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April 29, 2026Plasma Processes and Polymers1 citations

Design and Development of a Multipin Dielectric Barrier Discharge System for Plasma‐Activated Water Production: Evaluation of Fresh and Stored PAW for Antimicrobial Activity, Seed Germination, and Plant Growth

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VRVikas RathoreTBTejal BarkhadeATArlee Tamman

Key Points

  • This research aimed to develop a multipin dielectric barrier discharge system for plasma-activated water production and evaluate its effects on plant growth and antimicrobial activity.
  • Developed a multipin dielectric barrier discharge (MP-DBD) system for plasma-activated water (PAW) generation.
  • Assessed physicochemical and antimicrobial properties of fresh and stored PAW.
  • Evaluated seed germination and plant growth in multiple species using PAW.
  • PAW stored at 0°C retained high levels of reactive oxygen and nitrogen species (RONS) and oxidative potential.
  • Fresh PAW showed strong antimicrobial activity against bacteria and fungi through oxidative damage.
  • PAW treatment improved seed germination, seedling vigor, and root-shoot growth across 12 plant species.

Abstract

ABSTRACT A multipin dielectric barrier discharge (MP‐DBD) system was developed to generate plasma‐activated water (PAW), and its physicochemical, antimicrobial, and plant growth–promoting properties were assessed. Results showed PAW stored at 0°C retained the highest RONS levels and oxidative potential over 30 days. Both fresh (PAW‐0) and stored (PAW‐30) PAW showed strong antimicrobial activity against bacteria and fungi through oxidative and acidic membrane damage. Seeds treatment with PAW reduced microbial contamination and improved sensory quality, germination, and seedling vigor compared to demineralized and tap water. Across 12 plant species, PAW enhanced root–shoot growth and biomass, with PAW‐0 performing best due to short‐lived reactive species. Hence, MP‐DBD PAW offers a stable, sustainable medium for microbial control and plant growth enhancement.

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Cite This Study

Rathore et al. (2026) studied this question.

synapsesocial.com/papers/69f154c0879cb923c4944f9ehttps://doi.org/10.1002/ppap.70175
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