Sun et al., 2020 - Google Patents
A review on hydrodynamic cavitation disinfection: The current state of knowledgeSun et al., 2020
- Document ID
- 4527121803220090992
- Author
- Sun X
- Liu J
- Ji L
- Wang G
- Zhao S
- Yoon J
- Chen S
- Publication year
- Publication venue
- Science of the Total Environment
External Links
Snippet
Disinfection, which aims to eliminate pathogenic microorganisms, is an essential step of water treatment. Hydrodynamic cavitation (HC) has emerged as a promising technology for large-scale disinfection without introducing new chemicals. HC, which can effectively induce …
- 230000000249 desinfective 0 title abstract description 128
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Sun et al. | A review on hydrodynamic cavitation disinfection: The current state of knowledge | |
Onumaegbu et al. | Pre-treatment methods for production of biofuel from microalgae biomass | |
Yi et al. | Degradation of organic wastewater by hydrodynamic cavitation combined with acoustic cavitation | |
Gogate | Hydrodynamic cavitation for food and water processing | |
Wang et al. | Hydrodynamic cavitation as a promising route for wastewater treatment–A review | |
Sun et al. | Disinfection characteristics of an advanced rotational hydrodynamic cavitation reactor in pilot scale | |
Sun et al. | Hydrodynamic cavitation: A promising technology for industrial-scale synthesis of nanomaterials | |
Asaithambi et al. | Hydrodynamic cavitation and its application in food and beverage industry: A review | |
Gogate et al. | Hydrodynamic cavitation reactors: a state of the art review | |
Sivakumar et al. | Wastewater treatment: a novel energy efficient hydrodynamic cavitational technique | |
Simpson et al. | 110th Anniversary: comparison of cavitation devices based on linear and swirling flows: hydrodynamic characteristics | |
US8709750B2 (en) | Method for processing an algae medium containing algae microorganisms to produce algal oil and by-products | |
US9944964B2 (en) | Processes for increasing bioalcohol yield from biomass | |
JP2011523372A (en) | Method for designing hydrodynamic cavitation reactors for process enhancement | |
Peshkovsky | From research to production: overcoming scale-up limitations of ultrasonic processing | |
Wang et al. | Hydrodynamic cavitation and its application in water treatment combined with ozonation: A review | |
Crudo et al. | Process intensification in food industry: Hydrodynamic and acoustic cavitation for fresh milk treatment | |
US10093953B2 (en) | Processes for extracting carbohydrates from biomass and converting the carbohydrates into biofuels | |
Yadav et al. | Microbial disinfection of water using hydrodynamic cavitational reactors | |
US20140099687A1 (en) | Processes for extracting carbohydrates from biomass and converting the carbohydrates into biofuels | |
US20150359247A1 (en) | Wine processing and liquid processing apparatus and methods | |
Kawadkar et al. | Intensified depolymerization using ultrasound–A review of mechanisms, reactors, operating conditions and applications | |
Lei et al. | Research progress of hydrodynamic cavitation reactors in the field of water treatment: A review | |
CN109748353B (en) | Device and method for water treatment based on fluid control microbubble-ozone coupling | |
Gogate et al. | Cavitation generation and usage without ultrasound: hydrodynamic cavitation |