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dc.contributor.authorStaden JJ van
dc.contributor.authorCleven RFMJ
dc.date.accessioned2012-12-12T22:36:27Z
dc.date.available2012-12-12T22:36:27Z
dc.date.issued1992-03-31
dc.identifier211601004
dc.identifier.urihttp://hdl.handle.net/10029/261590
dc.description.abstractAbstract niet beschikbaar
dc.description.abstractA flow injection method (FIA) for the determination of hydronium in rainwater has been developed and optimized. The lower limit of detection is 2.7 mumol/L-3O+ and the upper limit of detection is 180 mumol/L H-3O+. The standard deviation in the working range is less then 1.5 mumol/L H-3O+. Comparison with the titrimetric method showed a small difference of -2.1 mumol/L H-3O+. Comparison with the hydronium concentration calculated from the pH showed a significant difference of 3.6 mumol/L H-3O+.
dc.description.sponsorshipRIVM
dc.format.extent18 p
dc.language.isonl
dc.relation.ispartofRIVM Rapport 211601004
dc.relation.urlhttp://www.rivm.nl/bibliotheek/rapporten/211601004.html
dc.subject18nl
dc.titleFlowinjectie-analyse (FIA) voor de bepaling van hydronium in regenwater: applicatie en vergelijkbaarheidnl
dc.title.alternativeFlow injection method for the determination of hydronium in rainwater; application and comparisonen
dc.typeReport
dc.date.updated2012-12-12T22:36:28Z
html.description.abstractAbstract niet beschikbaar
html.description.abstractA flow injection method (FIA) for the determination of hydronium in rainwater has been developed and optimized. The lower limit of detection is 2.7 mumol/L-3O+ and the upper limit of detection is 180 mumol/L H-3O+. The standard deviation in the working range is less then 1.5 mumol/L H-3O+. Comparison with the titrimetric method showed a small difference of -2.1 mumol/L H-3O+. Comparison with the hydronium concentration calculated from the pH showed a significant difference of 3.6 mumol/L H-3O+.


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