Q3107262 (Q3107262): Difference between revisions

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(‎Created claim: summary (P836): The material purpose of the project consists of three interconnected thematic areas – monitoring, detection and decontamination/disinfection. The main objective of the project is the development of a SMART system based on artificial intelligence and new generation sensors, capable of detecting possible return or outbreaks of COVID-19 in the Slovak population on the basis of nearly real-time wastewater analysis and this SMART system in terms of s...)
Property / summary
 
The material purpose of the project consists of three interconnected thematic areas – monitoring, detection and decontamination/disinfection. The main objective of the project is the development of a SMART system based on artificial intelligence and new generation sensors, capable of detecting possible return or outbreaks of COVID-19 in the Slovak population on the basis of nearly real-time wastewater analysis and this SMART system in terms of sensitivity also compares from already established procedures based mainly on RT-PCR analysis. To achieve the main objective, the project will also include milestones. Firstly, the development of several types of next-generation bio-microsensors (bio-microsensors for different application areas) aimed at the rapid detection of viral RNA in waste water and biological samples of potentially infected subjects (skin, saliva, sweat and urine). Secondly, the development and testing of innovative degradation and decontamination procedures and technologies, including the development of wastewater treatment technology from point sources (especially health facilities but also e.g. retirement homes), technologies modifying the procedure of drinking water treatment and development of coatings, antiviral materials and surfaces based on selected polymers and their mixtures. The project is implemented through two main activities of independent research and development, due to the use of 15 % flexibility, by an interdisciplinary team of top scientists of three faculties of the Slovak Technical University in Bratislava, namely: Faculty of Material Technology based in Trnava (MTF), Faculty of Chemical and Food Technology (FCHPT) and Faculty of Electronics and Informatics (FEI), visiting top researchers at Comenius University and Slovak Academy of Sciences (SAV) and six foreign experts. Part of the project is extensive cooperation with the business sector, which will be involved in the implementation of the project as external partners. Trnava (premises MTF) and Bratislava (FCHPT and FEI spaces)Measurable indicators: P0057 (0), P0058 (EUR 2,5 million), P0106 (1), P0196 (1), P0231 (6), P0280 (1), P0315 (4), P0325 (1), P0355 (3), P0514 (15), P0535 (0), P0762 (10), P0763 (0), P0905 (8), P0906 (2), PCV4b (EUR 70 000), PCV09 (0), PCV33 (1). (English)
Property / summary: The material purpose of the project consists of three interconnected thematic areas – monitoring, detection and decontamination/disinfection. The main objective of the project is the development of a SMART system based on artificial intelligence and new generation sensors, capable of detecting possible return or outbreaks of COVID-19 in the Slovak population on the basis of nearly real-time wastewater analysis and this SMART system in terms of sensitivity also compares from already established procedures based mainly on RT-PCR analysis. To achieve the main objective, the project will also include milestones. Firstly, the development of several types of next-generation bio-microsensors (bio-microsensors for different application areas) aimed at the rapid detection of viral RNA in waste water and biological samples of potentially infected subjects (skin, saliva, sweat and urine). Secondly, the development and testing of innovative degradation and decontamination procedures and technologies, including the development of wastewater treatment technology from point sources (especially health facilities but also e.g. retirement homes), technologies modifying the procedure of drinking water treatment and development of coatings, antiviral materials and surfaces based on selected polymers and their mixtures. The project is implemented through two main activities of independent research and development, due to the use of 15 % flexibility, by an interdisciplinary team of top scientists of three faculties of the Slovak Technical University in Bratislava, namely: Faculty of Material Technology based in Trnava (MTF), Faculty of Chemical and Food Technology (FCHPT) and Faculty of Electronics and Informatics (FEI), visiting top researchers at Comenius University and Slovak Academy of Sciences (SAV) and six foreign experts. Part of the project is extensive cooperation with the business sector, which will be involved in the implementation of the project as external partners. Trnava (premises MTF) and Bratislava (FCHPT and FEI spaces)Measurable indicators: P0057 (0), P0058 (EUR 2,5 million), P0106 (1), P0196 (1), P0231 (6), P0280 (1), P0315 (4), P0325 (1), P0355 (3), P0514 (15), P0535 (0), P0762 (10), P0763 (0), P0905 (8), P0906 (2), PCV4b (EUR 70 000), PCV09 (0), PCV33 (1). (English) / rank
 
