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dc.contributor.authorElmore, Andrew Curtiseng
dc.contributor.authorCrow, Mariesaeng
dc.contributor.corporatenameUniversity of Missouri (System)eng
dc.contributor.meetingnameMissouri Energy Summit (2009 : University of Missouri--Columbia)eng
dc.date.issued2009-04eng
dc.descriptionTrack I: Power Generationeng
dc.descriptionIncludes audio file (22 min.)eng
dc.description.abstractEmergency relief efforts commonly include the provision of safe drinking water to populationswhose normal water supplies have been disrupted. An alternative to the shipment of bottledwater to the impacted areas is the disinfection of locally available water which may be contaminated with microbiological pathogens. An ideal system would provide reliable water treatment without requiring chemicals or other supplies which would require periodic replacement while in storage. Another desirable feature would be the ability to operate without requiring portable electrical generators which, along with the fuel necessary to operate them, may be in short supply during emergency situations. To address these needs, a trailer-mounted self-powered water disinfection system was constructed and successfully field tested. The primary components of the system included an array of photovoltaic panels to generate electrical energy, an ultracapacitor to provide robust energy storage, and a certified ultraviolet light systemto provide disinfection. Additionally, pretreatment was included to address aesthetic wate rquality issues and to improve the clarity of the raw water prior to disinfection. The conceptual design of the system included the use of a small wind turbine, but it was found to be not necessary because the solar panels provided sufficient power to operate the disinfection unit. The elimination of the wind turbine has several technical, cost, deployability, and safety advantages. It is anticipated that the system may have both civilian relief and military applications.eng
dc.identifier.urihttp://hdl.handle.net/10355/517eng
dc.languageEnglisheng
dc.relation.ispartofPresentations (Missouri Energy Summit 2009)eng
dc.relation.ispartofcommunityUniversity of Missouri System. Missouri Summits. Missouri Energy Summit 2009eng
dc.subjectPower Generationeng
dc.subjectsafe drinking watereng
dc.subjectenergy storageeng
dc.subjectwater disinfection systemeng
dc.subject.lcshSolar energyeng
dc.subject.lcshWater -- Purification -- Disinfectioneng
dc.titleUsing a PV system to power an emergency water disinfection systemeng
dc.typePresentationeng


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