Development of an innovative technology for an ultrasonic air pollution filter (Q122654): Difference between revisions

From EU Knowledge Graph
Jump to navigation Jump to search
(‎Removed claim: summary (P836): The project involves carrying out research and then implementing an innovative solution to the Applicant in the form of an energy-efficient, ultrasound filter of air pollutants that uses the phenomenon of coagulation and an ultrasound left at a gas establishment. The resulting filter will be characterised by occasional necessity of service and a high capacity of air filtration mainly for the smallest and most harmful particles, inter alia. MP2...)
(‎Created claim: summary (P836): The project involves carrying out research work and then implementing an innovative solution in the form of an energy-saving, ultrasonic air pollutant filter using the phenomenon of coagulation and ultrasonic levitation in the gas centre. The resulting filter will be characterised by an occasional need for servicing and high efficiency in air filtering, mainly in relation to the smallest and most harmful particles, among others. MP2,5, PM10 and...)
Property / summary
 
The project involves carrying out research work and then implementing an innovative solution in the form of an energy-saving, ultrasonic air pollutant filter using the phenomenon of coagulation and ultrasonic levitation in the gas centre. The resulting filter will be characterised by an occasional need for servicing and high efficiency in air filtering, mainly in relation to the smallest and most harmful particles, among others. MP2,5, PM10 and others. The use of an innovative high-energy ultrasonic filtering method is a breakthrough in large-scale air purification technology. This will be possible thanks to the use of amplifiers in impulse technology and high-performance ceramic piezoelectric converters constructed in sandwich technology while using an energy concentrator and a radiating board for impedance matching. (English)
Property / summary: The project involves carrying out research work and then implementing an innovative solution in the form of an energy-saving, ultrasonic air pollutant filter using the phenomenon of coagulation and ultrasonic levitation in the gas centre. The resulting filter will be characterised by an occasional need for servicing and high efficiency in air filtering, mainly in relation to the smallest and most harmful particles, among others. MP2,5, PM10 and others. The use of an innovative high-energy ultrasonic filtering method is a breakthrough in large-scale air purification technology. This will be possible thanks to the use of amplifiers in impulse technology and high-performance ceramic piezoelectric converters constructed in sandwich technology while using an energy concentrator and a radiating board for impedance matching. (English) / rank
 
Normal rank
Property / summary: The project involves carrying out research work and then implementing an innovative solution in the form of an energy-saving, ultrasonic air pollutant filter using the phenomenon of coagulation and ultrasonic levitation in the gas centre. The resulting filter will be characterised by an occasional need for servicing and high efficiency in air filtering, mainly in relation to the smallest and most harmful particles, among others. MP2,5, PM10 and others. The use of an innovative high-energy ultrasonic filtering method is a breakthrough in large-scale air purification technology. This will be possible thanks to the use of amplifiers in impulse technology and high-performance ceramic piezoelectric converters constructed in sandwich technology while using an energy concentrator and a radiating board for impedance matching. (English) / qualifier
 
point in time: 21 October 2020
Timestamp+2020-10-21T00:00:00Z
Timezone+00:00
CalendarGregorian
Precision1 day
Before0
After0

Revision as of 10:04, 21 October 2020

Project in Poland financed by DG Regio
Language Label Description Also known as
English
Development of an innovative technology for an ultrasonic air pollution filter
Project in Poland financed by DG Regio

    Statements

    0 references
    1,823,353.53 zloty
    0 references
    437,604.85 Euro
    13 January 2020
    0 references
    2,465,596.4 zloty
    0 references
    591,743.14 Euro
    13 January 2020
    0 references
    73.95 percent
    0 references
    1 October 2019
    0 references
    30 April 2021
    0 references
    IT BUSINESS CONSULTING GROUP, SPÓŁKA Z OGRANICZONĄ ODPOWIEDZIALNOŚCIĄ
    0 references
    0 references
    Projekt zakłada przeprowadzenie prac badawczych a następnie wdrożenie do działalności Wnioskodawcy innowacyjnego rozwiązania w postaci energooszczędnego, ultradźwiękowego filtra zanieczyszczeń powietrza, wykorzystującego zjawisko koagulacji oraz lewitacji ultradźwiękowej w ośrodku gazowym. Powstały w wyniku projektu filtr charakteryzować się będzie sporadyczną koniecznością serwisowania oraz wysoką sprawnością w filtrowaniu powietrza głównie względem najdrobniejszych i najbardziej szkodliwych cząstek m.in. MP2,5, PM10 i innych. Zastosowanie innowacyjnej metody filtrowania z wykorzystaniem ultradźwiękowej fali stojącej dużej energii stanowi przełom w technologii oczyszczania powietrza na dużą skale. Możliwe to będzie dzięki wykorzystaniu wzmacniaczy w technologii impulsowej i wysokosprawnych ceramicznych przetworników piezoelektrycznych skonstruowanych w technologii sandwich z jednoczesnym wykorzystaniem koncentratora energii i płyty promieniującej celem dopasowania impedancyjnego. (Polish)
    0 references
    The project involves carrying out research work and then implementing an innovative solution in the form of an energy-saving, ultrasonic air pollutant filter using the phenomenon of coagulation and ultrasonic levitation in the gas centre. The resulting filter will be characterised by an occasional need for servicing and high efficiency in air filtering, mainly in relation to the smallest and most harmful particles, among others. MP2,5, PM10 and others. The use of an innovative high-energy ultrasonic filtering method is a breakthrough in large-scale air purification technology. This will be possible thanks to the use of amplifiers in impulse technology and high-performance ceramic piezoelectric converters constructed in sandwich technology while using an energy concentrator and a radiating board for impedance matching. (English)
    21 October 2020
    0 references

    Identifiers

    RPSL.01.02.00-24-00A2/19
    0 references