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DOI will be assigned to every published paper at no additional charge. 📢 Call for Papers — Volume 13, Issue 9 (September 2026) | Submission Deadline: September 30, 2026 | Rapid peer review: 2–3 days | Impact Factor: 7.37 (SJIF 2026)

Paper Details

📄 IJAERD-OJS-6091

“A REVIEW ON HYDRODYNAMIC CAVITATION”

Author(s):Mayuri Parmar, Pratibha Gautam, Priyanka Misrty, Harshit Patel, Karan Solanki
Institution:UG Student, Department of Environment science and technology Shroff SR Rotary Institute of Chemical Technology, Vataria
Published In:Vol. 4, Issue 13 — January 2017
Page No.:-
Domain:Engineering
Type:Research Paper
ISSN (Online):2348-4470
ISSN (Print):2348-6406
Abstract

Waste water treatment is practiced using a number of physical, physico-chemical and biological methods oftreatment. Quality of waste water can be defined by the presence various biodegradable and non-biodegradablepollutants, out of which Chemical Oxygen Demand (COD) has been considered as one of the major pollutants in theindustrial effluent.In order to achieve desired level of COD reduction, numbers of conventional processes are available but because of theirlow efficiency these processes are nowadays being replaced by advanced oxidation processes (AOPs). Different AOPssuch as Fenton, electro-Fenton, and electro-oxidation etc. have been observed to give better results in terms of CODreduction but at the same time they are associated with other operational restrictions such as huge chemical requirementand excessive sludge generation.Hydrodynamic cavitation has emerged as promising technology for COD reduction as it does not require chemicals andsludge generation is also very less in this process. This process results in sudden drop and increase of pressure in aliquid, which creates cavities and bubbles followed by sudden and violent collapse. This process results in generation ofshock waves leading to generation of hydroxyl free radical. This hydroxyl free radical causes the development oflocalized forces which have destructive effects on the solids in dispersions, emulsions and slurries affecting particle sizeand distribution resulting to reduction in COD.Therefore, through this review paper an attempt will be made to combine hydrodynamic cavitation with one on the AOPso that on the one hand, overall efficiency of the COD removal can be improved and on the other hand, chemicalrequirement and sludge generation can be reduced.

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🕮 How to Cite

Mayuri Parmar, Pratibha Gautam, Priyanka Misrty, Harshit Patel, Karan Solanki, ““A REVIEW ON HYDRODYNAMIC CAVITATION””, International Journal of Advance Engineering and Research Development (IJAERD), Vol. 4, Issue 13, pp. -, January 2017.

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Vol. 13 | Issue 9
September 2026