉斯加泥炭地地下水位操纵实验(阿拉斯加泥炭地实验,或APEX)的初步结果表明,分解和由此产生的二氧化碳产量可能高于更深的泥炭层比以前认为的。这项研究的目标是调查深层泥炭层中碳分解的驱动因素,并利用这些信息通过改善泥炭地对全球气候影响的未来预测来造福社会。这项研究还将为本科生和研究生的培训提供宝贵的机会,并通过与校园LTER计划的合作,教育学生了解气候变化的驱动因素和影响。 在过去8年中,APEX研究通过监测土壤湿度和温度、植物组成和生物量以及生态系统CO2和CH4通量的变化,研究了土壤气候和植被变化对泥炭地碳循环的作用。该实验包括一个析因设计的地下水位处理(包括降低地下水位,以模拟干燥,提高地下水位,以模拟洪水)和表层土壤变暖在阿拉斯加分。 这项研究揭示了我们对泥炭地微生物分解过程的理解存在差距,并为该项目中正在测试的假设提供了背景。 特别是,以前的工作表明,不同的植物功能类型与地下水位在确定好氧和厌氧泥炭分解。 此外,植物功能类型之间的凋落物化学变化被假设为泥炭地分解率的主要驱动因素。总的来说,这些因素表明,植被的变化产生显着的控制泥炭地的厌氧分解过程,但迄今为止,这些影响还没有得到充分的研究,部分原因是很难在方法上分离植被从水文控制分解。该项目正在进行的新实验旨在为一系列控制泥炭地碳稳定性的因素提供机械见解,包括植被的作用。
英文摘要
Northern peatlands store a large proportion (30%) of the world's soil carbon, and given their predominance at high latitudes are expected to experience warming at twice the global rate. Warming of peatlands, therefore, has high potential to create strong feedbacks to global climate if it causes accelerated rates of decomposition that result in the release of this carbon to the atmosphere. Our current view of carbon cycling in peatlands suggests that the majority of decomposition occurs in the thin, oxygen-rich peat layer above the water table. Once carbon is transferred to deeper, saturated peat layers, decomposition rates of carbon are thought to be negligible due to cold temperatures and low-oxygen conditions that inhibit decomposition. Peat soil carbon below the water table can, however, be decomposed by microbes using a variety of biochemical processes that don't rely on free oxygen, but are energetically less efficient. These alternative metabolic pathways can result in the production of methane (CH4), a trace gas with much higher greenhouse warming potential than carbon dioxide (CO2). Thus, the position of the water table has traditionally been used as a predictor of overall decomposition rates and methane production in peatlands. However, preliminary results from an Alaskan peatland water-table manipulation experiment (the Alaska Peatland Experiment, or APEX) suggest that decomposition and resulting CO2 production may be higher in deeper peat layers than previously thought. The goals of this research are to investigate the factors driving decomposition of carbon in deep peat layers, and to use this information to benefit society by improving future projections of the impact of peatlands on global climate. This study will also provide valuable opportunities for the training of undergraduate and graduate students, and to educate school children on the drivers and impacts of climate change through collaboration with the Schoolyard LTER program. Over the past 8 years, research on APEX has examined the role of changing soil climate and vegetation on peatland carbon cycling through monitoring changes in soil moisture and temperature, plant composition and biomass, and ecosystem CO2 and CH4 fluxes. The experiment includes a factorial design of water table treatments (including lowering the water table to simulate drying, and raising the water table to simulate flooding) and surface soil warming in an Alaskan fen. This research has revealed gaps in our understanding of microbial decomposition processes in peatlands, and provides the context for the hypotheses being tested in this project. In particular, previous work suggests different plant functional types interact with water table in determining aerobic and anaerobic peat decomposition. In addition, variation in litter chemistry between plant functional types is hypothesized to be a major driver of decomposition rates in peatlands. Collectively, these factors suggest that changes in vegetation exert significant control over anaerobic decomposition processes in peatlands, but to date these effects have not been studied adequately, in part because it is difficult methodologically to separate vegetation from hydrologic controls on decomposition. New experiments being conducted in this project are designed to provide mechanistic insights into a suite of factors, including the role of vegetation, that control stabilization of peatland carbon.
期刊论文(2)
专著(0)
科研奖励(0)
会议论文
Consequences of Increased Variation in Peatland Hydrology for Carbon Storage: Legacy Effects of Drought and Flood in a Boreal Fen Ecosystem
碳储存泥炭地水文变化增加的后果:北方沼泽生态系统中干旱和洪水的遗留影响
DOI:
10.3389/feart.2020.577746
发表时间:
2021
期刊:
Frontiers in Earth Science
影响因子:
2.9
作者:
[Kane, Evan S., Dieleman, Catherine M., Rupp, Danielle, Wyatt, Kevin H., Rober, Allison R., Turetsky, Merritt R.]
通讯作者:
Turetsky, Merritt R.
DOI:
10.1007/s10021-019-00460-z
发表时间:
2020-09-01
期刊:
ECOSYSTEMS
影响因子:
3.7
作者:
[Euskirchen, E. S., Kane, E. S., Turetsky, M. R.]
通讯作者:
Turetsky, M. R.
LTREB: Collaborative Research: Long-term changes in peatland C fluxes and the interactive role of altered hydrology, vegetation, and redox supply in a changing climate
-
批准号:2011277
-
项目类别:Continuing Grant
-
资助金额:$7.5万
-
财政年份:2020
-
负责人:Merritt Turetsky
-
依托单位:
Collaborative Research: Soil Climate and its Control on Wetland Carbon Balance in Interior Boreal Alaska: Experimental Manipulation of Thermal and Moisture Regimes
-
批准号:0830997
-
项目类别:Continuing Grant
-
资助金额:$52.92万
-
财政年份:2008
-
负责人:Merritt Turetsky
-
依托单位:
Collaborative Research: Soil Climate and its Control on Wetland Carbon Balance in Interior Boreal Alaska: Experimental Manipulation of Thermal and Moisture Regimes
-
批准号:0724412
-
项目类别:Continuing Grant
-
资助金额:$66.28万
-
财政年份:2007
-
负责人:Merritt Turetsky
-
依托单位:
国内基金
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