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Collaborative Research: ERASE-PFAS: Hydrothermal Treatment as a Strategy for Simultaneous PFAS Destruction and Recovery of Energy and Nutrients from Wastewater Residual Solids

Collaborative Research: ERASE-PFAS: Hydrothermal Treatment as a Strategy for Simultaneous PFAS Destruction and Recovery of Energy and Nutrients from Wastewater Residual Solids
合作研究:ERASE-PFAS:水热处理作为同时破坏 PFAS 并从废水残留固体中回收能量和养分的策略
批准号:
2207235
负责人:
Timothy Strathmann
金额:
$29.18万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2022
资助国家:
美国
项目状态:
未结题
起止时间:
2022-08-01 至 2025-07-31

项目摘要

项目成果

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中文摘要
翻译
全氟和多氟烷基物质(PFAS)是用于许多消费品和工业应用的含氟有机化学品。在过去的十年中,由于人们越来越关注PFAS在环境中积累时的持久性、稳定性和对人类和其他生物的毒性,PFAS已成为优先考虑的污染物。在来自水资源回收设施(wrrf)的污泥和生物固体中越来越多地检测到PFAS,这引起了人们对在农业和农业中使用这些固体作为土壤改进剂以及有机物质和营养物质来源的严重关注。该合作项目的目标是评估热液液化(HTL)作为平台技术的使用,以推进PFAS的同时破坏和从污泥中回收液体燃料和营养物质。HTL工艺使用高温(250-350°C)和高压(100-250 bar)在特殊设计的反应器中分解wrrf污泥中的pfas。拟议的研究将评估HTL在生产液体燃料和营养物的同时修复含pfas的污泥的有效性。这项计划的成功完成,将透过发展新的基础知识和技术,推动以具成本效益的方式修复和管理污水循环循环池中含有pfas的污泥,从而造福社会。通过外联和教育活动,包括指导科罗拉多矿业学院的一名研究生和伊利诺伊大学厄巴纳-香槟分校的一名研究生,将为社会带来额外的好处。在施用污泥的农田和农场中检测到PFAS,引起了人们对污泥土地应用的严重关注,污泥是一种通常用于改善土壤质量和作物产量的耕作方法。本合作研究的目标是评估和推进水热液化(HTL)作为管理水资源回收设施(wrrf)中含pfas污泥的替代技术的应用。这一目标将通过实验和建模工作的结合来推进,重点关注两个关键目标:(1)确定HTL工艺条件,确保在wrrf污泥中积累的PFAS被破坏;(2)开发并应用系统建模框架,通过回收燃料和有价值的产品(如营养物)来优化污泥增值,同时安全破坏PFAS污染物。拟议的实验将评估PFAS的破坏情况,并跟踪污泥HTL过程中产生的碳、氮和磷的质量平衡。HTL实验的结果将为过程模块的开发和验证提供信息和指导,这些过程模块将被纳入QSDsan(卫生和资源回收的定量可持续设计),这是一个用于优化废水和废弃生物质资源回收的开源建模框架。模型预测在破坏PFAS的同时优化资源回收,然后将用从几个wrrf获得的污泥和消化的生物固体进行验证。通过开发和验证一项新技术,该项目的成功完成有可能产生变革性影响,该技术可以解决污泥PFAS污染问题,同时促进有价值产品的回收。为了实施该项目的教育和推广活动,首席研究员(pi)计划利用科罗拉多矿业学院(CSM)现有的REU计划,通过招募以前没有参加过本科研究的学生来扩大STEM教育的参与。此外,pi计划1)举办虚拟研讨会,以支持和扩大水研究界对QSDsan模型的使用;2)为参加CSM儿童阅读障碍夏令营的K-6学生开展从废物流中回收资源的夏令营活动。该奖项反映了美国国家科学基金会的法定使命,并通过使用基金会的知识价值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
Per- and polyfluoroalkyl substances (PFAS) are fluorinated organic chemicals that are used in numerous consumer products and industrial applications. During the last decade, PFAS have emerged as priority pollutants due to increasing concerns about their persistence, stability, and toxicity to humans and other living organisms as they accumulate in the environment. The increasing detection of PFAS in sludge and biosolids from water resource recovery facilities (WRRFs) has raised serious concerns about using these solids in agriculture and farming as soil amendments, and sources of organic matter and nutrients. The goal of this collaborative project is to evaluate the use of hydrothermal liquefaction (HTL) as a platform technology to advance the simultaneous destruction of PFAS and recovery of liquid fuel and nutrients from sludge. The HTL process uses high temperature (250-350°C) and high pressure (100-250 bar) to break down PFAS-in sludge from WRRFs in a specially designed reactor. The proposed research will evaluate the effectiveness of HTL to remediate PFAS-laden sludges while producing liquid fuel and nutrients. The successful completion of this project will benefit society through the development of new fundamental knowledge and technology to advance the cost-effective remediation and management of PFAS-laden sludges from WRRFs. Additional benefits to society will be achieved through outreach and educational activities including the mentoring of a graduate student at Colorado School of Mines and a graduate