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Romania
Citizenship:
Romania
Ph.D. degree award:
1999
Mr.
Radu
Burlica
Professor, dr.
Professor
-
UNIVERSITATEA TEHNICĂ "GHEORGHE ASACHI" IAŞI
Researcher | Teaching staff | Scientific reviewer | PhD supervisor
>20
years
Web of Science ResearcherID:
IAN-2877-2023
Personal public profile link.
Curriculum Vitae (29/04/2024)
Expertise & keywords
Electric
Non-Thermal plasma
Depollution technology
Projects
Publications & Patents
Entrepreneurship
Reviewer section
Double-sided bio-treatment of polymeric foil for food packaging using coupled DBD-Corona non-thermal plasma
Call name:
P 3 - SP 3.2 - Proiecte ERA.NET
ERANET-MANUNET-PlasmaPack
2020
-
2022
Role in this project:
Key expert
Coordinating institution:
UNIVERSITATEA TEHNICĂ "GHEORGHE ASACHI" IAŞI
Project partners:
UNIVERSITATEA TEHNICĂ "GHEORGHE ASACHI" IAŞI (RO); PROSUPPORT CONSULTING SRL (RO); Istanbul Technical University (TR); Poşetsan Ambalaj San. Ve Tic A.Ş. (TR)
Affiliation:
UNIVERSITATEA TEHNICĂ "GHEORGHE ASACHI" IAŞI (RO)
Project website:
http://www.plasmapack.ieeia.tuiasi.ro/
Abstract:
The advantages of polymeric food packaging are widely recognized but the improper sterilization and/or disinfection of inner surface of polymer in contact with food may represent a major risk in food safety. On the other hand, the next generation of food packaging should be suitable for incorporating e-labels and smart labels in order to improve the traceability of the food products. The most important issue is related to both inner and outer surfaces of polymeric foil treatment, playing an important role in packaging and should satisfy the expectations in respect to food safety and labelling quality. In this regard, non-thermal plasma (NTP) emerged as technology capable of increasing the surface energy of polymers, enhancing adhesion and printability, and has been successfully applied for surface decontamination of both food products and food packaging. Accordingly, PlasmaPack aims to develop a technology based on NTP plasma (coupled DBD-Corona discharges) for double-sided treatment of polymeric foil used in food packaging. This will lead to proper disinfection (sterilization) of inner surface and facilitates smart labels printing on outer surface.
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Experimental model for demonstrating the feasibility of increasing the therapeutic potential of wheat sprouts by treating them with non-thermal plasma activated water (PAW)
Call name:
P 2 - SP 2.1 - Proiect experimental - demonstrativ
PN-III-P2-2.1-PED-2019-0556
2020
-
2022
Role in this project:
Coordinating institution:
UNIVERSITATEA TEHNICĂ "GHEORGHE ASACHI" IAŞI
Project partners:
UNIVERSITATEA TEHNICĂ "GHEORGHE ASACHI" IAŞI (RO); UNIVERSITATEA DE MEDICINA SI FARMACIE "GRIGORE T. POPA" DIN IAŞI (RO); UNIVERSITATEA DE STIINTE AGRICOLE SI MEDICINA VETERINARA "ION IONESCU DE LA BRAD" (RO); CODALB-M.V. SRL (RO)
Affiliation:
UNIVERSITATEA TEHNICĂ "GHEORGHE ASACHI" IAŞI (RO)
Project website:
http://www.phytopaw.ieeia.tuiasi.ro/
Abstract:
The scope of this project is to develop an experimental device meant to demonstrate the feasibility of increasing the therapeutic potential of wheat sprouts (Triticum aestivum) by treating them with non-thermal activated water (PAW). The effect of natural products in the prophylaxis or even in the treatment of diseases is well known, since, in most cases, they have no side effects on the human body. Excellent results have been obtained following the introduction into the diet of natural products, even in cases considered incurable. Wheat sprouts are a rich source of nutrients (proteins, lipids, fibers, vitamins) and bioactive phytochemicals (BFT) (polyphenols, gamma-aminobutyric acid, etc.). The project propose the utilization of a non-thermal plasma-based technology (NTP) to produce plasma-activated water (PAW) aiming to increase the bioactive phytochemicals in wheat sprouts with benefits for human health and well-being. The technological innovation currently has been tested, as a small single laboratory unit, which can produce low concentrations of NO3- and H2O2 in water treated by non-thermal plasma. In order to bring this innovation to market, the key technical challenges of the proposal are referring to: the reactor/power supply scale-up to a laboratory complex equipment for PAW production, power supply optimization, long time tests of the complete system and correlation between the electrical parameters of the NTP with BFT produced by wheat sprouts.
