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Innovative technologies for decentralised water-, wastewater and biowaste management in urban and peri-urban areas

机译:用于城市和郊区的分散式水,废水和生物废物管理的创新技术

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Avoiding the comingling of water flows coming from different sources and thus obtaining flows with a very low dilution factor is the first and major step key to technical solutions for adequate treatment of household wastewaters. Through their decentral structure and effective recovery of water, energy and fertiliser these systems can be highly cost efficient. Fresh water consumption can be reduced by up to 80% while nutrients can be recovered to a large extent. Source control is also advantageous for hygienic reasons: low volumes are far easier to sanitise. Source separation technology in municipal waste water treatment does often lead decentralised or semicentral systems. The first essential step is the separate collection and treatment of toilet waste in households, which contains almost all pathogens and nutrients. New toilet systems with very low dilution factors, ranging from vacuum- through urine sorting to dry toilets, have been introduced in several projects and proven feasible. New ideas such as the black- and greywater cycle systems are presently under research at the Technical University Hamburg Harburg. Such modular, integrated and small scale systems are only possible through recent advances in membrane technology and, due to their small scale, do have the potential to be installed in densely populated regions. These technologies are options for following the principles of ecological sanitation, to contain, to sanitise and to reuse also in urban areas (EcoSanRes, 2003). [References: 17]
机译:避免将来自不同水源的水混合在一起,从而获得稀释系数非常低的水流,这是对家庭废水进行适当处理的技术解决方案的第一步也是主要步骤。通过它们的分散结构以及对水,能源和肥料的有效回收,这些系统可以具有很高的成本效益。淡水消耗最多可以减少80%,同时可以大量回收养分。出于卫生方面的考虑,源头控制也是有利的:小体积更容易消毒。市政废水处理中的源头分离技术通常会导致分散系统或半中心系统。首要的第一步是单独收集和处理家庭中的厕所垃圾,其中几乎包含所有病原体和营养物质。稀释系数非常低的新型抽水马桶系统,从真空到尿液分类再到干燥的抽水马桶,已经在多个项目中引入并证明是可行的。诸如黑水和灰水循环系统之类的新思想目前正在汉堡汉堡技术大学进行研究。这种模块化的,集成的和小规模的系统只有通过膜技术的最新发展才有可能,并且由于其规模小,确实有潜力安装在人口稠密的地区。这些技术是遵循生态卫生原则,在城市地区进行遏制,消毒和再利用的选择(EcoSanRes,2003年)。 [参考:17]

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