student at the University of Illinois at Urbana-Champaign.The detection of PFAS in agricultural fields and farms where sludges were applied to the land has raised serious concerns about the land application of sludge, a farming practice commonly used to improve soil quality and crop yields. The goal of this collaborative research is to evaluate and advance the application of hydrothermal liquefaction (HTL) as an alternative technology for managing PFAS-laden sludges from water resource recovery facilities (WRRFs). This goal will be advanced through a combination of experiments and modeling efforts with a focus on two critical objectives: (1) identify HTL process conditions that ensure destruction of PFAS that accumulate in sludges from WRRFs; and (2) develop and apply a system modeling framework to optimize sludge valorization through the recovery of fuel and valuable products (e.g., nutrients) while safely destroying the PFAS contaminants. The proposed experiments will evaluate the destruction of PFAS and track the mass balances of the carbon, nitrogen, and phosphorus that are generated during sludge HTL. The results of the HTL experiments will inform and guide the development and validation of process modules that will be incorporated into QSDsan (Quantitative Sustainable Design for sanitation and resource recovery), an open-source modeling framework for optimizing resource recovery from wastewater and waste biomass. Model predictions that optimize resource recovery while destroying PFAS will then be validated with sludges and digested biosolids obtained from several WRRFs. The successful completion of this project has the potential for transformative impact through the development and validation of a new technology that addresses sludge PFAS contamination while advancing the recovery of valuable products. To implement the education and outreach activities of the project, the Principal Investigators (PIs) plan to leverage an existing REU program at Colorado School of Mines (CSM) to broaden participation in STEM education by recruiting students who have not previously participated in undergraduate research. In addition, the PIs plan to 1) conduct virtual workshops to support and broaden the use of QSDsan modeling by the water research community and 2) develop summer camp activities on resource recovery from waste streams for K-6 students that will participate in a summer camp for children with dyslexia at CSM.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
From Wastewater to Gasoline - Aqueous Biorefining of Polyhydroxybutyrate (PHB)-Enriched Biosolids
  • 批准号:
    1804513
  • 项目类别:
    Standard Grant
  • 资助金额:
    $33.04万
  • 财政年份:
    2018
  • 负责人:
    Timothy Strathmann
  • 依托单位:
Probing the Mechanisms and Structure-Activity Relationships for Hydrated Electron Reactions with Poly- and Perfluoroalkyl Substances (PFASs)
  • 批准号:
    1807739
  • 项目类别:
    Continuing Grant
  • 资助金额:
    $30.0万
  • 财政年份:
    2018
  • 负责人:
    Timothy Strathmann
  • 依托单位:
SusChEM: Waste Valorization through Hydrothermal Catalytic Conversion of Carboxylic Acids/Esters to Hydrocarbon Fuels
  • 批准号:
    1555549
  • 项目类别:
    Standard Grant
  • 资助金额:
    $32.58万
  • 财政年份:
    2015
  • 负责人:
    Timothy Strathmann
  • 依托单位:
SusChEM: Waste Valorization through Hydrothermal Catalytic Conversion of Carboxylic Acids/Esters to Hydrocarbon Fuels
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)