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ID 19949
Eprint ID
19949
FullText URL
Title Alternative
Continuous flow method for the determination of phosphorus using the fluorescence quenching of Rhodamine 6 G with molybdophosphate
Author
Motomizu, Shoji
Mikasa, Hiroshi
Oshima, Mitsuko
Toei, Kyoji
Abstract
Continuous flow method was examined for the determination of phosphorus. The molybdophosphate formed between orthophosphate and molybdate in hydrochloric acid medium diminished the fluorescence of Rhodamine 6 G. Carrier solution (distilled water) and reagent solution were propelled by double plunger pump P(1) and P(2) (flow rate : 0.98 ml/min), and sample solution(160μl) was injected into the carrier stream. The two streams were mixed in 20 cm long Teflon tubing (1 mm i.d.), and the mixture was flowed through a flow cell(18μl), at which the fluoresence of Rhodamine 6 G was detected(λ(ex) =350 nm, λ(em)=580 nm). The reagent solution consists of 0.035 M molybdenum and 1×10(-5) M Rhodamine 6 G in 0.8 M hydrochloric acid. Co-existing ions generally existing in river and sea waters did not interfere the determination of phosphorus. The calibration curve was linear from 0 to 45 ppb of phosphorus. The method was applied to sea water. The sampling rate was 20 samples per hour.
Keywords
continuous flow analysis of phosphorus by fluorophotometry
fluorescence quenching of Rhodamine 6 G with molybdophosphate
sea water
Published Date
1984-02-05
Publication Title
分析化学
Publication Title Alternative
Bunseki Kagaku
Volume
volume33
Issue
issue2
Publisher
日本分析化学会
Publisher Alternative
The Japan Society for Analytical Chemistry
Start Page
116
End Page
119
ISSN
0525-1931
NCID
AN00222633
Content Type
Journal Article
Official Url
http://www.journalarchive.jst.go.jp/japanese/jnlabstract_ja.php?cdjournal=bunsekikagaku1952&cdvol=33&noissue=2&startpage=116http://www.journalarchive.jst.go.jp/japanese/jnlabstract_ja.php?cdjournal=bunsekikagaku1952&cdvol=33&noissue=2&startpage=116
language
Japanese
Copyright Holders
The Japan Society for Analytical Chemistry
File Version
publisher
Refereed
True