Volcanic rocks in the Vulsini Volcanic District (Central Italy) contain high concentrations of 238U, 232Th and 40K due to subduction-related metasomatic enrichment of incompatible elements in the mantle source coupled with magma differentiation within the upper crust. Due to their favorable mechanical properties they have been extensively used for construction since the Etruscan age. In the old buildings of the Bolsena village, one of the most populated ancient village in the area, the major source of indoor radioactivity is 222Rn, a radioactive noble gas descendant of 238U. Direct 222Rn indoor measurements have detected extremely high values in the old center due to the combined effect of building materials, radon fluxes from the volcanic basement and low air exchange rates. In these cases the evaluated risk of developing lung cancer within a 75 year lifetime reaches up to 40% for ever smokers. Simulations of “standard rooms” built with different tuffs and lavas collected from the Vulsini Volcanic District have also provided estimations of the effective doses and lifetime risk for radiogenic cancer. Other than by the method adopted for calculation, the total evaluated risk for each volcanic rock depends on different parameters, such as: radionuclide content, radon emanation power, occupancy factor and air exchange rate. Occupancy factor and air exchange rate appear as the only controlling parameters able to mitigate the indoor radiological risk.

Capaccioni B., Cinelli G., Mostacci D., Tositti L. (2012). Long-term risk in a recently active volcanic system: evaluation of doses and indoor radiological risk in the quaternary Vulsini Volcanic District (Central Italy). JOURNAL OF VOLCANOLOGY AND GEOTHERMAL RESEARCH, 247-248, 26-36 [10.1016/j.jvolgeores.2012.07.014].

Long-term risk in a recently active volcanic system: evaluation of doses and indoor radiological risk in the quaternary Vulsini Volcanic District (Central Italy)

CAPACCIONI, BRUNO;CINELLI, GIORGIA;MOSTACCI, DOMIZIANO;TOSITTI, LAURA
2012

Abstract

Volcanic rocks in the Vulsini Volcanic District (Central Italy) contain high concentrations of 238U, 232Th and 40K due to subduction-related metasomatic enrichment of incompatible elements in the mantle source coupled with magma differentiation within the upper crust. Due to their favorable mechanical properties they have been extensively used for construction since the Etruscan age. In the old buildings of the Bolsena village, one of the most populated ancient village in the area, the major source of indoor radioactivity is 222Rn, a radioactive noble gas descendant of 238U. Direct 222Rn indoor measurements have detected extremely high values in the old center due to the combined effect of building materials, radon fluxes from the volcanic basement and low air exchange rates. In these cases the evaluated risk of developing lung cancer within a 75 year lifetime reaches up to 40% for ever smokers. Simulations of “standard rooms” built with different tuffs and lavas collected from the Vulsini Volcanic District have also provided estimations of the effective doses and lifetime risk for radiogenic cancer. Other than by the method adopted for calculation, the total evaluated risk for each volcanic rock depends on different parameters, such as: radionuclide content, radon emanation power, occupancy factor and air exchange rate. Occupancy factor and air exchange rate appear as the only controlling parameters able to mitigate the indoor radiological risk.
2012
Capaccioni B., Cinelli G., Mostacci D., Tositti L. (2012). Long-term risk in a recently active volcanic system: evaluation of doses and indoor radiological risk in the quaternary Vulsini Volcanic District (Central Italy). JOURNAL OF VOLCANOLOGY AND GEOTHERMAL RESEARCH, 247-248, 26-36 [10.1016/j.jvolgeores.2012.07.014].
Capaccioni B.; Cinelli G.; Mostacci D.; Tositti L.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/125807
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