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Plasma activated water (PAW) offers a sustainable, nonthermal solution for degrading persistent organic pollutants in industrial effluents. This study employed a gliding arc plasma system to generate PAW for treating diluted waste water…

等离子体物理 · 物理学 2026-01-06 Punit Kumar , Priti Saxena

Efficient sterilization of pathogens with cleaner methods is a critical concern for environmental disinfection and clinical anti-infective treatment. Plasma-activated water (PAW) is a promising alternative to chemical disinfectants and…

In this study, the impact of an air bubbler on the properties of plasma-activated water (PAW) was investigated in different configurations. A pencil plasma jet (PPJ) using a dielectric barrier discharge (DBD) was used to prepare PAW. In one…

等离子体物理 · 物理学 2023-02-15 Vikas Rathore , Nirav Jamnapara , Sudhir Kumar Nema

In the present work, a process of a selective generation of reactive oxygen species (ROS) such as H2O2 and dissolved O3 in plasma-activated water (PAW) is discussed. For selective ROS generation, pure CO2 was used as a plasma-forming gas.…

等离子体物理 · 物理学 2023-01-13 Vikas Rathore , Sudhir Kumar Nema

Cold atmospheric plasmas (CAP) are weakly ionized gases that can be generated in ambient air. They produce energetic species (e.g. electrons, metastables) as well as reactive oxygen species, reactive nitrogen species, UV radiations and…

应用物理 · 物理学 2018-02-21 Florian Judée , Stéphane Simon , Christophe Bailly , Thierry Dufour

Micronutrient deficiency in soils limits crop productivity and reduces the nutritional quality of cereals and pulses. Conventional fertilizer supplementation often suffers from low bioavailability and environmental losses. In this study, we…

其他定量生物学 · 定量生物学 2026-01-14 Punit Kumar , Priti Saxena , Abhishek Kumar Singh

Whether for materials processing or medical applications, the use of atmospheric pressure plasma jets (APPJs) has emerged as a relevant alternative to conventional methods. Within the APPJs research field, the search for innovation aims not…

等离子体物理 · 物理学 2025-12-22 Fellype do Nascimento , Ananias Alves Barbosa , Konstantin Georgiev Kostov

Cold air plasma typically generates reactive oxygen and nitrogen species (RONS), which are transported into water to produce plasma-activated water (PAW). This study examines the effect of PAW produced by three different plasma systems on…

等离子体物理 · 物理学 2025-11-18 Ramin Mehrabifard , Adriana Misuthova , Zdenko Machala

The plasma-liquid interaction is an important issue in plasma technology. The simulation of discharge in spherical bubbles in the water that produced plasma-activated water (PAW) is investigated using finite element methods (FEM) for a…

等离子体物理 · 物理学 2022-08-26 Niloofar Mohammadi Nahrani , Maryam Bahreini , Saeed Hasanpour Tadi

Cold atmospheric pressure plasma jets (APPJs) are non-equilibrium plasmas, that are capable of producing reactive oxygen and nitrogen species (RONS) at near-room temperature. Their interaction with water leads to the formation of…

等离子体物理 · 物理学 2025-10-30 Syon Bhattacharjee , Deepika Behmani , Sudeep Bhattacharjee

In this study, we investigate the effects of pre-germinative and post-germinative plasma treatments, applied separately or in combination, to improve maize germination and early seedling development. Pre-germinative treatment consists of…

As a threat to meeting the global demand for food created by the continued growth of the population, different methods are being applied to enhance seed germination and plant growth. This study investigates the effect of hydrogen-riched…

应用物理 · 物理学 2023-09-08 S. Mansory , M. Bahreini , S. H. Tadi

The integration of plasma activated water (PAW) with herbal infusions offers a sustainable approach to enhancing the functional bioactivity of plant derived compounds. In this study, neem (Azadirachta indica) and tulsi (Ocimum sanctum)…

等离子体物理 · 物理学 2026-01-14 Punit Kumar , Abhishek Kumar Singh , Priti Saxena

This study presents a novel and ecofriendly method for synthesizing ammonium nitrate using activated prepared through air and ammonia plasma treatments. Initially, PAW containing nitrate ions is produced by treating water with air plasma.…

等离子体物理 · 物理学 2024-05-29 Vikas Rathore , Vyom Desai , Nirav I Jamnapara , Sudhir Kumar Nema

In the present work we have conducted two studies. In the first study, we investigated the role of plasma-activated water (PAW) in algae growth inhibition and in the second study, efforts are made to understand the role of PAW as a nitrogen…

等离子体物理 · 物理学 2023-02-15 Vikas Rathore , Sudhir Kumar Nema

Cold atmospheric pressure plasmas can be used for treatment of living tissues or for inactivation of bacteria or biological macromolecules. The treatment is usually characterized by a combined effect of UV and VUV radiation, reactive…

等离子体物理 · 物理学 2015-05-28 S. Schneider , J. -W. Lackmann , F. Narberhaus , J. E. Bandow , B. Denis , J. Benedikt

This study explores plasma-activated water (PAW) effects on Common bean growth in laboratory and pot trials. Three treatments were assessed: PAW priming, spraying, and their combination. Laboratory trials showed no germination improvement.…

Due to advances in equipment and intense research on plasma biomedical applications over the past few years, plasma devices are now suitable for clinical use. It has been demonstrated that plasma sources can be designed in a way that…

等离子体物理 · 物理学 2025-09-04 Fellype do Nascimento , Bruno Henrique da Silva Leal , Konstantin Georgiev Kostov

The study investigates the potential of Plasma-Activated Water (PAW) as a nitrogen supplement in hydroponic cultivation (HS-N+PAW), specifically focusing on radish seed germination and plant growth. PAW, produced using a dielectric barrier…

等离子体物理 · 物理学 2024-04-29 Vikas Rathore , Sudhir Kumar Nema

A versatile linear dusty (complex) plasma device is designed to study the transport and dynamical behavior of dust particles in a large volume. Diffused inductively coupled plasma is generated in the background of argon gas. A novel…

等离子体物理 · 物理学 2016-05-25 Mangilal Choudhary , S. Mukherjee , P. Bandyopadhyay
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