Literature DB >> 15993682

The impact of the hyperacid Ijen Crater Lake: risks of excess fluoride to human health.

Alex Heikens1, Sri Sumarti, Manfred van Bergen, Budi Widianarko, Luuk Fokkert, Kees van Leeuwen, Willem Seinen.   

Abstract

The Asembagus irrigation area (East Java, Indonesia) receives a high input of fluoride (F) via surface water that partially originates from the hyperacid crater lake of the Ijen volcano. Endemic dental fluorosis among local residents has been ascribed to F in water wells. In this study, the total F intake by children and adults was estimated, based on concentrations in well waters and foods throughout the area. These values were compared with the Lowest Observed Adverse Effect Level (LOAEL) for dental fluorosis among children and skeletal fluorosis among adults. Fluorosis hazard maps were prepared, identifying the most hazardous locations in the area. It was concluded that there is not only a high risk of dental fluorosis, but also of skeletal fluorosis. Based on the total daily intake, the lowest F concentration in drinking water that poses a risk of developing fluorosis is approximately 0.5 mg/l for dental fluorosis and 1.1 mg/l for skeletal fluorosis. This is below 1.5 mg/l, which is both the guideline value for drinking water from the World Health Organization (WHO) and the Indonesian drinking water standard. This is the first documented case of human health problems that may be directly associated with natural pollutants originating from a volcano-hosted crater lake.

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Year:  2005        PMID: 15993682     DOI: 10.1016/j.scitotenv.2004.12.007

Source DB:  PubMed          Journal:  Sci Total Environ        ISSN: 0048-9697            Impact factor:   7.963


  8 in total

1.  The Impact of the hyperacid Ijen Crater Lake. Part II: A total diet study.

Authors:  Alex Heikens; Budi Widianarko; Inge C Dewi; Jan L M de Boer; Willem Seinen; Kees van Leeuwen
Journal:  Environ Geochem Health       Date:  2005-09       Impact factor: 4.609

2.  Assessment of groundwater quality in a region of endemic fluorosis in the northeast of Brazil.

Authors:  Consuelo Fernanda Macedo de Souza; José Ferreira Lima; Maria Soraya Pereira Franco Adriano; Fabíola Galbiatti de Carvalho; Franklin Delano Soares Forte; Rosimere de Farias Oliveira; Alexandre Pessoa Silva; Fábio Correia Sampaio
Journal:  Environ Monit Assess       Date:  2012-10-12       Impact factor: 2.513

3.  Enduring fluoride health hazard for the Vesuvius area population: the case of AD 79 Herculaneum.

Authors:  Pierpaolo Petrone; Michele Giordano; Stefano Giustino; Fabio M Guarino
Journal:  PLoS One       Date:  2011-06-16       Impact factor: 3.240

4.  Adsorption Behavior and Mechanism for the Uptake of Fluoride Ions by Reed Residues.

Authors:  Rong Song; Shengke Yang; Haiyang Xu; Zongzhou Wang; Yangyang Chen; Yanhua Wang
Journal:  Int J Environ Res Public Health       Date:  2018-01-09       Impact factor: 3.390

5.  Awareness of the Benefits and Risks Related to Using Fluoridated Toothpaste Among Doctors: A Population-Based Study.

Authors:  Yanhao Wang; Lin Jiang; Yong Zhao
Journal:  Med Sci Monit       Date:  2019-08-26

6.  High fluoride and low calcium levels in drinking water is associated with low bone mass, reduced bone quality and fragility fractures in sheep.

Authors:  M J K Simon; F T Beil; W Rüther; B Busse; T Koehne; M Steiner; P Pogoda; A Ignatius; M Amling; R Oheim
Journal:  Osteoporos Int       Date:  2014-04-29       Impact factor: 4.507

7.  Fluoride exposure and its health risk assessment in drinking water and staple food in the population of Dayyer, Iran, in 2013.

Authors:  Somayye Keshavarz; Afshin Ebrahimi; Mahnaz Nikaeen
Journal:  J Educ Health Promot       Date:  2015-12-30

8.  Geochemical processes controlling the groundwater chemistry and fluoride contamination in the Yuncheng Basin, China-An area with complex hydrogeochemical conditions.

Authors:  Wenting Luo; Xubo Gao; Xin Zhang
Journal:  PLoS One       Date:  2018-07-26       Impact factor: 3.240

  8 in total

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