Nitric Oxide Isotopic Analyzer Based on a Compact Dual-Modulation Faraday Rotation Spectrometer
We have developed a transportable spectroscopic nitrogen isotopic analyzer. The spectrometer is based on dual-modulation Faraday rotation spectroscopy of nitric oxide isotopologues with near shot-noise limited performance and baseline-free operation. Noise analysis indicates minor isotope (15NO) det...
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doaj-bef656e96c4c4391b94a657d71c4de522020-11-24T21:06:19ZengMDPI AGSensors1424-82202015-10-011510259922600810.3390/s151025992s151025992Nitric Oxide Isotopic Analyzer Based on a Compact Dual-Modulation Faraday Rotation SpectrometerEric Zhang0Stacey Huang1Qixing Ji2Michael Silvernagel3Yin Wang4Bess Ward5Daniel Sigman6Gerard Wysocki7Department of Electrical Engineering, Princeton University, Princeton, NJ 08544, USADepartment of Electrical Engineering, Princeton University, Princeton, NJ 08544, USADepartment of Geosciences, Princeton University, Princeton, NJ 08544, USADepartment of Electrical Engineering, Princeton University, Princeton, NJ 08544, USADepartment of Electrical Engineering, Princeton University, Princeton, NJ 08544, USADepartment of Geosciences, Princeton University, Princeton, NJ 08544, USADepartment of Geosciences, Princeton University, Princeton, NJ 08544, USADepartment of Electrical Engineering, Princeton University, Princeton, NJ 08544, USAWe have developed a transportable spectroscopic nitrogen isotopic analyzer. The spectrometer is based on dual-modulation Faraday rotation spectroscopy of nitric oxide isotopologues with near shot-noise limited performance and baseline-free operation. Noise analysis indicates minor isotope (15NO) detection sensitivity of 0.36 ppbv·Hz−1/2, corresponding to noise-equivalent Faraday rotation angle (NEA) of 1.31 × 10−8 rad·Hz−1/2 and noise-equivalent absorbance (αL)min of 6.27 × 10−8 Hz−1/2. White-noise limited performance at 2.8× the shot-noise limit is observed up to ~1000 s, allowing reliable calibration and sample measurement within the drift-free interval of the spectrometer. Integration with wet-chemistry based on acidic vanadium(III) enables conversion of aqueous nitrate/nitrite samples to gaseous NO for total nitrogen isotope analysis. Isotopic ratiometry is accomplished via time-multiplexed measurements of two NO isotope transitions. For 5 μmol potassium nitrate samples, the instrument consistently yields ratiometric precision below 0.3‰, thus demonstrating potential as an in situ diagnostic tool for environmental nitrogen cycle studies.http://www.mdpi.com/1424-8220/15/10/25992Faraday effectoptical sensing and sensorsspectroscopynitrogen cyclenitric oxideisotopic ratiometry |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Eric Zhang Stacey Huang Qixing Ji Michael Silvernagel Yin Wang Bess Ward Daniel Sigman Gerard Wysocki |
spellingShingle |
Eric Zhang Stacey Huang Qixing Ji Michael Silvernagel Yin Wang Bess Ward Daniel Sigman Gerard Wysocki Nitric Oxide Isotopic Analyzer Based on a Compact Dual-Modulation Faraday Rotation Spectrometer Sensors Faraday effect optical sensing and sensors spectroscopy nitrogen cycle nitric oxide isotopic ratiometry |
author_facet |
Eric Zhang Stacey Huang Qixing Ji Michael Silvernagel Yin Wang Bess Ward Daniel Sigman Gerard Wysocki |
author_sort |
Eric Zhang |
title |
Nitric Oxide Isotopic Analyzer Based on a Compact Dual-Modulation Faraday Rotation Spectrometer |
title_short |
Nitric Oxide Isotopic Analyzer Based on a Compact Dual-Modulation Faraday Rotation Spectrometer |
title_full |
Nitric Oxide Isotopic Analyzer Based on a Compact Dual-Modulation Faraday Rotation Spectrometer |
title_fullStr |
Nitric Oxide Isotopic Analyzer Based on a Compact Dual-Modulation Faraday Rotation Spectrometer |
title_full_unstemmed |
Nitric Oxide Isotopic Analyzer Based on a Compact Dual-Modulation Faraday Rotation Spectrometer |
title_sort |
nitric oxide isotopic analyzer based on a compact dual-modulation faraday rotation spectrometer |
publisher |
MDPI AG |
series |
Sensors |
issn |
1424-8220 |
publishDate |
2015-10-01 |
description |
We have developed a transportable spectroscopic nitrogen isotopic analyzer. The spectrometer is based on dual-modulation Faraday rotation spectroscopy of nitric oxide isotopologues with near shot-noise limited performance and baseline-free operation. Noise analysis indicates minor isotope (15NO) detection sensitivity of 0.36 ppbv·Hz−1/2, corresponding to noise-equivalent Faraday rotation angle (NEA) of 1.31 × 10−8 rad·Hz−1/2 and noise-equivalent absorbance (αL)min of 6.27 × 10−8 Hz−1/2. White-noise limited performance at 2.8× the shot-noise limit is observed up to ~1000 s, allowing reliable calibration and sample measurement within the drift-free interval of the spectrometer. Integration with wet-chemistry based on acidic vanadium(III) enables conversion of aqueous nitrate/nitrite samples to gaseous NO for total nitrogen isotope analysis. Isotopic ratiometry is accomplished via time-multiplexed measurements of two NO isotope transitions. For 5 μmol potassium nitrate samples, the instrument consistently yields ratiometric precision below 0.3‰, thus demonstrating potential as an in situ diagnostic tool for environmental nitrogen cycle studies. |
topic |
Faraday effect optical sensing and sensors spectroscopy nitrogen cycle nitric oxide isotopic ratiometry |
url |
http://www.mdpi.com/1424-8220/15/10/25992 |
work_keys_str_mv |
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