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Collaborative Research: Fluorochemical Signatures in Municipal Waste and Landfill Leachate

Collaborative Research: Fluorochemical Signatures in Municipal Waste and Landfill Leachate
合作研究:城市废物和垃圾渗滤液中的氟化物特征
批准号:
1066769
负责人:
Morton Barlaz
金额:
$23.39万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-04-01 至 2016-03-31

项目摘要

项目成果

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中文摘要
翻译
合作提案1067144 Pi field/1066769 Pi Barlaz现已在人类和野生动物以及水、陆地和大气环境中检测到氟化学物质。氟碳链的独特特性使其在广泛的应用中发挥了作用,但对非生物和生物降解具有抵抗力。全氟辛烷磺酸(PFOS)不会被任何已知的自然过程降解。大多数含氟化学品被应用于固体表面(例如地毯、纺织品、纸张),这些产品通常被丢弃在垃圾填埋场;然而,对于将含氟化学品释放到渗滤液中的过程几乎一无所知。在现代垃圾填埋场,渗滤液被输送到废水处理厂;然而,氟化合物在废水处理过程中不会减弱。对于数以千计没有渗滤液收集系统的旧的封闭垃圾填埋场来说,渗滤液通常被排放到地下水中。要了解垃圾填埋场作为环境中氟化合物的点源所起的作用,迫切需要进行研究。假设1垃圾填埋场中的氟化学物质是通过物理淋滤和含氟碳固体的厌氧生物降解从垃圾中释放出来的。假设2是地毯、纺织品和纸张是含氟化学物质的主要来源,而含氟化学物质?垃圾的一部分可用于区分垃圾填埋场与地表水的其他投入物,如城市废水排放。假设3:垃圾填埋场是氟化学物质的长期来源,是我们国家的重要组成部分?S氟化学物质清单。我们将使用受控实验室实验、现场采样和模型来评估我们的假设。目标1是通过垃圾和垃圾成分的淋溶和生物降解来量化这些垃圾和成分释放出的氟化学品的浓度和组成。实验将在受控垃圾填埋场模拟反应器中进行,在非生物和生物活性厌氧条件下进行。将获得关于个别氟化学品和形成包括全氟辛烷磺酸和全氟辛烷磺酸在内的无止境、持久性氟化学形式的全部可氧化前体的定量数据。这些数据将被用来识别释放个别含氟化学品及其前体的垃圾类型,并使我们能够使含氟化学物质的特征合理化。渗滤液。目的2是表征渗滤液中氟化学物质的浓度。来自美国典型垃圾填埋场横截面的渗滤液将被分析,以评估垃圾年龄、气候和垃圾填埋场运营策略的影响。目标3是利用本研究开发的清单模型,在全国范围内估计向工程系统(如废水处理厂)和天然系统(如地下水)排放的氟化学物质的质量。情报价值:这项建议是首次尝试定量评估垃圾填埋场内导致氟化学物质释放的过程以及固体废物作为氟化学物质来源的相对重要性。该项目将(1)量化导致垃圾渗滤液中氟化学物质的过程,(2)确定释放氟化学物质的城市垃圾的成分,以及(3)为量化垃圾填埋场在多大程度上是向工程和自然水生系统排放的氟化学物质的长期储存库和点源奠定基础。就更广泛的影响而言,这项研究将引起公众的共鸣,他们越来越意识到消费品和环境中的微量有机化学品。私人投资促进机构将利用这方面的意识,开发一个广为人知的网站,将快餐外卖盒和防沾污纺织品等日常用品与环境工程和化学联系起来。这项拟议的研究将允许每个机构的一名博士生参与一个涉及两所大学合作的备受瞩目的项目。库存模型将提供对环境中氟化学品排放量的估计,并为探索这一估计中的不确定性提供了一种手段,这将对必须优先考虑氟化学品控制工作的监管机构有用。随着数据的掌握,清单模型还将有助于评估来自垃圾填埋场的其他排放,并将作为这项工作在全球推广的起点。
英文摘要
Collaborative Proposal 1067144 PI Field/1066769 PI BarlazFluorochemicals are now detected in both humans and wildlife, as well as in aquatic, terrestrial, and atmospheric environments. The unique characteristics of fluorocarbon chains make them useful in a wide range of applications yet resistant to abiotic and biological degradation. Perfluorooctane sulfonate (PFOS) is not degraded by any known natural processes. The majority of fluorochemicals are applied to solid surfaces (e.g., carpets, textiles, paper) and these products are typically disposed of in landfills; however, virtually nothing is known about the processes that release fluorochemicals into leachate. In modern landfills, leachate is routed to wastewater treatment plants; however, fluorochemicals are not attenuated during wastewater treatment. For the thousands of older, closed landfills that were constructed without leachate collection systems, leachate is often released to groundwater. Research is critically needed to understand the role that landfills play as point sources of fluorochemicals in the environment.Hypothesis 1 is that fluorochemicals in landfills are released from refuse by physical leaching and by anaerobic biodegradation of the fluorocarbon-containing solids. Hypothesis 2 is that carpet, textiles, and paper are the primary sources of fluorochemicals and that the fluorochemical ?signature? of refuse can be used to differentiate landfills from other inputs to surface water such as municipal wastewater effluent. Hypothesis 3 is that landfills represent a long-term source of fluorochemicals and are a significant component of our nation?s fluorochemical inventory. Controlled laboratory experiments, field sampling and a model will be used to assess our hypotheses. Objective 1 is to quantify the concentration and composition of fluorochemicals released from refuse and refuse components by leaching and biodegradation of these refuse components. Experiments will