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TABLE 66-3<br />

EQUILIRRIUN PAPllOWlYt OF POTENTIAL<br />

DIESEL FUEL HYDROCARBONS IN MODEL EYVIROYHEYTS‘<br />

SA TURAlEO<br />

COHPOUYD<br />

Log K K b<br />

on<br />

oc<br />

WC<br />

UYSATURAYEO lOPSOl<br />

(Xl<br />

soil Yater Air<br />

OEEP SOILd<br />

(Xl<br />

boil<br />

Mater<br />

octane 5.18 (a)<br />

Dodecrne 7.06 (1)<br />

lrimethylpentme 4.67 (1)<br />

frimethylcyctohexane 5.02 (h)<br />

fri,methylbenzeneo 3.65 fh)<br />

Naphthaleno 3.50 (a)<br />

Hethylnaphthstenos 3.87 (e)<br />

Anthraceno 4.45 (0)<br />

73,000 2.96 .<br />

5.5 x lo6 7.4<br />

36,000 1.9-3.3<br />

50,500 1.6<br />

-3<br />

2,150<br />

5 x 1o*4<br />

3,570<br />

13,500<br />

962 4.82 a 10.)<br />

4.4 x 1o*5<br />

5.9 x 10<br />

97.4 0.01 2.6 99.7 0.3<br />

99.9 0.0001 0.09 99.9 0.004<br />

94.7 0.01 5.3 99.3 0.7’<br />

98.0 0.01 2.0 99.5 0.5<br />

99.6 0.2 0.2 90.0 10.0<br />

99.4 0.5 0.03 80.2 19.8<br />

99.6 0.1 0.01 93.7 6.3<br />

99.9 0.04 0.0003 98.3 1.7<br />

‘Celculetions based on hockey’s equilibrium partioning model (34,35,363; see Introduction in Volume 1 for description of model <strong>and</strong><br />

l nvironmentel conditions chosen to reprorent an unoaturatod topsoil snd saturated deep soil. Catculrted percentages shoutd be<br />

considorod es rough estimates <strong>and</strong> used only for general Ruidrnce.<br />

bReference 652.<br />

‘Taken from Referonce 74 unless otherwise specified. Units equal atm-m3/mOt.<br />

d Used sorption coofficiont.K<br />

P<br />

= 0.001 x Koc.<br />

‘Roforonco 29.<br />

f Arthur 0. Little, Inc., estimate according to equations provided fn Reference 31.<br />

4, RRoference 10.<br />

\<br />

:<br />

h Reference 31.

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