Poulopoulos S G, Philippopoulos C J
Department of Chemical Engineering, Chemical Process Engineering Laboratory, National Technical University of Athens, Greece.
J Air Waste Manag Assoc. 2001 Jul;51(7):992-1000. doi: 10.1080/10473289.2001.10464323.
In the present work, engine and tailpipe (after a three-way catalytic converter) emissions from an internal combustion engine operating on two oxygenated blend fuels [containing 2 and 11% weight/weight (w/w) methyl tertiary butyl ether (MTBE)] and on a nonoxygenated base fuel were characterized. The engine (OPEL 1.6 L) was operated under various conditions, in the range of 0-20 HP. Total unburned hydrocarbons, carbon monoxide, methane, hexane, ethylene, acetaldehyde, acetone, 2-propanol, benzene, toluene, 1,3-butadiene, acetic acid, and MTBE were measured at each engine operating condition. As concerns the total HC emissions, the use of MTBE was beneficial from 1.90 to 3.81 HP, which were by far the most polluting conditions. Moreover, CO emissions in tailpipe exhaust were decreased in the whole operation range with increasing MTBE in the fuel. The greatest advantage of MTBE addition to gasoline was the decrease in ethylene, acetaldehyde, benzene, toluene, and acetic acid emissions in engine exhaust, especially when MTBE content in the fuel was increased to 11% w/w. In tailpipe exhaust, the catalyst operation diminished the observed differences. Ethylene, methane, and acetaldehyde were the main compounds present in exhaust gases. Ethylene was easily oxidized over the catalyst, while acetaldehyde and methane were quite resistant to oxidation.
在本研究中,对一台使用两种含氧混合燃料[分别含有2%和11%重量/重量(w/w)的甲基叔丁基醚(MTBE)]以及一种非含氧基础燃料运行的内燃机的发动机和排气管(三元催化转化器之后)排放物进行了表征。该发动机(欧宝1.6升)在0至20马力范围内的各种工况下运行。在每个发动机运行工况下,测量了总未燃烃、一氧化碳、甲烷、己烷、乙烯、乙醛、丙酮、2-丙醇、苯、甲苯、1,3-丁二烯、乙酸和MTBE。关于总碳氢化合物排放,在1.90至3.81马力时使用MTBE是有益的,而这两个工况是污染最严重的工况。此外,随着燃料中MTBE含量的增加,排气管排放中的一氧化碳排放量在整个运行范围内都有所降低。向汽油中添加MTBE的最大优势在于发动机尾气中乙烯、乙醛、苯、甲苯和乙酸排放量的减少,尤其是当燃料中MTBE含量增加到11% w/w时。在排气管排放中,催化剂的作用减小了观察到的差异。乙烯、甲烷和乙醛是废气中的主要成分。乙烯在催化剂上易于氧化,而乙醛和甲烷则相当耐氧化。