be conducted in controlled landfill simulation reactors under both abiotic and biologically active anaerobic conditions. Quantitative data on individual fluorochemicals and the total oxidizable precursors that form dead-end, persistent fluorochemical forms including PFOS and PFOA will be obtained. The data will be used to identify the types of refuse that release individual fluorochemicals and their precursors and enable us to rationalize the fluorochemical ?signatures? of leachates. Objective 2 is to characterize fluorochemical concentrations in leachate. Leachates from a representative cross section of U.S. landfills will be analyzed to assess the effects of refuse age, climate, and landfill operating strategy. Objective 3 is to estimate the mass of fluorochemicals released to engineered (e.g., wastewater treatment plants) and natural (e.g., groundwater) systems on a national scale using an inventory model developed in this research.Intellectual Merit: This proposal represents the first effort to quantitatively evaluate the processes occurring within landfills that result in fluorochemical release and the relative importance of solid waste as a source of fluorochemicals. This project will (1) quantify the processes that result in fluorochemicals in landfill leachate, (2) establish the components of municipal refuse that release fluorochemicals, and (3) establish the basis for quantifying the degree to which landfills are long-term repositories and point sources of fluorochemicals released to engineered and natural aquatic systems. In terms of the broader impacts, this research will resonate with a public that is increasingly aware of trace organic chemicals in consumer products and in the environment. The PIs will capitalize on this awareness by developing a well-publicized web site that relates everyday items such as fast-food take-out boxes and stain resistant textiles to environmental engineering and chemistry. The proposed research will allow one Ph.D. student at each institution to participate in a high-profile project that involves collaboration between two universities. The inventory model will provide an estimate of fluorochemical release to the environment as well as a means for exploring uncertainty in this estimate that will be useful for regulators who must prioritize fluorochemical control efforts. The inventory model will also be useful for the assessment of other releases from landfills as data become available and will serve as a starting point for extension of this work globally.
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SAVI: International Institute for Solid Waste Management Life-Cycle Modeling
  • 批准号:
    1437498
  • 项目类别:
    Standard Grant
  • 资助金额:
    $49.83万
  • 财政年份:
    2014
  • 负责人:
    Morton Barlaz
  • 依托单位:
Predictive Tools for Sustainable Solid Waste Management Using Bioreactor Landfills
  • 批准号:
    0538500
  • 项目类别:
    Standard Grant
  • 资助金额:
    $0.0万
  • 财政年份:
    2006
  • 负责人:
    Morton Barlaz
  • 依托单位:
Sequestration Mechanisms and Bioavailability of Tetrachloroethene and Toluene in Solid Waste
  • 批准号:
    0001700
  • 项目类别:
    Continuing Grant
  • 资助金额:
    $56.66万
  • 财政年份:
    2001
  • 负责人:
    Morton Barlaz
  • 依托单位:
Presidential Faculty Fellow: Refuse Decomposition in Sanitary Landfills
  • 批准号:
    9253789
  • 项目类别:
    Continuing Grant
  • 资助金额:
    $50.0万
  • 财政年份:
    1992
  • 负责人:
    Morton Barlaz
  • 依托单位:
国内基金
海外基金
Research on Quantum Field Theory without a Lagrangian Description
  • 批准号:
    24ZR1403900
  • 项目类别:
    省市级项目
  • 资助金额:
    --
  • 批准年份:
    2024
  • 负责人:
    SATOSHI NAWATA
  • 依托单位:
Cell Research
Cell Research
Cell Research (细胞研究)