Espial: Electrochemical Soil pH Sensor for In Situ Real-Time Monitoring

Author:

Eldeeb Mohammed A.1,Dhamu Vikram Narayanan1ORCID,Paul Anirban1ORCID,Muthukumar Sriram2,Prasad Shalini1ORCID

Affiliation:

1. Department of Bioengineering, University of Texas at Dallas, Richardson, TX 75080, USA

2. EnLiSense LLC, Allen, TX 75013, USA

Abstract

We present a first-of-its-kind electrochemical sensor that demonstrates direct real-time continuous soil pH measurement without any soil pre-treatment. The sensor functionality, performance, and in-soil dynamics have been reported. The sensor coating is a composite matrix of alizarin and Nafion applied by drop casting onto the working electrode. Electrochemical impedance spectroscopy (EIS) and squarewave voltammetry (SWV) studies were conducted to demonstrate the functionality of each method in accurately detecting soil pH. The studies were conducted on three different soil textures (clay, sandy loam, and loamy clay) to cover the range of the soil texture triangle. Squarewave voltammetry showed pH-dependent responses regardless of soil texture (while electrochemical impedance spectroscopy’s pH detection range was limited and dependent on soil texture). The linear models showed a sensitivity range from −50 mV/pH up to −66 mV/pH with R2 > 0.97 for the various soil textures in the pH range 3–9. The validation of the sensor showed less than a 10% error rate between the measured pH and reference pH for multiple different soil textures including ones that were not used in the calibration of the sensor. A 7-day in situ soil study showed the capability of the sensor to measure soil pH in a temporally dynamic manner with an error rate of less than 10%. The test was conducted using acidic and alkaline soils with pH values of 5.05 and 8.36, respectively.

Funder

Soil In Formation, PBC

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Control and Systems Engineering

Reference26 articles.

1. United Nations (2021). SDG Indicators, UN.

2. United Nations (2023, January 06). The Sustainable Development Goals Report. Available online: https://unstats.un.org/sdgs/report/2022/The-Sustainable-Development-Goals-Report-2022.pdf.

3. Global Assessment of Agricultural Productivity Losses from Soil Compaction and Water Erosion;Sonderegger;Environ. Sci. Technol.,2021

4. A Critical Review for Real-Time Continuous Soil Monitoring: Advantages, Challenges, and Perspectives;Fan;Environ. Sci. Technol.,2022

5. IoT and agriculture data analysis for smart farm. Comput;Muangprathub;Comput. Electron. Agric.,2019

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