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Options for alternative types of sewerage and treatment systems directed to improvement of the overall performance

机译:旨在改善整体性能的其他类型的污水处理系统的选项

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Technology for future houses may well include a high-tech water recycling unit that makes tapwater while people drink bottled water of high quality. There may be toilets that produce just a bag of dry fertiliser per year, hopefully without fossil energy. Rainwater infiltration is increasingly replacing storm sewers anyway, Many urban areas of the future could simply be without sewerage systems. Technical feasibility is given even today and economic feasability is coming closer by advances in membrane technology. However, there are more likely scenarios than this. One person produces about 500 litres of urine and 50 litres of faeces per year (= blackwater). The same person, produces in a range of 20,000 to over 100,000 litres of wastewater. Black- and greywater (wastewater without toilet) do have very different characteristics. If blackwater is collected separately with low dilution it can be converted to safe natural fertiliser, replacing synthetic products and preventing spreadout of pathogens and other pollutants to receiving waters, New sanitation concepts are now built in several countries as pilot projects. One example is a vacuum-biogas system for around 400 inhabitants that has been built in Lubeck, Germany. It does perform recovery of resources and energy in an urban area. This type of sanitation can serve around up to 10,000 people and can be arranged in independent modules for larger settlements, Another pilot project based on urine-sorting flush toilets (no-mix-toilets) has been built in the rural water-mill museum "Lambertsmuhle" near Cologne, Germany. Urine or yellow water is collected with low dilution and can be used as fertiliser as projects in Sweden have shown - the nutrient composition suits many types of soil. Brownwater (the solids and flush from the sorting toilet) is converted to small volume by a two-chamber composting tank with a filtration system. The compost can be used as soil conditioner. These and other concepts can be economic and show new ways for the many water scarce areas around the world, too. [References: 22]
机译:未来房屋的技术很可能包括高科技水循环装置,当人们饮用高质量的瓶装水时,该装置可以生产自来水。可能有一些厕所每年只能生产一袋干肥料,希望没有化石能源。无论如何,雨水的渗透正越来越多地取代雨水管道。未来的许多城市地区可能根本就没有排污系统。直到今天,技术可行性仍在给出,并且膜技术的进步使经济可行性越来越近。但是,存在更多的可能性。一个人每年产生约500升尿液和50升粪便(=黑水)。同一个人将产生20,000至100,000升以上的废水。黑水和灰水(不带厕所的废水)的确有很大不同。如果将黑水以低稀释率单独收集,则可以将其转换为安全的天然肥料,替代合成产品,并防止病原体和其他污染物扩散到接收水中,作为试点项目,现在已经在多个国家/地区建立了新的卫生概念。一个例子是在德国吕贝克建造的可容纳约400名居民的真空沼气系统。它确实在市区执行资源和能源的回收。这种类型的卫生设施最多可容纳10,000人,并可以独立的模块安排用于更大的居住区。乡村水磨博物馆还建立了另一个基于尿分类抽水马桶(无混合便桶)的试点项目。 Lambertsmuhle”,德国科隆附近。如瑞典的项目所示,收集的尿液或黄水稀释度低,可以用作肥料-营养成分适合多种土壤。带有过滤系统的两室堆肥箱将褐水(来自分选马桶中的固体和冲洗水)转化为少量。堆肥可用作土壤改良剂。这些概念和其他概念可能是经济的,并为世界许多缺水地区显示了新的方法。 [参考:22]

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