Guo Yufang, Liao Xiaobin, Ye Daiqi
College of Environmental Science and Engineering, Guangzhou University, Guangzhou Higher Education Mega Center, Guangzhou 510006, China.
J Environ Sci (China). 2008;20(12):1429-32. doi: 10.1016/s1001-0742(08)62544-9.
A new method was introduced to detect the concentration of OH radical in dielectric barrier discharge (DBD) reaction. A film, which was impregnated with salicylic acid, was used to detect OH radical in plasma reaction at room temperature and atmospheric pressure. Salicylic acid reacts with OH radical and produces 2,5-dihydroxybenzoic acid (2,5-DHBA). Then, a high performance liquid chromatography (HPLC) was carried out to detect the concentration of 2,5-DHBA. Therefore, OH radical in nonthermal plasma reaction could be calculated. In this plasma reaction, the applied voltage was controlled at 10 kV, the initial concentration of toluene was 400 mg/m3, and the gas flow rate was 300 ml/min. It was observed that when the film was placed away from the plasma area, 2,5-DHBA could not be detected by HPLC, although the sampling time lasted for 48 h. On the other hand, when the film was placed in the plasma area and the sampling time being too long (> 4 h), the concentration of 2,5-DHBA was also below detection limit, and it could not be detected by HPLC. However, when the film was placed in the plasma reaction field with the sampling time being 3 h, the concentration of OH radical was calculated to be 10.54 x 10(12) cm(-3). In addition, concentration of OH radical was investigated under different humidity, such as 0.2%, 0.4%, 0.6%, 0.8%, and 1.0%. The results showed that the amount of OH radical stayed at order of magnitude of 10(12) cm(-3) and increased with the increase of humidity.
一种用于检测介质阻挡放电(DBD)反应中羟基自由基浓度的新方法被引入。使用浸渍了水杨酸的薄膜在室温及大气压下检测等离子体反应中的羟基自由基。水杨酸与羟基自由基反应生成2,5 - 二羟基苯甲酸(2,5 - DHBA)。然后,通过高效液相色谱(HPLC)检测2,5 - DHBA的浓度。由此,可以计算出非热等离子体反应中的羟基自由基浓度。在该等离子体反应中,施加电压控制在10 kV,甲苯初始浓度为400 mg/m³,气体流速为300 ml/min。观察到当薄膜放置在远离等离子体区域时,尽管采样时间持续48小时,HPLC仍无法检测到2,5 - DHBA。另一方面,当薄膜放置在等离子体区域且采样时间过长(> 4小时)时,2,5 - DHBA的浓度也低于检测限,HPLC无法检测到。然而,当薄膜放置在等离子体反应场中且采样时间为3小时时,计算得出羟基自由基浓度为10.54×10¹² cm⁻³。此外,还研究了在不同湿度(如0.2%、0.4%、0.6%、0.8%和1.0%)下羟基自由基的浓度。结果表明,羟基自由基的量保持在10¹² cm⁻³数量级,并随湿度增加而增加。