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RAPID: Collaborative Research: Mobilization and transport of contaminants to groundwater in flood-impacted unconnected communities in South Texas following Hurricane Hanna

RAPID: Collaborative Research: Mobilization and transport of contaminants to groundwater in flood-impacted unconnected communities in South Texas following Hurricane Hanna
RAPID:合作研究:汉纳飓风后德克萨斯州南部受洪水影响的不连通社区的污染物动员和输送到地下水
批准号:
2043344
负责人:
Dorina Murgulet
金额:
$3.48万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2020
资助国家:
美国
项目状态:
已结题
起止时间:
2020-11-01 至 2022-09-30

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中文摘要
翻译
由于主要飓风登陆的可能性可能增加,迫切需要了解它们对脆弱沿海地区的影响。暴雨和海洋风暴潮引发的洪水可能会破坏基础设施,并导致污水和其他有毒化学物质排放到环境水域。洪水还可能进入地下水系统,并将污染物转移到曝光点。特别脆弱的是沿海社区,这些社区缺乏基本的水基础设施,有许多潜在的水污染物来源。这项研究将收集飓风汉娜在德克萨斯州南部海岸登陆后洪水泛滥的沿海地区的地下水样本。它将产生必要的数据,以增进对遭受灾难性洪水的沿海地下水系统中微生物和化学污染物对水质和移动的影响的了解,以及重大风暴事件登陆后污染物的输入。结果将提供数据,使科学家、公共官员和社区成员了解沿海地区极端风暴事件引发的洪水后污染物的传播和分布。这些信息对于预测和减轻威胁、提高复原力和获得清洁水以及最大限度地减少对沿海社区健康的影响至关重要。这项研究将吸引来自服务不足人群的社区成员,与利益攸关方分享成果,并支持和培训STEM领域代表不足群体的学生。它将进一步为学生在具有挑战性的环境下进行快速反应研究做好准备。这项工作的主要目标是增进对极端事件对遭受洪灾的沿海地区的水质和污染的直接影响的了解和了解。据推测,洪水事件期间的污染物输入可以作为示踪剂,在风暴发生后立即进行监测,以获得关于地下水系统的知识。该项目将收集数据,以评估在德克萨斯州南部登陆后受沿海洪水影响的地下水系统中的污染,确定飓风洪水后污染物在地下水中的路径和停留时间,并量化风暴后含水层的污染物补给和运输。拟议的工作包括从几个洪灾社区收集地下水、径流和河流/湖泊样本,并使用分子和化学分析方法测量和监测飓风汉娜后5个月期间微生物污染、微量金属、硝酸盐、碳氢化合物、杀虫剂和其他有机污染物的存在和浓度水平。这些数据将提供有关飓风汉娜登陆后受灾地区的空间和时间集中度的信息。然后,可以设计缓解和预防努力,以明确解决地下水污染问题。这项研究的信息将与外联伙伴和利益攸关方分享,并用来编写关于已查明污染物的健康风险和含水层保护的情况说明书。这可能会转化为美国其他受到洪水影响并面临类似问题的社区。通过数据传播,该项目将教育和吸引主要来自服务不足人口的社区。该项目将支持和培训来自代表性不足群体的学生,并帮助扩大对STEM的参与。该奖项反映了NSF的法定使命,并通过使用基金会的智力优势和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
With a potential increase in the occurrence of major hurricanes making landfall, there is an immediate need to understand their impacts in vulnerable coastal areas. Flooding from heavy rain and ocean storm surge may damage infrastructure and result in the release of sewage and other toxic chemicals into environmental waters. Flood water could also enter groundwater systems and mobilize contaminants to points of exposure. Particularly vulnerable are coastal communities that lack basic water infrastructure and have many potential sources of water pollutants. This study will collect groundwater samples from coastal areas that were flooded after Hurricane Hanna made landfall on the south Texas coast. It will generate necessary data to advance understanding on the impacts to water quality and movement of microbial and chemical contaminants in coastal groundwater systems subjected to catastrophic flooding and input of contaminants after landfall of major storm events. Results will provide data than can inform scientists, public officials, and community members on the spread and distribution of contaminants after flooding from extreme storm events in coastal areas. This information is essential for predicting and mitigating threats, increasing resilience and access to clean water and minimizing health impacts in coastal communities. The study will engage community members from underserved populations, share results with stakeholders, and support and train students from underrepresented groups in STEM fields. It will further prepare students on rapid-response research under challenging circumstances. The primary objective of this work is to advance knowledge and understanding about the immediate impacts to water quality and contamination in coastal areas subjected to flooding as a result of extremes events. It is hypothesized that contaminant inputs during flooding events can serve as tracers that can be monitored immediately following storms to gain knowledge about groundwater systems. The project will collect data to assess contamination in groundwater systems impacted by coastal flooding after the landfall of a major Hurricane in south Texas, determine the pathways and residence times of contaminants in groundwater following flooding by hurricanes, and quantify post-storm aquifer recharge and transport of contaminants. The proposed work entails collecting groundwater, runoff and river/lake samples from several flooded communities and use molecular and chemical analytical methods to measure and monitor presence and concentration levels of microbial contamination, trace metals, nitrates, hydrocarbons, pesticides and other organic pollutants over a 5-months period following Hurricane Hanna. The data will provide information on spatial and temporal concentrations in relation to flooded areas after the landfall of Hurricane Hanna. Mitigation and prevention efforts can then be designed to explicitly address groundwater contamination. Information from this study will be shared with outreach partners and stakeholders and used to develop factsheets on the health-risks of the identified contaminants and aquifer protection. This can translate to other communities in the US that have been affected by flooding and are facing similar issues. Through data dissemination, the project will educate and engage predominantly communities from underserved populations. The project will support and train students from underrepresented groups and help to broaden participation in STEM.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
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会议论文
DISES : Through the Prism of Groundwater Pollution: The Interplay of Extreme Wet Events, Socio-Economic Well-Being, and Polity in Unincorporated Communities
  • 批准号:
    2307996
  • 项目类别:
    Standard Grant
  • 资助金额:
    $159.99万
  • 财政年份:
    2023
  • 负责人:
    Dorina Murgulet
  • 依托单位:
Stakeholder-Guided Environmental Science
  • 批准号:
    2152131
  • 项目类别:
    Standard Grant
  • 资助金额:
    $200.0万
  • 财政年份:
    2022
  • 负责人:
    Dorina Murgulet
  • 依托单位:
MRI: Acquisition of a Leading-edge Portable Geoprobe System with Subsurface Sampling, Logging and Imaging capabilities for Geoscience Research and Education
  • 批准号:
    2117219
  • 项目类别:
    Standard Grant
  • 资助金额:
    $33.08万
  • 财政年份:
    2021
  • 负责人:
    Dorina Murgulet
  • 依托单位:
海外基金