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Optimization of On-site Advanced Wastewater Treatment System to reduce nitrogen and organic pollutants

Optimization of On-site Advanced Wastewater Treatment System to reduce nitrogen and organic pollutants
优化现场废水深度处理系统,减少氮和有机污染物
批准号:
491745-2015
负责人:
Wootton, Brent
金额:
$1.82万
依托单位国家:
加拿大
项目类别:
Applied Research and Development Grants - Level 1
财政年份:
2015
资助国家:
加拿大
项目状态:
已结题
起止时间:
2015-01-01 至 2016-12-31

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中文摘要
翻译
在人口密度较低和/或无法使用集中下水道系统的农村地区,废水最常在靠近其产生源头的地方进行处理。这些地区的大多数居民依赖于传统的现场化粪池系统,其中30%到50%的废水处理在化粪池中进行,另外50%到70%的废水处理在土壤中进行。然而,在许多情况下,传统化粪池系统的实施受到场地(即海拔)和土壤类型/条件的限制。关于处理和排放要求的法规根据排放地点的不同而有所不同。分散的高级废水处理系统与集成的固定膜工艺是在这些情况下的可靠解决方案,因为它们能够有效和高效地处理废水。 这项研究项目将集中于住宅和商业应用的创新高级污水处理(AWT)系统。AWT系统是一种现场系统,它将气体注入液体技术与固定薄膜工艺相结合,以减少废水中的有机物、悬浮固体和氮。这一应用研究项目的主要目标是在流量、介质类型和体积以及曝气方面优化当前的设计,以在最大限度降低成本的同时加强氮和有机化合物的减少。为了实现这些目标,将并行运行两个AWT系统,每个系统使用不同的媒体源。此外,可能需要对系统进行一些修改(例如,额外的再循环),以提高整体脱氮效率。这项优化研究将在6个月的研究期间进行,以(1)评估当前系统,(2)根据需要纳入修改,(3)优化和评估每个修改后的系统的处理能力。这一应用研究的结果将提高对当前系统的认识,增强产品,并增加技术可信度。
英文摘要
In rural areas with low population densities and/or without access to centralized sewer systems, wastewater is most often treated in close proximity to the source of its generation. Most residents in these areas depend on conventional onsite septic systems where 30 to 50 % of the wastewater treatment is performed in the septic tank and an additional 50 to 70 % is performed in the soil. In many cases, however, implementation of a conventional septic system is limited due to site (i.e. elevation) and soil type / conditions. Regulations around treatment and effluent requirements vary depending on where the effluent. Decentralized advanced wastewater treatment systems with integrated fixed film processes are a reliable solution in these circumstances due to their ability to effectively and efficiently treat wastewater. This research project will focus on an innovative Advanced Wastewater Treatment (AWT) system for residential and commercial applications. The AWT system is an onsite system that combines gas infusion into liquid technology with a fixed film process to reduce organic matter, suspended solids, and nitrogen from wastewater. The primary objective of this applied research project is to optimize the current design in terms of flow, media type and volume, and aeration for enhanced reduction of nitrogen and organic compounds while minimizing cost. In order to meet these objectives two AWT systems will be run in parallel, each one utilizing a different media source. In addition some system modifications (e.g. additional recirculation) may be required to improve the overall nitrogen removal efficiency. This optimization study will be performed over a 6 month study period to (1) evaluate the current system, (2) incorporate modifications as needed, (3) optimize and evaluate each of the modified systems for treatment capabilities. The results of this applied research will improve knowledge of the current system, enhance the product, and increase technical credibility.
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