4.6 Article

Low cost, portable voltammetric sensors for rapid detection of nitrate in soil

Journal

ELECTROCHIMICA ACTA
Volume 446, Issue -, Pages -

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.electacta.2023.142077

Keywords

Nitrate; Cadmium sulfide; Screen printed electrodes; On -site detection; Soil samples

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The excessive use of nitrate fertilizer in agriculture has caused significant economic loss and environmental pollution. Hence, the development of a rapid sensing platform for on-site nitrate detection is crucial for environmental and agricultural purposes. This study presents a platform composed of an easily conducted extraction filter (ECEF) and a sensing element based on modified cadmium sulfide nanorods (CdS NRs) screen printed electrode (CdS NRs-SPE), enabling easy extraction of nitrate from soil in 3 minutes and direct detection of nitrate within 10 minutes with a detection limit of 2.3 μM and a linear range from 0.05 to 5 mM. The portable and low-cost CdS NRs-SPEs can be reused for over a month without significant loss of performance, showing promising application for intelligent nitrogen management and precise fertilization in modern agriculture.
The excessive use of nitrate fertilizer in agriculture has been a serious problem causing giant economic loss and environment pollution. Therefore, nitrate sensing in soil is very important for environment and agriculture. In this work, we develop a rapid sensing platform for on-site nitrate detection, which is composed of an easily conducted extraction filter (ECEF) and a sensing element based on cadmium sulfide nanorods (CdS NRs) modified screen printed electrode (CdS NRs-SPE). Nitrate extraction from soil can be easily conducted by ECEF in 3 min using a syringe coupled with a filter. The extracted solution is subsequently injected onto the CdS NRs-SPE, which can directly detect nitrate in neutral media within 10 min. The detection limit of nitrate is 2.3 mu M (S/N = 3) and a linear range from 0.05 to 5 mM. Moreover, the CdS NRs-SPEs are portable, low cost (3 dollars), and can be reused for over one month without significant loss of the performance, implying its promising application for intelligent nitrogen-management and developing precise fertilization in modern agriculture.

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