首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >What can we learn from old wetlands? Lessons that have been learned and some that may have been forgotten over the past 20 years
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What can we learn from old wetlands? Lessons that have been learned and some that may have been forgotten over the past 20 years

机译:我们可以从古老的湿地中学到什么?在过去的20年中,已经吸取的教训和一些可能被遗忘的教训

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摘要

The bulk of research, development, and application of constructed wetland systems (CWSs) have taken place in the past 20 years. There are now thousands of these systems being used in Europe. Many are used for individual houses or small groups of houses, but the most common use is for treating the domestic sewage from villages to achieve secondary treatment. There are also larger systems for tertiary and storm sewage overflow treatment. The processes have spread out from domestic wastewater treatment into many other areas, such as mine water treatment and industrial effluent treatment. Development has been more rapid than is usual for wastewater treatment processes, and the processes are now regarded as conventional. One of the reasons is that the processes are seen as both "green" and cost-effective. Another reason for the rapid development of CWSs is that there has been very close national and international cooperation. This chapter describes the stepwise development of treatment applications from the simple horizontal flow beds for biochemical oxygen demand measured over 5 days and total suspended solids removal in the mid-1980s, moving on to vertical flow beds capable of nitrification in the early 1990s. The development of hybrid systems capable of the previous treatment applications plus denitrification in the late 1990s will be described together with the main advances.
机译:人工湿地系统(CWS)的大量研究,开发和应用已在过去20年中进行。现在在欧洲有成千上万的此类系统正在使用。许多用于单个房屋或一小群房屋,但最常见的用途是处理村庄的生活污水以实现二级处理。还有更大的第三级和暴雨污水溢流处理系统。这些过程已从生活废水处理扩展到许多其他领域,例如矿井水处理和工业废水处理。与废水处理工艺相比,其开发速度比以往更快,现在已被视为常规工艺。原因之一是该过程被认为既“绿色”又具有成本效益。 CWS快速发展的另一个原因是国家和国际合作非常紧密。本章描述了从简单的水平流化床到5天内测量的生化需氧量和1980年代中期所去除的总悬浮固体的逐步应用,再到1990年代初能够硝化的垂直流化床。将描述混合动力系统的发展,该混合动力系统可用于先前的处理应用以及1990年代后期的反硝化作用,以及主要进展。

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