MRI
MRI India Journals Vol. 14 No. 2s (2025): Special Issue: ICAESRTA-2K25

Microwave Sensor for Water Quality Testing

Authors

  • S. S. Chorage Electronics and Telecommunication Engineering, Bharati Vidyapeeth’s College of Engineering for women, Pune, India
  • Arpita Takalkar Electronics and Telecommunication Engineering, Bharati Vidyapeeth’s College of Engineering for women, Pune, India
  • Pooja Survase Electronics and Telecommunication Engineering, Bharati Vidyapeeth’s College of Engineering for women, Pune, India
  • Tanushree Shende Electronics and Telecommunication Engineering, Bharati Vidyapeeth’s College of Engineering for women, Pune, India

DOI:

https://doi.org/10.65521/intjournalrecadvengtech.v14i2s.1474

Keywords:

Complementary split-ring resonators (CSRR) Frequency(GHz) Vector Network Analyzer Microwave Sensor

Abstract

Water quality monitoring is vital to environmental sustainability, public health and industrial applications. Testing water quality requires laboratory analysis, which is both expensive and time-consuming. A cost-effective, real-time microwave sensing system for water quality assessment is presented in this study. We make use of various microwave resonators to measure water pollutants such as nitrates, phosphates and heavy metal substances, as well as pH levels. The suggested sensor array is capable of functioning at frequencies up to 1GHz to 10 GHz. The use of a GHz bandwidth allows for improved detection accuracy through broadband dielectric spectroscopy. Experimental evidence indicates that microwave sensing can detect and discriminate against a wide range of water contaminants with high sensitivity. This effort helps to develop compact, reusable and adaptable solutions for monitoring water quality.

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Published

2025-12-11

How to Cite

Chorage, S. S., Takalkar, A., Survase, P., & Shende, T. (2025). Microwave Sensor for Water Quality Testing. International Journal of Recent Advances in Engineering and Technology, 14(2s), 301–304. https://doi.org/10.65521/intjournalrecadvengtech.v14i2s.1474

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