课题基金 / 基金详情

Integrated Wastewater Treatment for Bioresource and Bioenergy Recovery

Integrated Wastewater Treatment for Bioresource and Bioenergy Recovery
生物资源和生物能源回收综合废水处理
批准号:
RGPIN-2014-04949
负责人:
Champagne, Pascale
金额:
$2.04万
依托单位:
依托单位国家:
加拿大
项目类别:
Discovery Grants Program - Individual
财政年份:
2019
资助国家:
加拿大
项目状态:
已结题
起止时间:
2019-01-01 至 2020-12-31

项目摘要

项目成果

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中文摘要
翻译
简介*加拿大的政策推动了在管理我们的可再生资源时应用无害环境和可持续做法的需求。加拿大环境部提出了新的《废水系统排放条例》(WSER),以监测加拿大[1]的废水处理设施,为满足废水排放要求所需的升级估计为100 - 130亿美元,其中大部分将由较小的市政当局[1]承担。拟议的研究计划旨在利用生态工程藻类系统处理城市污水,解决加拿大面临的这些挑战。该研究计划将培养7名HQP(5名博士和2名硕士),他们将在应用环境可持续性领域获得高要求的技术技能,并担任废水处理和生物资源管理专业人员的领导职位。**长期目标是开发一种新的基于证据的方法来设计适合加拿大气候的生态工程废水处理系统,重点是综合生物资源管理。所进行的研究将使用实地监测、受控实验室调查和先进的统计分析方法来建立知识库,以实现这一总体目标。在短期内,该计划旨在更好地了解影响废水稳定池(WSPs)中废水处理和消毒功能的动态相互作用,从而建立更稳健的设计模型和遵循循证方法的指导方针;并研究将微藻共培养整合到城市污水处理基础设施中,作为一种可持续的污水处理策略,具有藻类生物燃料下游回收的潜力。* *研究成果*该研究项目将为加拿大WSP系统中使用被动系统处理和抛光废水的最新技术做出贡献。预计通过实现这些目标而开发的知识可以转移到工业中,以便未来的科进设计可以遵循循证方法,从而导致有效的科进系统。这将有助于市政当局,面临潜在的昂贵的废水基础设施升级困境,老化或不充分的WSP系统,以满足日益严格的联邦废水排放准则。并使市政重点关注应用环境的可持续性。该研究项目还将解决目前在利用废水共同培养藻类以及通过综合生物资源管理方法增加生物燃料下游回收潜力方面存在的关键知识缺口。**HQP培训*加拿大城市的劳动力正在老龄化,废水处理出水的更严格监管准则和对综合可持续方法的关注使废水系统的管理更加复杂。这为加拿大市政当局和整个行业对具有先进技术和专业技能的训练有素的专业人员创造了大量需求。拟议的研究计划将通过培训7名HQP使加拿大受益,他们将获得在开发替代废水和废物管理技术和可持续环境方法方面的高期望技术技能,重点是综合生物资源管理,以及工程专业管理技能。HQP将准备在市政、监管机构、省级部委和联邦部门以及咨询公司担任废水专业人员的领导职务,增强加拿大在应用环境可持续性方面的影响力。
英文摘要
INTRODUCTION*Canadian policies are driving the demand for the application of environmentally sound and sustainable practices in managing of our renewable resources. Environment Canada has proposed new Wastewater Systems Effluent Regulations (WSER) to monitor wastewater treatment facilities in Canada[1] and required upgrades to meet effluent discharge requirements are estimated at $10-13 billion, the majority of which will be borne by smaller municipalities[2]. The proposed research program aims to address these Canadian challenges using eco-engineered algal systems for municipal wastewater treatment. The research program will train 7 HQP (5 PhD and 2 MASc) who will acquire highly-desired technical skills in the area of applied environmental sustainability and assume leadership positions as wastewater treatment and bioresource management professionals.**PROPOSED RESEARCH PROGRAM*The long-term objective is to develop a new evidence-based approach to designing eco-engineered wastewater treatment systems for Canadian climates with a focus on integrated bioresource management. The research conducted will use field-scale monitoring, controlled laboratory investigations and advanced statistical analysis methods to build the knowledge-base to achieve this overarching goal. In the short term, the program aims to develop a better understanding of the dynamic interactions influencing wastewater treatment and disinfection functions in wastewater stabilization ponds (WSPs) leading to more robust design models and guidelines that follow an evidence-based method; and investigate the integration of microalgae co-cultivation to municipal wastewater treatment infrastructure, as a sustainable wastewater treatment strategy with the potential for the downstream recovery of algal biofuels. * *RESEARCH OUTCOMES *The research program will contribution to the state-of-the art in using passive systems to treat and polish wastewater in Canadian WSP systems. It is anticipated that the knowledge developed through the realization of these objectives can be transferred to industry so that future WSP design can follow an evidence-based method, leading to effective WSP systems. This will assist municipalities, faced with potentially costly wastewater infrastructure upgrade dilemmas for aging or inadequate WSP systems in meeting increasingly stringent federal wastewater effluent guidelines. and enable municipal with a focus on applied environmental sustainability. The research program will also address critical gaps that exist in the current state of knowledge with respect to the co-cultivation of algae using wastewater and the increase the potential for downstream recovery of biofuels in an integrated bioresource management approach.**HQP TRAINING*The workforce in Canadian municipalities is aging and stricter regulatory guidelines for wastewater treatment effluents and the focus on integrating sustainable approaches have made the management of wastewater systems more complex. This has created a large demand for highly trained professionals with advanced technical and professional skills in Canadian municipalities and across the industry. The proposed research program will benefit Canada by training 7 HQP who will acquire highly-desired technical skills in in the development of alternate wastewater and waste management technologies and sustainable environmental approaches with a focus on integrated bioresource management, as well as skills in professional management in engineering. HQP will be ready to assume leadership positions as wastewater professionals in municipalities, regulatory agencies, provincial ministries and federal departments, and consulting firms, enhancing Canada's capacity for influence in applied environmental sustainability.
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Photosynthetically-enhanced eco-engineered treatment systems
Nominated for the NSERC Brockhouse Canada Prize / Nominé pour le Prix Brockhouse du Canada
  • 批准号:
    522780-2019
  • 项目类别:
    Brockhouse Canada Prize for Interdisciplinary Research in Science and Engineering
  • 资助金额:
    $4.37万
  • 财政年份:
    2021
  • 负责人:
    Champagne, Pascale
  • 依托单位:
Photosynthetically-enhanced eco-engineered treatment systems
Bioresource Engineering
  • 批准号:
    CRC-2016-00046
  • 项目类别:
    Canada Research Chairs
  • 资助金额:
    $2.67万
  • 财政年份:
    2021
  • 负责人:
    Champagne, Pascale
  • 依托单位:
海外基金