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McKay, Donald. "Front matter" Multimedia Environmental Models ...

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Table 7.1 Intermedia Transfer D Value Equation<br />

Compartments Process D Values<br />

air(1) – water(2) diffusion DV = 1/(1/kVAA12ZA + 1/kVWA12ZW) rain dissolution DRW2 = A12 UQ ZW ©2001 CRC Press LLC<br />

wet deposition D QW2 = A 12 U R Q v Q Z Q<br />

dry deposition D QD2 = A 12 U Q v Q Z Q<br />

D 12 = D V + D RW2 + D QD2 + D QW2<br />

D 21 = D V<br />

air(1) – soil(3) diffusion DE =1/(1/kEAA13Z + Y3/(A13(BMAZA + BMWZW))) rain dissolution DRW3 = A13 UR vQZW wet deposition D QW3 = A 13 U R Q v Q Z Q<br />

dry deposition D QD3 = A 13 U Q v Q Z Q<br />

D 13 = D E + D RW3 + D QW3 + D QD3<br />

D 31 = D E<br />

soil(3) – water(2) soil runoff D SW = A 13 U EW Z E<br />

water runoff D WW = A 13 U WW Z W<br />

sediment(4) – water(2) diffusion<br />

D32 = DSW + DWW D23 = 0<br />

DY = 1/(1/kSWA24ZW + Y4/BW4A24ZW) deposition DDS = UDP A23 ZP reaction either bulk phase i or sum of all<br />

phases<br />

resuspension D RS = U RS A 23 Z S<br />

D 24 = D Y + D DS<br />

D 42 = D Y + D RS<br />

D Ri = k Ri V i Z i<br />

D Ri = S(k Rij V ij Z ij)<br />

advection bulk phase D Ai = G i Z i or U i A I Z i<br />

Aij is the horizontal area between media i and j.<br />

Subscripts on Z are A, water W, aerosol Q, soil E, sediments S and particles in water P.<br />

k VA = 3.6 + 5 U 10 1.2 m/h U10 in m/s<br />

k VW = 0.0036 + 0.01 U 10 1.2 m/h U10 in m/s<br />

These correlations will underestimate the mass transfer coefficients under turbulent<br />

conditions of breaking waves or in rivers where there is “white water.”<br />

Sedimentation rates can be estimated by assuming a deposition velocity of about<br />

1 m/day. Therefore, a lake containing 15 g/m 3 of suspended solids is probably<br />

depositing 15 g/m 2 day of solids, which corresponds to about 10 cm 3 /m 2 day if the<br />

density is 1.5 g/cm 3 . This corresponds to 0.4 cm 3 /m 2 h or 40 ¥ 10 –8 m 3 /m 2 h or 40<br />

¥ 10 –8 m/h. Of this, a fraction is buried, and the remainder is resuspended. In waters<br />

of lower solids concentration, the deposition rate is correspondingly slower.<br />

The air-to-water D value (D 12) consists of diffusive absorption (D V) and nondiffusive<br />

wet and dry aerosol deposition. Each D value can be estimated and summed<br />

to give D 12.

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