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dc.contributor.advisorGill, Laurence
dc.contributor.authorO'Farrell, Clare
dc.date.accessioned2019-11-14T10:10:33Z
dc.date.available2019-11-14T10:10:33Z
dc.date.issued2012
dc.identifier.citationClare O'Farrell, 'A continuous flow arsenic removal system using solar oxidation', [thesis], Trinity College (Dublin, Ireland). Department of Civil, Structural and Environmental Engineering, 2012, pp 264
dc.identifier.otherTHESIS 10038
dc.description.abstractIt is estimated that over 100 million people worldwide are drinking water contaminated with arsenic. The World Health Organisation (WHO) set the maximum contaminant level for arsenic at 10μg/l in 1996 as it is not only carcinogenic, but is associated with numerous other potentially fatal diseases. An extensive borehole drilling programme started in the 1970s by UNICEF in Bangladesh in order to protect the local population from having to use bacterially contaminated surface waters. However, unknowingly, this caused 'the largest mass poisoning of a population in history' according to the WHO, as the groundwater extraction triggered the release of arsenic from the anaerobic sediments laid down over the years by the rivers Ganges and Brahmaputra in their delta regions.
dc.format1 volume
dc.language.isoen
dc.publisherTrinity College (Dublin, Ireland). Department of Civil, Structural and Environmental Engineering
dc.relation.isversionofhttp://stella.catalogue.tcd.ie/iii/encore/record/C__Rb15349668
dc.subjectCivil, Structural and Environmental Engineering, Ph.D.
dc.subjectPh.D. Trinity College Dublin.
dc.titleA continuous flow arsenic removal system using solar oxidation
dc.typethesis
dc.type.supercollectionthesis_dissertations
dc.type.supercollectionrefereed_publications
dc.type.qualificationlevelDoctoral
dc.type.qualificationnameDoctor of Philosophy (Ph.D.)
dc.rights.ecaccessrightsopenAccess
dc.format.extentpaginationpp 264
dc.description.noteTARA (Trinity’s Access to Research Archive) has a robust takedown policy. Please contact us if you have any concerns: rssadmin@tcd.ie
dc.identifier.urihttp://hdl.handle.net/2262/90491


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