Difference between revisions of "Case studies and applications"
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*Geogenic Contamination Handbook: Please find the PDF [http://www.eawag.ch/fileadmin/Domain1/Forschung/Menschen/Trinkwasser/Wrq/Handbook/geogenic-contamination-handbook-chapter9.pdf here] of the complete handbook chapter "Case studies and applications". | *Geogenic Contamination Handbook: Please find the PDF [http://www.eawag.ch/fileadmin/Domain1/Forschung/Menschen/Trinkwasser/Wrq/Handbook/geogenic-contamination-handbook-chapter9.pdf here] of the complete handbook chapter "Case studies and applications". | ||
*Handbook chapters on GAP Wiki:[[Implementation of defluoridation filters in Ethiopia]], [[Assessing stakeholder preferences in Bangladesh]], [[Multi-criteria decision analysis to evaluate fluoride-removal options in Ethiopia]][[Evaluating fluoride intake via food and water using a Material Flow Analysis]] | *Handbook chapters on GAP Wiki:[[Implementation of defluoridation filters in Ethiopia]], [[Assessing stakeholder preferences in Bangladesh]], [[Multi-criteria decision analysis to evaluate fluoride-removal options in Ethiopia]][[Evaluating fluoride intake via food and water using a Material Flow Analysis]] | ||
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Revision as of 12:43, 31 May 2017
NOTE: Article from the Geogenic Contamination Handbook
The concepts described in Geogenic Contamination Handbook were developed and tested in two major case studies: one on arsenic contamination in Bangladesh and one on fluoride contamination in the Ethiopian Rift Valley. This section contains both major case studies and further applications.
References and handbook chapters
- For references, please visit the page References - Geogenic Contamination Handbook.
- Geogenic Contamination Handbook: Please find the PDF here of the complete handbook chapter "Case studies and applications".
- Handbook chapters on GAP Wiki:Implementation of defluoridation filters in Ethiopia, Assessing stakeholder preferences in Bangladesh, Multi-criteria decision analysis to evaluate fluoride-removal options in EthiopiaEvaluating fluoride intake via food and water using a Material Flow Analysis