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Decomposition of dimethyl sulfide in a wire-cylinder pulse corona reactor

机译:丝缸脉冲电晕反应器中的二甲基硫化物的分解

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decomposition of dimethyl sulfide (DMS) in air was investigated experimentally by using a wire-cylinder dielectric barrier discharge (DBD) reactor at room temperature and atmospheric pressure. A new type of high pulse voltage source with a thyratron switch and a blumlein pulse-forming network (BPFN) was adopted in our experiments. The maximum power output of the pulse voltage source and the maximum peak voltage were 1 kW and 100 kV, respectively. The important parameters affecting odor decomposition, including peak voltage, pulse frequency, gas flow rate, initial concentration, and humidity, which influenced the removal efficiency, were investigated. The results showed that DMS could be treated effectively and almost a 100% removal efficiency was achieved at the conditions with an initial concentration of 832 mg/m3 and a gas flow rate of 1000 ml/min. Humidity boosts the removal efficiency and improves the energy yield (EY) greatly. The EY of 832 mg/m3 DMS was 2.87 mg/kJ when the relative humidity was above 30%. In the case of DMS removal, the ozone and nitrogen oxides were observed in the exhaust gas. The carbon and sulfur elements of DMS were mainly converted to carbon dioxide, carbon monoxide and sulfur dioxide. Moreover, sulfur was discovered in the reactor. According to the results, the optimization design for the reactor and the matching of high pulse voltage source can be reckoned.
机译:通过在室温和大气压下在室温和大气压下,通过使用线筒介电阻挡放电(DBD)反应器实验研究空气中的二甲基硫醚(DMS)的分解。我们的实验中采用了一种新型的高脉冲电压源和具有闸门脉冲形成网络(BPFN)的高脉冲电压源。脉冲电压源的最大功率输出和最大峰值电压分别为1 kW和100 kV。研究了影响气味分解的重要参数,包括影响去除效率的峰值电压,脉冲频率,气体流速,初始浓度和湿度。结果表明,在初始浓度为832mg / m 3的条件下,可以有效地处理DMS,但在初始浓度为832mg / m3的条件下实现了100%的去除效率和1000ml / min的气体流速。湿度提高了去除效率并大大提高了能源产量(EY)。当相对湿度高于30%时,832mg / m 3 DMS为2.87mg / kJ。在去除DMS的情况下,在废气中观察臭氧和氮氧化物。 DMS的碳和硫元素主要转化为二氧化碳,一氧化碳和二氧化硫。此外,在反应器中发现了硫。根据结果​​,可以估计反应器的优化设计和高脉冲电压源的匹配。

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