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The transport and accumulation of pyrogenic black carbon in recently burned watersheds and implications for water quality

The transport and accumulation of pyrogenic black carbon in recently burned watersheds and implications for water quality
最近燃烧的流域中热解黑碳的迁移和积累及其对水质的影响
批准号:
1349361
负责人:
Daniel Cadol
金额:
$8.96万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-05-01 至 2016-08-31

项目摘要

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中文摘要
翻译
自1950年代以来,森林火灾的强度和频率有所增加,预计由于过去的火灾管理战略、气候变化和土地使用的变化,森林火灾的强度和频率将继续增加。黑碳(BC),以煤烟和焦炭的形式,是由有机物的不完全燃烧产生的,并通过野火后的降雨和洪水事件在整个下游山谷和水道中运输和重新沉积。野火产生的黑碳可能对水质产生负面和积极的影响。例如,在短期内,它可能污染饮用水供应,并产生对水生生物有害的缺氧条件。但是,在景观上产生的BC沉积物可以作为碳汇,并可以通过吸附作用隔离大量的污染物和重金属。该项目将研究北方新墨西哥州最近两次野火的影响,目的是了解野火后流域中BC的运输,积累和停留时间,以及这些BC沉积物的环境意义。黑碳将在燃烧区、燃烧下游和未受野火影响的地区的土壤中进行测量。将在两个夏季季风季节前后采集样本,预计届时将发生迁移,以了解迁移和积累率。实验室分析将测量土壤样品中所含的几种重金属和燃烧副产品污染物的数量,以及土壤中BC成分的百分比。进一步的分析将量化土壤中BC吸附和隔离这些污染物的最大能力。黑碳之所以重要,至少有三个原因:全球碳循环、污染物封存和土壤肥力。传统上,BC被认为是一种化学稳定的碳形式,有人建议将BC作为一种改良剂添加到土壤中可以作为碳汇。然而,最近的研究发现,BC从土壤中去除的速度比以前想象的要快。研究人员发现大量的BC溶解在河水中,这可能意味着通过土壤的水溶解了一些BC。含硼沉积物的侵蚀和迁移是硼从土壤中去除的另一种方式,但这一机制受到的关注较少。这项工作将有助于量化碳循环中这一知之甚少的组成部分。这些发现预计将特别适用于利用易发生火灾的森林流域作为饮用水来源的地区,美国西南部大部分地区都是这种情况。作为城市水源的集水区土壤中存在的黑碳可能为污染风险提供额外的缓冲。研究结果还将有助于管理人员制定火灾后恢复计划,并可能有助于化学品泄漏后的生态风险评估。这项工作将支持在MS水平的两个水文学家的培训,并提供了一个本科生从新墨西哥州矿业和技术研究所,一个西班牙裔服务机构的研究经验。
英文摘要
The intensity and frequency of forest fires have increased since the 1950s and are predicted to continue to increase as a result of past fire management strategies, climate change, and shifts in land use. Black carbon (BC), in the form of soot and char, is generated by incomplete combustion of organic matter and is transported and re-deposited throughout downstream valleys and waterways by post-wildfire rainfall and flood events. Black carbon from wildfires has the potential for both negative and positive impacts on water quality. In the short term, for example, it may foul drinking water supplies and generate of anoxic conditions that are harmful to aquatic life. But the BC deposits produced on the landscape may act as carbon sinks and may sequester significant quantities of contaminants and heavy metals through sorption. This project will study the impacts of two recent wildfires in northern New Mexico with the goal of understanding the transport, accumulation, and residence times of BC in post-wildfire watersheds, as well as the environmental significance of these BC deposits. Black carbon will be measured in soils within burned areas, downstream of burns, and in areas unaffected by wildfires. Samples will be taken before and after two summer monsoon seasons, when mobilization is expected to occur, in order to understand transport and accumulation rates. Laboratory analysis will measure the amount of several heavy metals and burn-byproduct contaminants contained within the soil samples, and what percentage is held within the BC component of the soils. Further analysis will quantify the maximum capacity of the BC in the soils to sorb out and sequester these contaminants. Black carbon is important to consider for at least three reasons: global carbon cycling, contaminant sequestration, and soil fertility. BC has traditionally been viewed as a chemically stable form of carbon, with suggestions that the addition of BC to soils as an amendment could serve as a carbon sink. Recent work, however, has found that BC is removed from the soil more rapidly than previously thought. Researchers have found significant quantities of BC dissolved in river water, which may mean that water percolating through the soil dissolves out some BC. Erosion and transport of BC-containing sediment is an additional way by which BC may be removed from soils, and this mechanism has received much less attention. This work will contribute to quantification of this poorly understood component of the carbon cycle. The findings are anticipated to be particularly relevant in areas that utilize fire-prone forest watersheds as a source of drinking water, which is the case for most of the southwestern US. The presence of black carbon in the soils of watersheds that are municipal water sources may provide an additional buffer to contamination risks. The results will also assist managers in developing post-fire recovery plans and may also be useful for ecological risk assessment following chemical spills. This work will support the training of two hydrologists at the MS level and provide a research experience for one undergraduate from New Mexico Institute of Mining and Technology, a Hispanic serving institution.
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会议论文
NSF-BSF: Monitoring bedload transport: Advancing seismic and acoustic surrogate methods in ephemeral channels
国内基金
海外基金
葡萄茋类物质积累与氧应激反应偶联机制研究
  • 批准号:
    31160058
  • 项目类别:
    地区科学基金项目
  • 资助金额:
    48.0万元
  • 批准年份:
    2011
  • 负责人:
    张波
  • 依托单位:
厌氧真菌对瘤胃乳酸产生菌群及其L型和D型乳酸积累的影响
  • 批准号:
    30371041
  • 项目类别:
    面上项目
  • 资助金额:
    20.0万元
  • 批准年份:
    2003
  • 负责人:
    朱伟云
  • 依托单位: