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Effect of the plasma and temperature on the chemical components of particulate matter using corona discharge

机译:等离子体和温度对电晕放电对颗粒物化学成分的影响

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NTP (Non-thermal Plasma) is one of a promising applications for decontamination of particulate matter, but the research on the chemical components of particulate matter treated by plasma is poor. Particulate matter collected by plasma reactor and filters with NTP action and without NTP action was measured by TGA (Thermogravimetric Analysis). The chemical reactions between radical and particulate matter were researched. And GC/MS (Gas Chromatography/Mass Spectrometry) was used to analyze the PAHs (Polycyclic Aromatic Hydrocarbons) of particulate. The experimental results indicate that after the NTP reaction, the rate of SOF(Soluble Organic Fraction) and DS (Dry Soot), and the concentration of inorganic salt on particulate both increase, and the content of PAHs is lowered.
机译:NTP(非热等离子体)是一种对颗粒物进行去污的有前途的应用之一,但是对通过等离子体处理的颗粒物的化学成分的研究还很薄弱。通过TGA(热重分析)测量由具有NTP作用和不具有NTP作用的血浆反应器和过滤器收集的颗粒物。研究了自由基与颗粒物之间的化学反应。并使用GC / MS(气相色谱/质谱)分析了颗粒物的PAHs(多环芳烃)。实验结果表明,NTP反应后,SOF(可溶性有机组分)和DS(干烟灰)的比率以及颗粒上无机盐的浓度均增加,而PAHs的含量降低。

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