Lee How Ming, Chang Moo Been, Wu Kuan Yu
Graduate Institute of Environmental Engineering, National Central University, Taiwan.
J Air Waste Manag Assoc. 2004 Aug;54(8):960-70. doi: 10.1080/10473289.2004.10470963.
Sulfur hexafluoride (SF6) is an important gas for plasma etching processes in the semiconductor industry. SF6 intensely absorbs infrared radiation and, consequently, aggravates global warming. This study investigates SF6 abatement by nonthermal plasma technologies under atmospheric pressure. Two kinds of nonthermal plasma processes--dielectric barrier discharge (DBD) and combined plasma catalysis (CPC)--were employed and evaluated. Experimental results indicated that as much as 91% of SF6 was removed with DBDs at 20 kV of applied voltage and 150 Hz of discharge frequency for the gas stream containing 300 ppm SF6, 12% oxygen (O2), and 40% argon (Ar), with nitrogen (N2) as the carrier gas. Four additives, including Ar, O2, ethylene (C2H4), and H2O(g), are effective in enhancing SF6 abatement in the range of conditions studied. DBD achieves a higher SF6 removal efficiency than does CPC at the same operation condition. But CPC achieves a higher electrical energy utilization compared with DBD. However, poisoning of catalysts by sulfur (S)-containing species needs further investigation. SF6 is mainly converted to SOF2, SO2F4, sulfur dioxide (SO2), oxygen difluoride (OF2), and fluoride (F2). They do not cause global warming and can be captured by either wet scrubbing or adsorption. This study indicates that DBD and CPC are feasible control technologies for reducing SF6 emissions.
六氟化硫(SF6)是半导体行业等离子体蚀刻工艺中的一种重要气体。SF6强烈吸收红外辐射,因此会加剧全球变暖。本研究考察了大气压下非热等离子体技术对SF6的减排效果。采用并评估了两种非热等离子体工艺——介质阻挡放电(DBD)和等离子体催化联合工艺(CPC)。实验结果表明,对于含有300 ppm SF6、12%氧气(O2)、40%氩气(Ar)且以氮气(N2)作为载气的气流,在施加电压20 kV、放电频率150 Hz的条件下,采用DBD可去除高达91%的SF6。在所研究的条件范围内,包括Ar、O2、乙烯(C2H4)和水蒸气(H2O(g))在内的四种添加剂对提高SF6的去除效果有效。在相同操作条件下,DBD实现的SF6去除效率高于CPC。但与DBD相比,CPC实现了更高的电能利用率。然而,含硫(S)物种对催化剂的中毒作用还需要进一步研究。SF6主要转化为氟化亚硫酰(SOF2)、四氟化硫酰(SO2F4)、二氧化硫(SO2)、二氟化氧(OF2)和氟气(F2)。它们不会导致全球变暖,可通过湿法洗涤或吸附进行捕集。本研究表明,DBD和CPC是减少SF6排放的可行控制技术。