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NSERC Industrial Research Chair in Fractured Rock Contaminant Hydrology

NSERC Industrial Research Chair in Fractured Rock Contaminant Hydrology
NSERC 裂隙岩污染物水文学工业研究主席
批准号:
363783-2018
负责人:
Parker, BethBL
金额:
$18.21万
依托单位:
依托单位国家:
加拿大
项目类别:
Industrial Research Chairs
财政年份:
2022
资助国家:
加拿大
项目状态:
已结题
起止时间:
2022-01-01 至 2023-12-31

项目摘要

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中文摘要
翻译
沉积基岩中的地下水(即,基岩含水层)是加拿大和全球最重要的淡水来源;然而,由于各种各样的人类活动,许多这些含水层受到污染。氯化有机溶剂是地下水中发现的最常见的工业污染物。由于过度依赖于差的表征工具,关于地下条件如何影响这些污染物从源区域到受体的运动知之甚少。帕克博士和她的NSERC工业研究Chairon断裂岩石地下水污染(自2007年以来举行),已经克服了这些限制,使用新技术和详细的现场和实验室测量应用于真实的污染场地。帕克博士和她的研究小组表明,污染物通过岩石裂缝从源头迅速移动,但通过许多活跃的裂缝进入基岩孔隙,在那里它们被吸附到矿物质上,并由于自然发生的化学和微生物反应而缓慢降解。几十年后,羽毛变得静止不动,甚至退回到源头地区。未来五年的研究将使用测量和计算机建模的见解,以预测未来的条件和自然或增强修复的速度,以加快清理。研究结果将对世界范围内的沉积岩含水层有用,为有关地下水污染对供水威尔斯和生态系统的威胁以及如何保护两者的决策提供信息。这项工作使可靠的,具有成本效益的管理和污染场地的最终清理,并使加拿大人成为地下水科学,技术制造和资源保护的世界领导者。这是通过在现实世界的网站和改进的方法和技术,以保护对维持生命至关重要的全球资源,并支持生产食品和制造业实践学生培训来实现的。
英文摘要
Groundwater in sedimentary bedrock (i.e., bedrock aquifers) is the most important source of fresh water inCanada and globally; however, many of these aquifers are polluted due to a large variety of human activities.Chlorinated organic solvents are the most common industrial contaminant found in groundwater. Little isknown about how subsurface conditions affect movement of these contaminants from source areas to receptorsbecause of over-reliance on poor characterisation tools. Dr. Parker, with her NSERC Industrial Research Chairon Groundwater Contamination in Fractured Rock (held since 2007), has overcome these limitations using newtechnologies and detailed field and laboratory measurements applied to real contaminated sites. Dr. Parker andher research team show that pollutants move quickly from their source through rock fractures but are slowed byspreading into the bedrock pores accessed through many active fractures where they are sorbed to minerals andslowly degrade due to naturally occurring chemical and microbial reactions. Over many decades the plumesbecome stationary or even retreat back toward source areas. The next five years of research will usemeasurement and computer modeling insights to predict future conditions and rates of natural or enhancedremediation to hasten cleanup. Results will be useful for sedimentary rock aquifers worldwide, informingdecisions regarding groundwater contamination threats to water supply wells and ecosystems, and how toprotect both. This work enables reliable, cost-effective management and eventual cleanup of polluted sites andpositions Canadians as world leaders in groundwater science, technology manufacturing, and resourceprotection. This is achieved through hands-on student training at real-world sites and improved methods andtechnologies for protecting a global resource that is critical for sustaining life and supports producing food andmanufacturing.
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Baseline Groundwater Monitoring in the Transboundary Liard Basin for Source Water Protection
  • 批准号:
    556709-2020
  • 项目类别:
    Alliance Grants
  • 资助金额:
    $44.72万
  • 财政年份:
    2022
  • 负责人:
    Parker, BethBL
  • 依托单位:
Advancement of groundwater multi-level system technologies for improved management of source water in fractured sedimentary bedrock
  • 批准号:
    525892-2018
  • 项目类别:
    Collaborative Research and Development Grants
  • 资助金额:
    $35.63万
  • 财政年份:
    2022
  • 负责人:
    Parker, BethBL
  • 依托单位:
海外基金