Normal rank
Property / summary: The material purpose of the project consists of three interconnected thematic areas – monitoring, detection and decontamination/disinfection. The main objective of the project is the development of a SMART system based on artificial intelligence and new generation sensors, capable of detecting possible return or outbreaks of COVID-19 in the Slovak population on the basis of nearly real-time wastewater analysis and this SMART system in terms of sensitivity also compares from already established procedures based mainly on RT-PCR analysis. To achieve the main objective, the project will also include milestones. Firstly, the development of several types of next-generation bio-microsensors (bio-microsensors for different application areas) aimed at the rapid detection of viral RNA in waste water and biological samples of potentially infected subjects (skin, saliva, sweat and urine). Secondly, the development and testing of innovative degradation and decontamination procedures and technologies, including the development of wastewater treatment technology from point sources (especially health facilities but also e.g. retirement homes), technologies modifying the procedure of drinking water treatment and development of coatings, antiviral materials and surfaces based on selected polymers and their mixtures. The project is implemented through two main activities of independent research and development, due to the use of 15 % flexibility, by an interdisciplinary team of top scientists of three faculties of the Slovak Technical University in Bratislava, namely: Faculty of Material Technology based in Trnava (MTF), Faculty of Chemical and Food Technology (FCHPT) and Faculty of Electronics and Informatics (FEI), visiting top researchers at Comenius University and Slovak Academy of Sciences (SAV) and six foreign experts. Part of the project is extensive cooperation with the business sector, which will be involved in the implementation of the project as external partners. Trnava (premises MTF) and Bratislava (FCHPT and FEI spaces)Measurable indicators: P0057 (0), P0058 (EUR 2,5 million), P0106 (1), P0196 (1), P0231 (6), P0280 (1), P0315 (4), P0325 (1), P0355 (3), P0514 (15), P0535 (0), P0762 (10), P0763 (0), P0905 (8), P0906 (2), PCV4b (EUR 70 000), PCV09 (0), PCV33 (1). (English) / qualifier
 
point in time: 15 September 2021
Timestamp+2021-09-15T00:00:00Z
Timezone+00:00
CalendarGregorian
Precision1 day
Before0
After0

Revision as of 15:26, 15 September 2021

Project Q3107262 in Slovakia
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Project Q3107262 in Slovakia

