Affichage des articles dont le libellé est dose factors. Afficher tous les articles
Affichage des articles dont le libellé est dose factors. Afficher tous les articles

mardi 12 novembre 2013

The Cesium 137 case. Official internal dose factors are like SS which name shower a chamber gas.

Cesium 137 (L. caesius, blue sky); Cs; at. Mass. 136,9070895; at. n° 55; m.p. 28,44°C; b.p. 671°C; sp. gr. 1,873; half-life 30,07 years; 86,84 Ci/gr; β-; 0,514 MeV; β- range in tissues ~1560 μ

Assessing the rationality of official internal dose factor (4,8E-9 Sv/Bq) or what body mass is necessary to explain the IRCP dose factor for this element ?

The cesium 137 have a physical half-life of 30,07 years, a biological half-life of 70 days an a effective half-life of 69,56 days. (λ phys. 7,309E-10, λ bio. 1,146E-7, λ effect. 1,153E-7.) His official inhalation dose factor is 4,8E-9 Sv/Bq.

The incorporation of 1 Bq of cesium 137 conduce after 50 years to suffer (1 Bq/1,153E-7 λe) * 1-(EXP(50*31536000*-1,153E-7)) = 8,670E6 disintegrations β- and absorb 8,67E6 disintegrations * 0,514 MeV * 1,602E-13 Joule per MeV = 7,140E-7 Joule and 7,14001 Erg which dissipate, for IRCP, in a impossible human body mass of 148,75 kg... ((8,67E6 Emissions * 0,5140 MeV * 1,602E-6 Erg par MeV * 1 EBR)/(4,800E-9 Sv/Bq * 1 Bq * 100 Erg/gr * 100 Rad/Sv) = 148,75 kg) with a radius of (148750,2595 cm3/(4/3*3,14159))^(1/3) = 32,8693 cm.  The particle β- which penetrate no more than 1560 μ in tissues travel in “rational” calculation 210,7 times far away it can physically go... (328692,43 μ/1560 μ = 210,7.) In other words the real absorbed dose is reduce 9,35 millions times. (210,70^3 = 9,35E6 or 1,49E5 gr/1,59E-2 gr = 9,35E6.)

Calculating the dose produce by one β- particle with 0,514 MeV energy and 1560 μ penetration capacity in tissues: (1 Bq * 0,5140 MeV * 1,602E-6 Erg par MeV * 1 EBR)/((4/3 * 3,14159 * (1560 * 0,0001^3)) gr * 100 Erg/gr * 100 Rad/Sv) = 5,18E-9 Sv/Bq or 5,18 nanoSievert per desintegration.

The committed dose for 1 Bq in 50 years is then (1 Bq/1,15E-7 λ effect. s-1 * (1-Exp(50*365*24*60*60 * -1,15E-7 λ effect.))) * 5,18E-9 Sv/Bq) = 4,490E-2 Sv/Bq or 44,90 milliSievert per Becquerel.

Official internal dose factors are like SS which name shower a chamber gas.


jeudi 19 septembre 2013

The Strontium 90 case. Official internal dose factors are like SS which name shower a chamber gas.


Strontium 90 (Strontian, Scotland); Sr; at.mass 89,907738; n° at. 38; m.p. 777°C; b.p. 1382°C; sp. gr. 2,54; half-life 28,78 years; 1,381E2 Ci/gr; β-; 0,546 MeV; range β- in tissues ~1645 μ.
 
The strontium 90 have a physical half-life of 28,78 years, a biological half-life of 34 years, an a effective half-life of 15,6 years.

(λ physic 7,637E-10, λ biologic 6,465E-10, λ effective 1,410E-9. The IRCP inhalation dose factor is 1,5E-7 Sv/Bq.)

Assessing the rationality of official internal dose factor or what body mass is necessary to explain the IRCP dose factor for this element ?

An absorbed dose is calculate taking account all the disintegrations that occurs in 50 years produce by the incorporation of a mass of matter which initially emitted 1 Bq. Then the incorporation of 1 Bq of strontium 90 conduce after 50 years to suffer (1 Bq/1,410E-9 λe) * 1-(EXP(50*31536000*-1,410E-9)) = 6,324E8 disintegrations β- and conduce to absorb 6,32E8 disintegrations * 0,546 MeV * 1,602E-13 Joule per MeV = 5,532E-5 Joule and 553,20804 Erg which dissipate, for IRCP, in a body mass of 368,81 kg... ((6,32E8 Emissions * 0,5460 MeV * 1,602E-6 Erg par MeV * 1 EBR)/(1,500E-7 Sv/Bq * 1 Bq * 100 Erg/gr * 100 Rad/Sv) = 368,81 kg) with a radius of (368805,3576 cm3/(4/3*3,14159))^(1/3) = 44,4873 cm.  The particle β- which penetrate no more than 1645 μ in tissues travel in rational calculation 270,4 times far away it can physically go... (444873,16 μ/1645 μ = 270,4.) In other words the real absorbed dose is reduce 19,78 millions times. (270,44^3 = 1,98E7 or 3,69E5 gr/1,86E-2 gr = 1,98E7.)

Calculating the dose produce by one β- particle with 0,546 MeV energy and 1645 μ penetration capacity in tissues:
(1 Bq * 0,5460 MeV * 1,602E-6 Erg per MeV * 1 EBR)/((4/3 * 3,14159 * (1645 * 0,0001^3)) gr * 100 Erg/gr * 100 Rad/Sv) = 4,69E-9 Sv/Bq or 4,69 nanoSievert per Becquerel. The committed dose for 1 Bq in 50 years is then (1 Bq/1,41E-9 λ effective s-1 * (1-Exp(50*365*24*60*60 * -1,41E-9 λ effective))) * 4,69E-9 Sv/Bq) = 2,9669 Sv/Bq or 2,97 Sievert per Becquerel.


Official internal dose factors are like SS which name shower a chamber gas.