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Plasma Supported Odour Removal from Waste Air in Water Treatment Plants: An Industrial Case Study

机译:等离子辅助去除水处理厂废气中的异味:工业案例研究

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Effects of plasma assisted waste air treatment from a water treatment plant have been investigated in several field tests. In particular the off-air for a thermal sludge dryer was investigated and treated. The intention of this study was to proof whether plasma assisted technologies are a possible solution for the removal of odour from waster air emitted by wastewater treatment facilities. The plasma treatment was combined with a catalytic (cupper-manganese) unit, a scrubbing unit, or a bio filter in order to demonstrate the abilities for waste air deodorization. The inlet and outlet gas was analysed by means of FTIR, FID, and chemical sensors and the odour removal was investigated by standardized olfactometry. A significant reduction of hydrogen sulphide and methane by means of combined plasma-catalyst-treatment has been measured, but the removal of hydrogen sulphide leads to the formation of unwanted by-products. Main effects of plasma treatment in the field tests can be compared to the results of laboratory studies published in the literature. A significant odour reduction up to about 90% was measured. Aldehydes and other hydrocarbons are marginally removed by plasma treatment as well as by the bio filter. The bio filter released sulphur containing substances (DMS, CS2, DMDS) which can be destroyed by plasma-catalytic treatment. Based on the results of the field tests a reliable concept for an industrial after treatment installation has been designed as described. Due to the high content of H2S a scrubber as the first treatment unit is desired. Downstream the scrubber the plasma/catalytic unit combined with the existing bio filter is proposed for the removal of the hydrocarbons and other odorous constituents.
机译:在一些现场测试中,已经研究了水处理厂的等离子体辅助废气处理的效果。特别是对热污泥干燥机的室外空气进行了研究和处理。这项研究的目的是证明等离子体辅助技术是否可能用于去除废水处理设施排放的废气中的气味。等离子处理与催化(杯锰)单元,洗涤单元或生物过滤器结合使用,以证明废气除臭的能力。通过FTIR,FID和化学传感器对进出气体进行分析,并通过标准的嗅觉法研究气味的去除。已经测量出通过组合的等离子体催化剂处理显着减少硫化氢和甲烷,但是硫化氢的去除导致形成不需要的副产物。可以将等离子处理在现场测试中的主要作用与文献中发表的实验室研究结果进行比较。测量到显着的气味减少高达约90%。醛和其他碳氢化合物可通过等离子处理以及生物过滤器去除。生物过滤器释放出了含硫物质(DMS,CS2,DMDS),这些物质可以通过等离子体催化处理被破坏。根据现场测试的结果,已针对所述工业后处理装置设计了可靠的概念。由于H 2 S的含量高,因此需要洗涤器作为第一处理单元。建议在洗涤塔的下游,将等离子/催化单元与现有的生物过滤器结合,以去除碳氢化合物和其他有臭成分。

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