Analysis of time-dependent mercury flows through the use of thermometers and sphygmomanometers in Thailand

© Int. J. of GEOMATE. Thermometers and sphygmomanometers pose a potentially large source of mercury emissions to the environment due to their high elemental mercury content. Many countries, e.g. most European countries, US have banned their uses already and many more strictly limited their use. Howe...

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Main Authors: Manaporn Wongsoonthornchai, Ruth Scheidegger, Suphaphat Kwonpongsagoon, Hans Peter Bader
Other Authors: Mahidol University
Format: Article
Published: 2018
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Online Access:https://repository.li.mahidol.ac.th/handle/123456789/41438
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spelling th-mahidol.414382019-03-14T15:02:24Z Analysis of time-dependent mercury flows through the use of thermometers and sphygmomanometers in Thailand Manaporn Wongsoonthornchai Ruth Scheidegger Suphaphat Kwonpongsagoon Hans Peter Bader Mahidol University Center of Excellence on Environmental Health and Toxicology (EHT) Swiss Federal Institute of Aquatic Science and Technology Agricultural and Biological Sciences Earth and Planetary Sciences Engineering Environmental Science © Int. J. of GEOMATE. Thermometers and sphygmomanometers pose a potentially large source of mercury emissions to the environment due to their high elemental mercury content. Many countries, e.g. most European countries, US have banned their uses already and many more strictly limited their use. However, in Thailand these mercury-based devices are still used, accumulating large stocks in the use phase as well as in landfills. To understand the development of mercury stocks and flows from thermometers and sphygmomanometers, a time-dependent mathematical material flow model is used in this study. The flows of mercury through these two products were calculated based on data between the years of 1962 and 2013. The simulation showed that the stock of mercury in thermometers is about 20 times smaller than the stock in sphygmomanometers. However the sum of waste flows and emissions to air and water from thermometers is 3 times larger than from sphygmomanometers. The reason is the lifetime of thermometers which is about 70 times shorter than the lifetime of sphygmomanometers. The calculated emission to air from mercury thermometers in hospitals can explain the higher mercury level measured in urine of health care staff. In order to reduce the mercury flows to the environment mercury thermometers should be replaced by alternative products as soon as possible. 2018-12-21T06:30:29Z 2019-03-14T08:02:24Z 2018-12-21T06:30:29Z 2019-03-14T08:02:24Z 2017-05-01 Article International Journal of GEOMATE. Vol.12, No.33 (2017), 65-70 10.21660/2017.33.2578 21862982 2-s2.0-85018278783 https://repository.li.mahidol.ac.th/handle/123456789/41438 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85018278783&origin=inward
institution Mahidol University
building Mahidol University Library
continent Asia
country Thailand
Thailand
content_provider Mahidol University Library
collection Mahidol University Institutional Repository
topic Agricultural and Biological Sciences
Earth and Planetary Sciences
Engineering
Environmental Science
spellingShingle Agricultural and Biological Sciences
Earth and Planetary Sciences
Engineering
Environmental Science
Manaporn Wongsoonthornchai
Ruth Scheidegger
Suphaphat Kwonpongsagoon
Hans Peter Bader
Analysis of time-dependent mercury flows through the use of thermometers and sphygmomanometers in Thailand
description © Int. J. of GEOMATE. Thermometers and sphygmomanometers pose a potentially large source of mercury emissions to the environment due to their high elemental mercury content. Many countries, e.g. most European countries, US have banned their uses already and many more strictly limited their use. However, in Thailand these mercury-based devices are still used, accumulating large stocks in the use phase as well as in landfills. To understand the development of mercury stocks and flows from thermometers and sphygmomanometers, a time-dependent mathematical material flow model is used in this study. The flows of mercury through these two products were calculated based on data between the years of 1962 and 2013. The simulation showed that the stock of mercury in thermometers is about 20 times smaller than the stock in sphygmomanometers. However the sum of waste flows and emissions to air and water from thermometers is 3 times larger than from sphygmomanometers. The reason is the lifetime of thermometers which is about 70 times shorter than the lifetime of sphygmomanometers. The calculated emission to air from mercury thermometers in hospitals can explain the higher mercury level measured in urine of health care staff. In order to reduce the mercury flows to the environment mercury thermometers should be replaced by alternative products as soon as possible.
author2 Mahidol University
author_facet Mahidol University
Manaporn Wongsoonthornchai
Ruth Scheidegger
Suphaphat Kwonpongsagoon
Hans Peter Bader
format Article
author Manaporn Wongsoonthornchai
Ruth Scheidegger
Suphaphat Kwonpongsagoon
Hans Peter Bader
author_sort Manaporn Wongsoonthornchai
title Analysis of time-dependent mercury flows through the use of thermometers and sphygmomanometers in Thailand
title_short Analysis of time-dependent mercury flows through the use of thermometers and sphygmomanometers in Thailand
title_full Analysis of time-dependent mercury flows through the use of thermometers and sphygmomanometers in Thailand
title_fullStr Analysis of time-dependent mercury flows through the use of thermometers and sphygmomanometers in Thailand
title_full_unstemmed Analysis of time-dependent mercury flows through the use of thermometers and sphygmomanometers in Thailand
title_sort analysis of time-dependent mercury flows through the use of thermometers and sphygmomanometers in thailand
publishDate 2018
url https://repository.li.mahidol.ac.th/handle/123456789/41438
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