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Design and performance evaluation of a highly loaded aerated treatment wetland managing effluents from a food processing industry in Denmark

机译:丹麦食品加工业的高负荷曝气处理湿地处理废水的设计和性能评估

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Treating highly loaded industrial effluents are challenging when treatment wetlands (TWs) are the choice selected for treatment. If TWs are selected as the solution, passive systems demand relatively large areas and may generate operational limitations and are not flexible in case of new treatment demands since no process adjustments can be made once the system is built. New types of intensified TW, such as aerated systems, have opened new possibilities in the field of the Wetland Technology and have shown capacity to treat several types of wastewater (WW). Aerated wetlands have been built across the USA and several European countries, but not a single system has been built in Denmark as to date. Thanks to an EU funded project and the cooperation of several partners under a consortium with the acronym HIGHWET, a new system is being built at the premises of a food processing factory in the vicinity of Faarup Denmark. The system will treat the WW generated at the plant and consists of a pretreatment system in the form of an anaerobic reactor, followed by two 1 m deep vertical flow beds, one of them aerated while the other bed is not aerated. Following these beds, the plant has two horizontal sub-surface flow beds fitted with aeration. For improving the P removal, media with high P binding capacity is are being used as filling material. In additiuon and for research purposes, the influent pump well plant is fitted with a dosing system in order to obtain pollutant loads at will so performance limits and kinetic constants can be established from the performance of the plant.
机译:当选择处理湿地(TWs)时,处理高负荷的工业废水具有挑战性。如果选择TW作为解决方案,则无源系统需要相对较大的面积,并且可能会产生操作限制,并且在出现新的处理要求的情况下不灵活,因为一旦构建系统便无法进行工艺调整。新型的强化TW,例如充气系统,在湿地技术领域开辟了新的可能性,并且已经显示出处理多种类型废水(WW)的能力。充气湿地已经在美国和几个欧洲国家建立,但迄今为止,丹麦还没有建立一个单独的系统。得益于欧盟资助的项目以及几个合作伙伴(缩写为HIGHWET)的合作,在丹麦Faarup附近的食品加工厂内正在建造新系统。该系统将处理工厂产生的污水,并由一个厌氧反应器形式的预处理系统组成,随后是两个深1 m的垂直流化床,其中一个是充气的,而另一个是不充气的。在这些床之后,该设备具有两个装有充气的水平地下流床。为了提高磷的去除率,将具有高磷结合能力的介质用作填充材料。此外,出于研究目的,进水泵井工厂配备了定量给料系统,以便随意获得污染物负荷,因此可以根据工厂的性能确定性能极限和动力学常数。

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