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Centralised or decentralised sanitation in Swedish summerhouse areas in transition to permanent living?

机译:过渡到永久居住的瑞典避暑别墅区集中式或分散式卫生?

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The standard of wastewater management is high in Sweden. Around 90% of the population is connected to central wastewater treatment plants with high requirements of nutrients removal; however, still the problem with algae blooms in the Baltic Sea exists. The aim of the VeVa project was to develop a simple and user-friendly Excel-based model to support environmental decisions of how to select wastewater systems for housing areas where no central sewer system exists. The VeVa model deals with two types of environmental issues: substance flow analysis and energy analysis. Six system structures were studied for the transition area Lill?ngsdal in V?rmd? municipality sorted in three categories: 1) on-site systems for single households; 2) local collective systems; 3) connection to central systems. All studied system structures, except for a Sand filter system, fulfilled the goals of reducing phosphorus and BOD7 according to Swedish guidelines for on-site systems in sensitive areas. All studied systems, except for the Sand filter system, have the potential to fulfil the Swedish National Environmental goal to recycle 60% phosphorus to productive land.
机译:瑞典的废水管理标准很高。约有90%的人口与对污水中的养分去除有很高要求的污水处理厂相连;但是,波罗的海藻类大量繁殖的问题仍然存在。 VeVa项目的目的是开发一个基于Excel的简单易用的模型,以支持如何为没有中央下水道系统的房屋区域选择废水系统的环境决策。 VeVa模型处理两种类型的环境问题:物质流分析和能量分析。研究了V?rmd?过渡区Lill?ngsdal的六种系统结构。市政当局分为三类:1)单户家庭现场系统; 2)地方集体制度; 3)连接到中央系统。根据瑞典针对敏感区域现场系统的指南,除砂滤系统以外,所有研究的系统结构均达到了减少磷和BOD7的目标。除砂滤系统外,所有研究过的系统都有潜力实现瑞典国家环境目标,即将60%的磷回收到生产用地中。

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