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Pilot Scale Nutrient Removal Technology Optimization for Lagoon Wastewater Treatment System Upgrades

Pilot Scale Nutrient Removal Technology Optimization for Lagoon Wastewater Treatment System Upgrades
泻湖废水处理系统升级中试规模营养物去除技术优化
批准号:
533996-2018
负责人:
Delatolla, Robert
金额:
$4.85万
依托单位:
依托单位国家:
加拿大
项目类别:
Collaborative Research and Development Grants
财政年份:
2020
资助国家:
加拿大
项目状态:
已结题
起止时间:
2020-01-01 至 2021-12-31

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中文摘要
翻译
加拿大大约1000个正在运行的泻湖废水处理设施面临着越来越大的压力,要求其超过联邦排放法规,并满足严格的氮、磷和固体废水排放法规。改造或升级这些被动处理设施以实现营养和固体去除的关键挑战是首先在冬季运行的极低温度下实现这些设施的硝化。随着最近移动床生物膜反应器(MBBR)技术作为一种经济手段在加拿大泻湖处理设施冬季运行期间实现硝化的经济手段,本研究致力于研究MBBR技术与滤池技术相结合作为泻湖设施升级解决方案的应用,以满足严格的氮、磷和固体排放法规。这项研究将产生有关在低温下运行的硝化和反硝化生物膜、生物量和微生物群的新的基础知识,因为目前还没有关于在低温下运行的具有代表性的被动处理系统的硝化和反硝化MBBR系统的研究。MBBR工艺之所以被选入本研究,是因为它适合作为一种高级的泻湖促进技术,而且它能够实现低温硝化。此外,这项研究将表征MBBR升级系统到泻湖的生物产生的固体,并将优化用于泻湖固体去除的碟式过滤器技术的运行。这项研究将在试点规模上进行,在两个泻湖处理设施安装。这项研究将提供新的基本知识,以有效地设计和运行一种低操作员强度、小占地面积、经济的升级MBBR和滤池处理列车,以在加拿大现有的泻湖系统实现营养物质和固体的去除。这一研究项目创造的知识将通过减少加拿大自然水域中有害有害物质的排放,最终减少对环境、渔业资源和人类健康的风险。
英文摘要
The approximately 1000 operating lagoon wastewater treatment facilities in Canada are facing increasing pressure to exceed the federal discharge regulations and to meet stringent nitrogen, phosphorous and solids effluent discharge regulations. The critical challenge of modifying or upgrading these passive treatment facilities to achieve nutrient and solids removal has been to first achieve nitrification in these facilities at the very low temperatures characteristic of winter operation. With the recent demonstration of the moving bed biofilm reactor (MBBR) technology as an economical means to achieve nitrification during winter operation at lagoon treatment facilities in Canada, this research endeavours to investigate the application of the MBBR technology in combination with the discfilter technology as an upgrade solution to lagoon facilities to meet stringent nitrogen, phosphorous and solids discharge regulations. The research will produce new fundamental knowledge with regard to nitrifying and denitrifying biofilm, biomass and microbiomes operating at low temperatures as there are currently no studies on nitrifying and denitrifying MBBR systems operated at low temperatures that are representative of passive treatment systems in Canada. The MBBR technology has been selected for this research due to its suitability as an up-grade technology for lagoon facilitates and its ability to achieve low temperature nitrification. In addition, the research will characterise the biologically produced solids of MBBR upgrade systems to lagoons and will optimize the operation of the discfilter technology for solids removal at lagoons. The study will be performed at the pilot scale with installations at two lagoon treatment facilities. The study will provide new fundamental knowledge necessary to effectively design and operate a low operator intensity, small footprint, economical upgrade MBBR and discfilter treatment train to achieve nutrient and solids removal at current lagoon systems in Canada. The knowledge created from this research project will ultimately reduce the risks to the environment, fisheries resources, and human health by decreasing the discharge of harmful deleterious substances in Canadian natural waters.
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