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Atmospheric pressure nonthermal plasma reactor for preTREATment of pOlymeric substrates used in printable FLEXible electronics manufacturing
Call name:
P 3 - SP 3.2 - Proiecte ERA.NET
ERANET-MANUNET-III-Treatoflex
2020
-
2022
Role in this project:
Project coordinator
Coordinating institution:
UNIVERSITATEA TEHNICĂ "GHEORGHE ASACHI" IAŞI
Project partners:
UNIVERSITATEA TEHNICĂ "GHEORGHE ASACHI" IAŞI (RO); PROSUPPORT CONSULTING SRL (RO); FUNDACION I+D AUTOMOCION Y MECATRONICA (ES); MATEPRINCS (ES)
Affiliation:
UNIVERSITATEA TEHNICĂ "GHEORGHE ASACHI" IAŞI (RO)
Project website:
http://www.treatoflex.ieeia.tuiasi.ro
Abstract:
Flexible electronics also known as organic electronics is defining a category of electronic devices developed on a bendable substrate material (mainly polymers, but also paper) with the aim of addressing the current societal needs in terms of applications (e.g. increasing the energy production from renewable sources, improving energy efficiency, providing new diagnosis tolls for health system), targets which can be reached only by diminishing the production cost of the electronic and electrical devices. The herein proposal is aiming to foster the development of flexible printed electronics processes by proposing a solution to the disadvantages of the current manufacturing technology. Thus, the Consortium is proposing utilization of a plasma based technology for pretreating the surface of the polymeric substrate at atmospheric pressure and room temperature, in the absence of additional gases. The new technology which is to demonstrate high potential of being integrated at the level of screen printing and inkjet printing processes may impact significantly the economic situation of both SMEs and ensure their improved position within International supply chain.
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Evaluation of the activated water produced by different non-thermal plasma reactors
Call name:
P 3 - SP 3.1 - Proiecte de mobilități, România-Franța (bilaterale)
PN-III-P3-3.1-PM-RO-FR-2019-0213
2019
-
2021
Role in this project:
Key expert
Coordinating institution:
UNIVERSITATEA TEHNICĂ "GHEORGHE ASACHI" IAŞI
Project partners:
UNIVERSITATEA TEHNICĂ "GHEORGHE ASACHI" IAŞI (RO); GREMI-Site de Bourges, UMR7344, CNRS/Université d'Orléans (FR)
Affiliation:
UNIVERSITATEA TEHNICĂ "GHEORGHE ASACHI" IAŞI (RO)
Project website:
http://www.paw-ev.tuiasi.ro/
Abstract:
The main objective of the project is to obtain a complete evaluation of reactive species concentrations (especially NO3 and H2O2) into non-thermal plasma (NTP) activated water, PAW, when using different NTP reactors and different primary parameters (water flowrate, gas flowrate, electrical parameters). The obtained results will allow realizing a complete image in choosing the optimum conditions for producing PAW (reactor and primary operating parameters) for irrigating plants in different vegetation stages.