    Statements

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    5,134,817.28 Euro
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    6,040,961.5 Euro
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    0.85 percent
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    1 January 2021
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    6 January 2023
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    Slovenská technická univerzita v Bratislave
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    48°8'54.96"N, 17°6'27.90"E
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    Vecný zámer projektu pozostáva z troch vzájomne prepojených tematických oblastí – monitoring, detekcia a dekontaminácia/dezinfekcia. Hlavným cieľom projektu je vývoj SMART systému na báze umelej inteligencie a senzorov novej generácie, schopného na základe analýzy odpadových vôd v takmer reálnom čase detegovať možný návrat či ohniská ochorenia COVID-19 v populácii SR a tento SMART systém z hľadiska citlivosti taktiež porovnať z už zabehnutými postupmi založenými najmä na RT-PCR analýze. Pre dosiahnutie hlavného cieľa budú súčasťou projektu aj čiastkové ciele. Po prvé, vývoj viacerých typov bio-mikrosenzorov novej generácie (bio-mikrosenzorov pre rôzne aplikačné oblasti) zameraných na rýchlu detekciu vírusovej RNA v odpadovej vode a biologických vzorkách potenciálne nakazených subjektov (pokožka, sliny, pot a moč). Po druhé, vývoj a testovanie inovatívnych degradačných a dekontaminačných postupov a technológií, vrátane vývoja technológie čistenia odpadových vôd z bodových zdrojov (najmä zdravotné zariadenia ale aj napr. domovov dôchodcov), technológie modifikujúcej postup úpravy pitných vôd a vývoj náterov, antivirotických materiálov a povrchov na báze vybraných polymérov a ich zmesí.Projekt je realizovaný prostredníctvom dvoch hlavných aktivít nezávislého výskumu a vývoja, z dôvodu využitia 15% flexibility, interdisciplinárnym tímom špičkových vedeckých pracovníkov troch fakúlt Slovenskej technickej univerzity v Bratislave, konkrétne: Materiálovotechnologickej fakulty so sídlom v Trnave (MTF), Fakulty chemickej a potravinárskej technológie (FCHPT) a Fakulty elektroniky a informatiky (FEI), hosťujúcich špičkových výskumných pracovníkov Univerzity Komenského a Slovenskej Akadémie Vied (SAV) a šiestimi zahraničnými expertami. Súčasťou projektu je rozsiahla spolupráca s podnikateľským sektorom, ktorý sa bude podieľať na implementácii projektu v pozícii externých partnerov.Miesto realizácie: Trnava (priestory MTF) a Bratislava (priestory FCHPT a FEI)Merateľné ukazovatele: P0057 (0), P0058 (2,5 mil. EUR), P0106 (1), P0196 (1), P0231 (6), P0280 (1), P0315 (4), P0325 (1), P0355 (3), P0514 (15), P0535 (0), P0762 (10), P0763 (0), P0905 (8), P0906 (2), PCV4b (70 000 EUR), PCV09 (0), PCV33 (1). (Slovak)
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    The material purpose of the project consists of three interconnected thematic areas – monitoring, detection and decontamination/disinfection. The main objective of the project is the development of a SMART system based on artificial intelligence and new generation sensors, capable of detecting possible return or outbreaks of COVID-19 in the Slovak population on the basis of nearly real-time wastewater analysis and this SMART system in terms of sensitivity also compares from already established procedures based mainly on RT-PCR analysis. To achieve the main objective, the project will also include milestones. Firstly, the development of several types of next-generation bio-microsensors (bio-microsensors for different application areas) aimed at the rapid detection of viral RNA in waste water and biological samples of potentially infected subjects (skin, saliva, sweat and urine). Secondly, the development and testing of innovative degradation and decontamination procedures and technologies, including the development of wastewater treatment technology from point sources (especially health facilities but also e.g. retirement homes), technologies modifying the procedure of drinking water treatment and development of coatings, antiviral materials and surfaces based on selected polymers and their mixtures. The project is implemented through two main activities of independent research and development, due to the use of 15 % flexibility, by an interdisciplinary team of top scientists of three faculties of the Slovak Technical University in Bratislava, namely: Faculty of Material Technology based in Trnava (MTF), Faculty of Chemical and Food Technology (FCHPT) and Faculty of Electronics and Informatics (FEI), visiting top researchers at Comenius University and Slovak Academy of Sciences (SAV) and six foreign experts. Part of the project is extensive cooperation with the business sector, which will be involved in the implementation of the project as external partners. Trnava (premises MTF) and Bratislava (FCHPT and FEI spaces)Measurable indicators: P0057 (0), P0058 (EUR 2,5 million), P0106 (1), P0196 (1), P0231 (6), P0280 (1), P0315 (4), P0325 (1), P0355 (3), P0514 (15), P0535 (0), P0762 (10), P0763 (0), P0905 (8), P0906 (2), PCV4b (EUR 70 000), PCV09 (0), PCV33 (1). (English)
    15 September 2021
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    Identifiers

    313011ASS8
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