Chou M S, Cheng W H, Lee W S
Institute of Environmental Engineering, National Sun Yat-Sen University, Kaohsiung, Taiwan, Republic of China.
J Air Waste Manag Assoc. 2000 Dec;50(12):2112-9.
A pilot apparatus of a regenerative catalytic oxidizer (RCO) equipped with two electrical heaters and two 20-cm i.d. x 200-cm height regenerative beds was used to treat methyl ethyl ketone (MEK) and toluene, respectively, in an airstream. The regenerative beds were packed with gravel (approximate particle size 1.25 cm, specific area 205 m2/m3, and specific heat capacity 840 J/kg degree C) as a solid regenerative material and K-type thermal couples for measuring solid and gas temperatures, respectively. The catalyst bed temperature was kept around 400 degrees C and the gas superficial velocity was operated at 0.234 m/sec. This investigation measured and analyzed distributions of solid and gas temperatures with operating time and variations of volatile organic compound (VOC) concentrations in the regenerative beds. The overall VOC removal efficiency exceeded 98% for MEK and 95% for toluene. Degradation of VOCs will exist for MEK on the surface of solid material (gravel) in the temperature range of 330-400 degrees C, but toluene does not exhibit this phenomenon.
一种配备有两个电加热器和两个内径20厘米、高200厘米的蓄热床的蓄热式催化氧化器(RCO)试验装置,分别用于处理气流中的甲乙酮(MEK)和甲苯。蓄热床填充有砾石(近似粒径1.25厘米,比表面积205平方米/立方米,比热容840焦/千克摄氏度)作为固体蓄热材料,并分别配备K型热电偶用于测量固体和气体温度。催化剂床层温度保持在400摄氏度左右,气体表观流速为0.234米/秒。本研究测量并分析了固体和气体温度随运行时间的分布以及蓄热床中挥发性有机化合物(VOC)浓度的变化。MEK的总VOC去除效率超过98%,甲苯的超过95%。在330 - 400摄氏度的温度范围内,MEK在固体材料(砾石)表面会发生VOC降解,但甲苯不会出现这种现象。