The pathway by which ozone reacts with pyrene, a polycyclic aromatic h
ydrocarbon (PAH), is proposed in this paper. Pyrene was dissolved in a
90% acetonitrile:water (v/v) mixture. At this ratio, sufficient water
is present to participate in the ozonolysis reaction and thereby mimi
c what occurs in pure water. The initial pyrene concentration was 5 mM
. The ozone dosages were varied to obtain different extents of reactio
n. A stoichiometric ratio of 1.68 mol ozone mol(-1) pyrene was require
d to completely destroy pyrene. The ozonation products were tentativel
y identified by gas chromatography-mass spectrometry (GC-MS). Fourteen
products including aldehyde and carboxylic acid substituted phenanthr
ene- and biphenyl-type oxidation products were identified. Several rin
g-cleavage reactions occurred sequentially: (i) ring cleavage of pyren
e first occurred at the 4,5 position, with phenanthrene-type products
predominating; and (ii) once secondary ring cleavage occurred, the con
centration of pyrene and the phenanthrene-type products,decreased dram
atically, while the concentration of biphenyl-type products increased.
The oxidation of pyrene by hydroxyl free radicals was found to be inv
olved in the reaction, even at pH 3.7. (C) 1998 Elsevier Science Ltd.
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