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Techniques for enhanced anaerobic digestion and bioenergy conversion of pulp and paper sludge

Techniques for enhanced anaerobic digestion and bioenergy conversion of pulp and paper sludge
制浆造纸污泥强化厌氧消化及生物能转化技术
批准号:
RGPIN-2021-03108
负责人:
Koupaie, Ehssan
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:
2021
资助国家:
加拿大
项目状态:
已结题
起止时间:
2021-01-01 至 2022-12-31

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中文摘要
翻译
加拿大是世界上最大的森林产品出口国。因此,加拿大与森林有关的工业,如纸浆和造纸(P&P)米尔斯厂,在该国经济中发挥着重要作用。大多数P&P米尔斯厂采用物理处理和好氧生物工艺处理废水,产生大量污泥。加拿大米尔斯每年产生超过200万干吨的污泥,这比该国每年的城市污水污泥产量还要大。目前米尔斯厂的污泥管理做法成本高,能源密集,并对环境造成负面影响,包括对垃圾填埋场或泻湖的温室气体排放的重大贡献。另一种污泥管理方案是实施厌氧消化(AD)工艺,将P&P污泥转化为生物能源。AD是一种将有机物转化为富含甲烷的沼气和肥料的生化过程。该技术已被广泛应用于各种有机废物,但由于P&P污泥复杂的理化组成限制了AD的性能,因此很少受到关注。拟议的研究计划将研究不同的技术,包括水热预处理(HTP),厌氧共消化(AnCoD)和两阶段AD工艺,以克服P&P污泥厌氧消化所面临的主要挑战。本研究的具体目标包括:i)研究单独水热预处理和外部导电材料存在下水热预处理对P&P污泥特性的影响(例如,有机溶解)和后续AD在生物能回收、有机物去除和生物态特性方面的性能,ii)研究工艺改进和通过两阶段AD工艺从P&P污泥同时生产生物氢和生物甲烷,iii)研究长期性能并评估P&P污泥AnCoD期间原料特性、混合比和微生物群落的影响,食物垃圾和粪肥这项研究计划的成功将有望在加拿大创造长期的主要绿色能源收入,因为它侧重于从有机废物中生产可再生能源。参与该计划的高素质人员(HQP)将充分利用女王大学跨学科研究和教育设施Beaty Water Research Centre的独特能力。他们将深入了解有机废物处理和能源回收的先进生物工艺工程。他们还将获得各种生物反应器设计和操作的实践实验,并培养各种先进分析技术的技能。这项培训将使他们能够在绿色化学工程和废物管理的发展领域的工业或学术界拥有有价值的职业生涯。
英文摘要
Canada is the world's largest exporter of forest products. As a result, Canada's forest-related industry, such as pulp and paper (P&P) mills, plays a significant role in the Country's economy. Most P&P mills employ physical treatment and aerobic biological processes to treat their wastewater, generating large amounts of sludge. Canadian mills generate over 2 million dry tons of sludge every year, which is greater than the Country's annual municipal wastewater sludge production. The current sludge management practices in mills are cost and energy-intensive and pose negative environmental impacts, including a significant contribution to greenhouse gas emission from landfills or lagoons. An alternative sludge management option is implementing an anaerobic digestion (AD) process for bioenergy conversion of P&P sludge. AD is a biochemical process converting organics into methane-rich biogas and fertilizer. This technology has been widely used for various organic waste but received little attention for P&P sludge due to its complex physio-chemical compositions limiting the performance of AD. The proposed research program will investigate different techniques, including hydrothermal pre-treatment (HTP), anaerobic co-digestion (AnCoD), and a two-stage AD process to overcome the major challenges confronting anaerobic digestion of P&P sludge. The specific objectives of this research include i) To investigate the effects of hydrothermal pre-treatment individually and in the presence of external conductive materials on P&P sludge characteristics (e.g., organic solubilization) and on the performance of the subsequent AD in terms of bioenergy recovery, organics removal, and digestate characteristics, ii) To investigate process improvement and simultaneous production of biohydrogen and biomethane from P&P sludge via two-stage AD process, iii) To study the long-term performance and evaluate the effects of feedstock characteristics, mixing ratios, and microbial community during AnCoD of P&P sludge, food waste, and manure. The success of this research program will be expected to create major green energy revenues in the longer-term in Canada as it focuses on renewable energy production from organic waste. The highly qualified personnel (HQP) involved in this program will make excellent use of the unique capabilities of The Beaty Water Research Centre, an interdisciplinary research and education facility at Queen's University. They will develop a deep understanding of advanced bioprocess engineering for organic waste treatment and energy recovery. They will also gain hands-on experiments in various bioreactors' design and operation and develop skills in various advanced analytical techniques. This training will enable them to have rewarding careers in industry or academia in the growing areas of green chemical engineering and waste management.
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Techniques for enhanced anaerobic digestion and bioenergy conversion of pulp and paper sludge
  • 批准号:
    RGPIN-2021-03108
  • 项目类别:
    Discovery Grants Program - Individual
  • 资助金额:
    $2.04万
  • 财政年份:
    2022
  • 负责人:
    Koupaie, Ehssan
  • 依托单位:
Techniques for enhanced anaerobic digestion and bioenergy conversion of pulp and paper sludge
  • 批准号:
    DGECR-2021-00149
  • 项目类别:
    Discovery Launch Supplement
  • 资助金额:
    $0.91万
  • 财政年份:
    2021
  • 负责人:
    Koupaie, Ehssan
  • 依托单位:
Hydrothermal pretreatment followed by two-stage anaerobic digestion for bioenergy production from pulp and paper mill sludge
  • 批准号:
    516673-2018
  • 项目类别:
    Postdoctoral Fellowships
  • 资助金额:
    $1.64万
  • 财政年份:
    2020
  • 负责人:
    Koupaie, Ehssan
  • 依托单位:
国内基金
海外基金
噬菌体靶向肠道粪肠球菌提高帕金森病左旋多巴疗效的机制研究
  • 批准号:
    82371251
  • 项目类别:
    面上项目
  • 资助金额:
    49.00万元
  • 批准年份:
    2023
  • 负责人:
    肖勤
  • 依托单位: