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Updated: May 23, 2025

Automated, High-resolution Mobile Collection System for the Nitrogen Isotopic Analysis of NOx
Published on: December 20, 2016
On-site total inorganic nitrogen determination in soil (pore-water) samples using portable ion chromatography
Kurt Debruille1, Yonglin Mai1, Eoin Murray2
1Australian Centre for Research on Separation Science (ACROSS), School of Natural Sciences (Chemistry), University of Tasmania, Sandy Bay, Hobart 7001, Tasmania, Australia. brett.paull@utas.edu.au.
Abstract:
A portable ion chromatograph (pIC) designed for nitrite and nitrate analysis has been modified with a post-column 3D-printed heated microreactor enabling simultaneous ammonium determination. This modification allows for the simultaneous detection of all three inorganic nitrogen nutrients in a single run within 15 minutes, using a sample volume as low as 10 microL. Coupled with a soil pore-water sampler and a portable vacuum pump, this method was tested in various field studies, demonstrating successful detection of all three nutrients. The modified system achieved a LOD of 0.1 mg L-1 and a LOQ of 0.25 mg L-1 for ammonium, showing a strong correlation with benchtop ion chromatography (IC): Pearson correlation coefficients reached 0.999 for NO3-, 0.991 for NO2-, and 0.993 for NH4+. To evaluate the robustness of this method, three experiments were conducted: Validation and detection of nitrogen nutrients in the field; intraday comparative analysis between benchtop IC and the pIC, and; on-site farm analysis over a 5 days period, comparing pIC results with the conventional grab-and-lab approach. The application of synthetic fertiliser at the sampling site before pore-water collection resulted in a 223% increase in NO3- concentrations and a 197% increase in NH4+ concentrations. The detected nutrient levels in fertilised soil pore-waters reached a maximum of 3.7 mg L-1 for NO2-, 1000.9 mg L-1 for NO3-, and 49.5 mg L-1 for NH4+.
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