A compact multi-parameter detection system based on hydrodynamic sequential injection for sensitive determination of phosphate, nitrite, and nitrate in water samples

© The Royal Society of Chemistry 2020. A miniaturized microfluidic hydrodynamic sequential injection system for multi-parameter analysis with a sensitive colorimetric detection was developed to improve the analytical performance for the measurement of phosphate, nitrite, and nitrate based on molybde...

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Main Authors: Wanpen Khongpet, Pattama Yanu, Somkid Pencharee, Chanida Puangpila, Supaporn Kradtap Hartwell, Somchai Lapanantnoppakhun, Yutdanai Yodthongdee, Autchara Paukpol, Jaroon Jakmunee
Format: Journal
Published: 2020
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http://cmuir.cmu.ac.th/jspui/handle/6653943832/68292
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Institution: Chiang Mai University
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spelling th-cmuir.6653943832-682922020-04-02T15:26:00Z A compact multi-parameter detection system based on hydrodynamic sequential injection for sensitive determination of phosphate, nitrite, and nitrate in water samples Wanpen Khongpet Pattama Yanu Somkid Pencharee Chanida Puangpila Supaporn Kradtap Hartwell Somchai Lapanantnoppakhun Yutdanai Yodthongdee Autchara Paukpol Jaroon Jakmunee Chemical Engineering Chemistry Engineering © The Royal Society of Chemistry 2020. A miniaturized microfluidic hydrodynamic sequential injection system for multi-parameter analysis with a sensitive colorimetric detection was developed to improve the analytical performance for the measurement of phosphate, nitrite, and nitrate based on molybdenum blue and Griess methods. A homemade colorimetric detection with a light emitting diode as a light source and phototransistor light sensor was integrated into the microfluidic platform to achieve a low cost compact system with low reagent consumption and high sensitivity. Under the optimized working conditions, a linear calibration graph of phosphate (two working range), nitrite and nitrate (as nitrogen, N) in the range of 0.01-0.1 and 0.3-1.0 mg of PO43- P L-1, 0.005-0.05 mg of NO2- N L-1 and 0.01-0.12 mg of NO3- N L-1, respectively were achieved with a sample-throughput of 10 h-1. The limit of detections were 0.005 mg of PO43- P L-1, 0.0026 mg of NO2- N L-1 and 0.005 mg of NO3- N L-1. The percentage of recovery for phosphate, nitrite, and nitrate were 90.3-115.0, 90.0-117.0 and 91.3-117.0, respectively, with relative standard deviations in the range of 1.07-4.90%. Capabilities of the developed device for consecutive analysis of multiple analytes were demonstrated to be an excellent choice for water quality monitoring. 2020-04-02T15:24:24Z 2020-04-02T15:24:24Z 2020-02-14 Journal 17599679 17599660 2-s2.0-85079656078 10.1039/c9ay02327e https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85079656078&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/68292
institution Chiang Mai University
building Chiang Mai University Library
country Thailand
collection CMU Intellectual Repository
topic Chemical Engineering
Chemistry
Engineering
spellingShingle Chemical Engineering
Chemistry
Engineering
Wanpen Khongpet
Pattama Yanu
Somkid Pencharee
Chanida Puangpila
Supaporn Kradtap Hartwell
Somchai Lapanantnoppakhun
Yutdanai Yodthongdee
Autchara Paukpol
Jaroon Jakmunee
A compact multi-parameter detection system based on hydrodynamic sequential injection for sensitive determination of phosphate, nitrite, and nitrate in water samples
description © The Royal Society of Chemistry 2020. A miniaturized microfluidic hydrodynamic sequential injection system for multi-parameter analysis with a sensitive colorimetric detection was developed to improve the analytical performance for the measurement of phosphate, nitrite, and nitrate based on molybdenum blue and Griess methods. A homemade colorimetric detection with a light emitting diode as a light source and phototransistor light sensor was integrated into the microfluidic platform to achieve a low cost compact system with low reagent consumption and high sensitivity. Under the optimized working conditions, a linear calibration graph of phosphate (two working range), nitrite and nitrate (as nitrogen, N) in the range of 0.01-0.1 and 0.3-1.0 mg of PO43- P L-1, 0.005-0.05 mg of NO2- N L-1 and 0.01-0.12 mg of NO3- N L-1, respectively were achieved with a sample-throughput of 10 h-1. The limit of detections were 0.005 mg of PO43- P L-1, 0.0026 mg of NO2- N L-1 and 0.005 mg of NO3- N L-1. The percentage of recovery for phosphate, nitrite, and nitrate were 90.3-115.0, 90.0-117.0 and 91.3-117.0, respectively, with relative standard deviations in the range of 1.07-4.90%. Capabilities of the developed device for consecutive analysis of multiple analytes were demonstrated to be an excellent choice for water quality monitoring.
format Journal
author Wanpen Khongpet
Pattama Yanu
Somkid Pencharee
Chanida Puangpila
Supaporn Kradtap Hartwell
Somchai Lapanantnoppakhun
Yutdanai Yodthongdee
Autchara Paukpol
Jaroon Jakmunee
author_facet Wanpen Khongpet
Pattama Yanu
Somkid Pencharee
Chanida Puangpila
Supaporn Kradtap Hartwell
Somchai Lapanantnoppakhun
Yutdanai Yodthongdee
Autchara Paukpol
Jaroon Jakmunee
author_sort Wanpen Khongpet
title A compact multi-parameter detection system based on hydrodynamic sequential injection for sensitive determination of phosphate, nitrite, and nitrate in water samples
title_short A compact multi-parameter detection system based on hydrodynamic sequential injection for sensitive determination of phosphate, nitrite, and nitrate in water samples
title_full A compact multi-parameter detection system based on hydrodynamic sequential injection for sensitive determination of phosphate, nitrite, and nitrate in water samples
title_fullStr A compact multi-parameter detection system based on hydrodynamic sequential injection for sensitive determination of phosphate, nitrite, and nitrate in water samples
title_full_unstemmed A compact multi-parameter detection system based on hydrodynamic sequential injection for sensitive determination of phosphate, nitrite, and nitrate in water samples
title_sort compact multi-parameter detection system based on hydrodynamic sequential injection for sensitive determination of phosphate, nitrite, and nitrate in water samples
publishDate 2020
url https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85079656078&origin=inward
http://cmuir.cmu.ac.th/jspui/handle/6653943832/68292
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