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Automatic waste water treatment, aeration, and retrieval for a hybrid aquarium/plant system

机译:用于混合水族箱/植物系统的自动废水处理,曝气和检索

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Because of the greenhouse effect, global climate changes will adversely influence the water supply in the future. As can be seen in traditional reservoirs, the crisis will be exacerbated due to the reservoir‘s sedimentation. From a global view, 70 % of freshwater resources are used for agricultural purposes. Thus, water management and infrastructure changes are needed to improve the situation if current climate conditions continue into the future. In order to save water resources, an attempt to reuse a pond‘s wastewater for agricultural irrigation is proposed. Utilizing waste water treatment via nitrification (with nitrifying bacteria) and aeration processes, the plant will receive enough fertilizer extracted from fish dung. Additionally, to assure a safe environment, the temperature, dissolved oxygen, and pH (potential of hydrogen) value of the aquarium will be monitored online and shown on the interface of the server device. Various automatic functions such as an aquarium filtering system, a waste water treatment system, a plant irrigation system, a waste water aeration system, and a water retrieval system are also designed in the hybrid aquarium/plant system. Consequently, a prototype of a PC-based automatic plant/aquarium hybrid system is established.
机译:由于温室效应,全球气候变化将对未来的供水产生不利影响。可以在传统水库中看到,由于水库的沉降,危机将加剧。从全球范围内,70%的淡水资源用于农业目的。因此,如果当前的气候条件持续未来,则需要水管理和基础设施的变化来改善情况。为了节省水资源,提出了重用池塘废水的水资源,提出了用于农业灌溉的废水。利用硝化的废水处理(用硝化细菌)和曝气过程,植物将获得从鱼粪池中提取的足够肥料。另外,为了确保安全的环境,水族馆的温度,溶解的氧和pH(氢气)的价值将在线监测,并在服务器设备的界面上显示。在混合水族箱/植物系统中还设计了各种自动功能,诸如水族馆过滤系统,废水处理系统,植物灌溉系统,废水曝气系统和水检索系统。因此,建立了基于PC的自动植物/水族箱混合系统的原型。

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