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An Enhanced Contact Plasma Reactor: A Competitive Remediation Technology for Per- and Perfluoroalkyl Substance (PFAS) Contaminated Water
Call name:
2019
-
2020
Role in this project:
Key expert
Coordinating institution:
Clarkson University, Potsdam, New York, USA
Project partners:
Clarkson University, Potsdam, New York, USA ()
Affiliation:
Clarkson University, Potsdam, New York, USA ()
Project website:
http://www.epa.us
Abstract:
Read more
Increasing the Agricultural Production in Greenhouses using Non- Thermal Plasma Activated Water Technology for Irrigation
Call name:
P 4 - Proiecte de Cercetare Exploratorie
PN-III-P4-ID-PCE-2016-0277
2017
-
2019
Role in this project:
Project coordinator
Coordinating institution:
UNIVERSITATEA TEHNICĂ "GHEORGHE ASACHI" IAŞI
Project partners:
UNIVERSITATEA TEHNICĂ "GHEORGHE ASACHI" IAŞI (RO)
Affiliation:
UNIVERSITATEA TEHNICĂ "GHEORGHE ASACHI" IAŞI (RO)
Project website:
http://www.awag.ieeia.tuiasi.ro/
Abstract:
The thematic of the project refers to the sustainable intensification of crop plants and systems of agriculture, by developing integrated, systems-based approaches to biomass increasing, organic pesticides and fertilizers, intensive land exploitation of greenhouses by using interdisciplinary and innovative technologies.
This project proposal aims implement some new methods of ecological and non-stressful treatment of plants for eliminating or reducing to a minimum of the quantity of chemical substances (pesticides) used for the protection of plants against the pathogen agents or for stimulating growth compounds (fertilizer).
The non-thermal plasma activated water (PAW) has a notable effect on the plants growing and pests elimination (bio-disinfection). PAW reduces the period of plants growing and increases the biomass and provides plants leaves disinfection and effective as bio fertilizer in the same time.
In addition, in order to obtain an intensive exploitation of greenhouses land use by increasing the biomass, the application of PAW treatments in the vegetation periods with high demand from the plant may have an increasing effect of biological resistance to the attacks of diseases (fungal and bacterial) manifested by crops grown in protected areas.
To emphasize the changes that occur due to PAW treatment on plant development stages specific horticultural tests and biochemical analysis in the leaves and fructification will be performed supplemented by numerous biometric phenological and production determinations.
It is expected to obtain stimulation of seeds germination, reducing the interval between sowing and growth Herbaceous energy annual crops species, a good development after planting, stimulating to increase foliar surface, increasing the number of flowers / plant, developing an immune system and finally the increasing economic competitiveness of plants yield.
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Reaction Processes in Organic Droplet Spray Plasma Reactors
Call name:
NSF-CBET-1236225
2012
-
2015
Role in this project:
Key expert
Coordinating institution:
Florida State University, Florida, USA
Project partners:
Florida State University, Florida, USA ()
Affiliation:
Florida State University, Florida, USA ()
Project website:
Abstract:
Read more
Water Spray in Atmospheric Pressure Electrical Discharge Plasma
Call name:
NSF-CBET-0932481
2009
-
2012
Role in this project:
Key expert
Coordinating institution:
National Science Foundation - Florida State University, USA
Project partners:
National Science Foundation - Florida State University, USA ()
Affiliation:
National Science Foundation - Florida State University, USA ()
