Investigation on physical properties of nanobubbled water using gas water circulation method: Environmental perspective

Author:

Joy Nivin1ORCID,Senthilkumar Gnanamani1ORCID,Logesh Periya Gurusamy1,Hariharan Ravi1

Affiliation:

1. Department of Mechanical Engineering Sathyabama Institute of Science and Technology Chennai India

Abstract

AbstractThe objective of this present study is to examine the effect of nanobubbles on the physical properties improvement in the chosen water sample. So far, the research outcomes stated that the physical properties could be enhanced by addition of nanoparticles, but very few studies were performed with nanobubbles. The unique properties of nanobubbles (70–120 nanometers) explain their use in a wide range of engineering fields. Simple method for producing nanobubbles in a variety of aqueous solutions along with examples of their use is outlined in this work. Global environmental issues, including the deterioration and depletion of water supply are driving today's need for water treatment technology. As a solution, the use of micro‐ and nano‐bubble (MNB) technologies in wastewater treatment has evolved. This page discuss the fundamentals of water treatment research, including their stability of bubbles, manufacturing processes, and chemical and physical features.

Publisher

Wiley

Subject

Management, Monitoring, Policy and Law,Public Health, Environmental and Occupational Health,Pollution,Waste Management and Disposal

Reference27 articles.

1. An experimental investigation of presence and properties of nanobubbles observed at the solid‐liquid interface;Agrawal A.;Journal of Colloid and Interface Science,2018

2. Controlling the Location and Spatial Extent of Nanobubbles Using Hydrophobically Nanopatterned Surfaces

3. Status of the three-phase line tension: a review

4. Patterns of hydrogen bonding in water and ice

5. Bridging Bubbles between Hydrophobic Surfaces

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