+ All Categories
Home > Documents > Big Bottle RAD H 2 O

Big Bottle RAD H 2 O

Date post: 05-Feb-2016
Category:
Upload: eve
View: 32 times
Download: 0 times
Share this document with a friend
Description:
Big Bottle RAD H 2 O. Analysis. Simplistically, all the radon in the water is transferred to the closed air loop; Cw * Vw = Ca * Va Cw = Ca * Va / Vw but some radon is left in the water. At equilibrium, the water to air concentration ratios will be 𝛂 , given by - PowerPoint PPT Presentation
Popular Tags:
15
Transcript
Page 1: Big Bottle RAD H 2 O
Page 2: Big Bottle RAD H 2 O
Page 3: Big Bottle RAD H 2 O
Page 4: Big Bottle RAD H 2 O
Page 5: Big Bottle RAD H 2 O
Page 6: Big Bottle RAD H 2 O

Big Bottle RAD H2O

Page 7: Big Bottle RAD H 2 O
Page 8: Big Bottle RAD H 2 O
Page 9: Big Bottle RAD H 2 O

AnalysisSimplistically, all the radon in the water is transferred to the

closed air loop;

Cw * Vw = Ca * VaCw = Ca * Va / Vw

but some radon is left in the water. At equilibrium, the water to air concentration ratios will be 𝛂, given by

𝛂 = 0.105 + 0.405 * exp(-0.0502*T)where T is the temperature in ℃ (Weigel, 1978).

We can therefore add an air equivalent volume Vw to Va.𝛂

Page 10: Big Bottle RAD H 2 O

Cw * Vw = Ca * (Va + 𝛂Vw)

A head space must be left in the bottle to prevent it exploding if the water heats up, so

we correct for that:

Cw * (Vw - Vh/𝛂) = Ca * (Va + 𝛂Vw)

or

Cw = Ca * (Va + 𝛂Vw) / (Vw - Vh/𝛂)

Page 11: Big Bottle RAD H 2 O
Page 12: Big Bottle RAD H 2 O
Page 13: Big Bottle RAD H 2 O
Page 14: Big Bottle RAD H 2 O
Page 15: Big Bottle RAD H 2 O

Thanks


Recommended