Project website:
Abstract:
Read more
THE STUDY OF HYDROGEN PRODUCTION BY COLS PLASMA TECHNOLOGIES
Call name:
PNII– IDEI 331
2008
-
2011
Role in this project:
Project coordinator
Coordinating institution:
UNIVERSITATEA TEHNICĂ "GHEORGHE ASACHI" IAŞI
Project partners:
UNIVERSITATEA TEHNICĂ "GHEORGHE ASACHI" IAŞI (RO)
Affiliation:
UNIVERSITATEA TEHNICĂ "GHEORGHE ASACHI" IAŞI (RO)
Project website:
http://iota.ee.tuiasi.ro/~rburlica/IDEI331/Index.html
Abstract:
THE COLD PLASMA TECHNOLOGIES REFERS TO HYDROGEN PRODUCTION BY IDENTIFICATION OF NEW INNOVATIVE, EFFICIENT AND LOW COST METHODS , WHICH CAN BE APPLIED IN THE FIELD OF SUSTAINABLE SOURCES OF ENERGY, NON-POLLUTANT, IN CONFORMITY WITH NEW REQUIREMENTS OF ENVIRONMENT LEGISLATION. THE PREVIOUS RESEARCHES HAVE PROVED THEIR APPLICABILITY FOR HYDROGEN PRODUCTION BY REFORMING SOME ORGANIC COMPOUNDS AND THEY EMPHASIZED THE PRESENCE OF GASEOUS HYDROGEN BY EXPOSING PURE WATER TO PLASMA IN CONCENTRATION UP TO 3500 PPM. WE EXPECT THAT THROUGH THIS RESEARCH PROJECT, TO OBTAIN HYDROGEN BY COLD PLASMA TECHNOLOGIES AT HIGHER EFFICIENCY AND LOWER COST THAN THE CLASSICAL ELECTROLYSIS OF WATER. THE INNOVATIVE METHODS ARE REFERRING TO THE DEVELOPMENT OF COLD PLASMA REACTORS GLIDARC AND PLASMATRON TYPE. IN ORDER TO INCREASE THE HYDROGEN PRODUCTION EFFICIENCY THE FOLLOWING FACTORS WILL BE STUDIED: REACTOR GEOMETRY AND PARAMETERS, THE ELECTRODES AND WATER ATOMIZATION NOZZLE GEOMETRY; THE PHYSICAL AND CHEMICAL PARAMETER OF THE WATER (PH, CONDUCTIVITY); WATER ATOMIZATION DEGREE IN THE GAS FLOW; THE RATIO OF GAS/WATER VAPORS INJECTED INTO THE REACTOR; THE NATURE AND FLOW RATE THE WORKING GAS. THE RESULTS OBTAINED WILL BE CORRELATED WITH THE ELECTRICAL PARAMETER OF THE POWER SUPPLY FOR PLASMA GENERATION IN ORDER TO OBTAIN A MAXIMUM EFFICIENCY OF HYDROGEN PRODUCTION. THE OPTIMUM SOLUTION EMPHASIZED BY EXPERIMENTAL RESULTS WILL BE THE BASIS FOR THE DEVELOPMENT OF A PLASMATRON REACTOR FOR HYDROGEN PRODUCTION.
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Pulsed Gliding Arc Electrical Discharge Reactor
Call name:
FSU_GAP
2008
-
2009
Role in this project:
Key expert
Coordinating institution:
Florida State University, USA
Project partners:
Florida State University, USA ()
Affiliation:
Florida State University, USA ()
Project website:
Abstract:
Read more
Treatment and conditioning of wine with cold plasma
Call name:
CEEX-117/2006
2006
-
2008
Role in this project:
Key expert
Coordinating institution:
UNIVERSITATEA DE STIINTE AGRICOLE SI MEDICINA VETERINARA "ION IONESCU DE LA BRAD"
Project partners:
UNIVERSITATEA DE STIINTE AGRICOLE SI MEDICINA VETERINARA "ION IONESCU DE LA BRAD" ()
Affiliation:
UNIVERSITATEA DE STIINTE AGRICOLE SI MEDICINA VETERINARA "ION IONESCU DE LA BRAD" ()
Project website:
Abstract:
Read more
Laboratory for Advanced Chemical Reaction Engineering
Call name:
FSU_PEG
2005
-
2006
Role in this project:
Key expert
Coordinating institution:
Florida State University, USA
Project partners:
Florida State University, USA ()
Affiliation:
Florida State University, USA ()
Project website:
Abstract:
Read more
High voltage electro-chemical reactors for water pollution treatment
Call name:
NSF-NATO - DGE-0209555
2002
-
2003
Role in this project:
Key expert
Coordinating institution:
Florida State University
Project partners:
Florida State University ()
Affiliation:
Florida State University ()
Project website:
Abstract:
Read more
FILE DESCRIPTION
DOCUMENT
List of research grants as project coordinator or partner team leader
Significant R&D projects for enterprises, as project manager
R&D activities in enterprises
Peer-review activity for international programs/projects
[T: 0.3394, O: 298]