Developing a Decentralized Wastewater Treatment System using Modular Plasma at Atmospheric Pressure

T. Dam
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引用次数: 1

Abstract

The water pollution from the local restaurants and hotels in many tourist cities is currently being warned. The disadvantages of using centralized wastewater plants are expensive, environmental impact, and high energy consumption. Moreover, a large-scale plant in rural areas risks on a long pipe, high bump capacity and high initial capital investment. Furthermore, the conventional treatment methods have low treatment efficiency, and unstable and high maintenance and operation cost because of using combined physical-chemical, and microbiological systems. In this study, a decentralized wastewater system using modular plasma at atmospheric pressure integrated with a distributed control system was developed to solve the real problem in the big cities. The wastewater's properties of a tourist city, Sam Son, are determined to evaluate the upstream wastewater. A decentralized treatment system, 10m3 /day, was installed in a hotel to evaluate the treatment efficiency. The results showed that the untreated wastewater was seriously polluted including inorganic and organic; the properties are higher than 1.8 to 8.8 times compared to the permitting standard. And the quality of treated water was reduced to 70-90% and reached QCVN 14:2008 in column A. An alert platform for monitoring the location, capacity, and quality of treated water was modeled. In conclusion, the system is high efficiency, low cost, and environmentally friendly.
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常压下模块化等离子体分散式污水处理系统的开发
在许多旅游城市,当地餐馆和酒店造成的水污染正在受到警告。使用集中式污水处理厂的缺点是成本高、对环境影响大、能耗高。此外,农村地区的大型工厂管道长、生产能力高、初始资金投入高。此外,传统的处理方法由于采用物理化学和微生物联合系统,处理效率低,不稳定,维护和运行成本高。在本研究中,开发了一种采用模块化大气压等离子体与分布式控制系统相结合的分散式污水系统,以解决大城市的实际问题。旅游城市萨姆森的废水性质被确定为上游废水的评价。在某酒店安装了10立方米/天的分散处理系统,以评估处理效率。结果表明:未经处理的废水存在严重的无机和有机污染;比许可标准高出1.8 ~ 8.8倍。处理后的水质降至70-90%,达到a列QCVN 14:08。建立了一个监测处理水位置、容量和水质的预警平台。综上所述,该系统效率高、成本低、环境友好。
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