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ProPAT SIGNED

Robust and affordable process control technologies for improving standards and optimising industrial operations

Total Cost €

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EC-Contrib. €

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Partnership

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Project "ProPAT" data sheet

The following table provides information about the project.

Coordinator
IRIS TECHNOLOGY SOLUTIONS, SOCIEDAD LIMITADA 

Organization address
address: CALLE VELAZQUEZ, NO 94 PRIMERA PLANTA
city: MADRID
postcode: 28006
website: www.iris.cat

contact info
title: n.a.
name: n.a.
surname: n.a.
function: n.a.
email: n.a.
telephone: n.a.
fax: n.a.

 Coordinator Country Spain [ES]
 Project website http://www.pro-pat.eu
 Total cost 5˙882˙260 €
 EC max contribution 5˙484˙160 € (93%)
 Programme 1. H2020-EU.2.1.5.3. (Sustainable, resource-efficient and low-carbon technologies in energy-intensive process industries)
 Code Call H2020-SPIRE-2014
 Funding Scheme RIA
 Starting year 2015
 Duration (year-month-day) from 2015-01-01   to  2018-12-31

 Partnership

Take a look of project's partnership.

# participants  country  role  EC contrib. [€] 
1    IRIS TECHNOLOGY SOLUTIONS, SOCIEDAD LIMITADA ES (MADRID) coordinator 1˙000˙400.00
2    UNIVERSITY OF LEEDS UK (LEEDS) participant 925˙762.00
3    SPECTRAL ENGINES OY FI (HELSINKI) participant 529˙656.00
4    Teknologian tutkimuskeskus VTT Oy FI (Espoo) participant 450˙318.00
5    VIOMICHANIA RITINON MEGARON ANASTASIOS FANIS ANONYMOS ETAIRIA EL (MEGARA) participant 319˙617.00
6    MBN NANOMATERIALIA SPA IT (CARBONERA) participant 254˙750.00
7    TECHNISCHE UNIVERSITAET DRESDEN DE (DRESDEN) participant 237˙812.00
8    ELLINIKI LEFKOLITHI ANONYMOS METALLEFTIKI VIOMIHANIKI NAFTILIAKI KAI EMPORIKI ETERIA (Grecian Magnesite Mining Industrial Shipping and Commercial Company Societe Anonyme) EL (Athens) participant 237˙290.00
9    FUNDACIO INSTITUT DE CIENCIES FOTONIQUES ES (Castelldefels) participant 234˙478.00
10    INSTITUTE OF TECHNOLOGY TRALEE IE (TRALEE) participant 230˙006.00
11    UNIVERSITAT DE BARCELONA ES (BARCELONA) participant 225˙886.00
12    GLAXOSMITHKLINE RESEARCH AND DEVELOPMENT LTD. UK (BRENTFORD) participant 223˙750.00
13    UNIVERSITAT ROVIRA I VIRGILI ES (TARRAGONA) participant 216˙670.00
14    VTT MEMSFAB OY FI (Espoo) participant 209˙150.00
15    DECHEMA GESELLSCHAFT FUER CHEMISCHE TECHNIK UND BIOTECHNOLOGIE E.V. DE (FRANKFURT) participant 171˙112.00
16    ZURCHER HOCHSCHULE FUR ANGEWANDTE WISSENSCHAFTEN CH (WINTERTHUR) participant 17˙500.00
17    TEKNOLOGIAN TUTKIMUSKESKUS VTT FI (ESPOO) participant 0.00

Map

 Project objective

The Process Industries require a high degree of automation, monitoring, and advanced simulation and control for their often complex manufacturing processes and operations. Emphasis is on continuous or batch production, mixing, reaction and separation of materials of higher value. Indeed, increased globalisation and competition are drivers for process analytical technologies (PAT) that enable seamless process control, greater flexibility and cost efficiency. ProPAT aims to develop novel sensors and analysers for providing measurements on composition, particle size and local bulk properties, as well as more traditional but smart sensors for measuring other process parameters, such as temperature, flowrate, pressure, etc., and integrate them into a versatile global control platform for data acquisition, data processing & mining and User Interface in order to measure properties of process streams and products, accurately and in real-time. The platform also provides self-learning and predictive capabilities aimed for dramatically reducing overcosts derived from even slight deviations from the optimum process. Low cost MEMS-NIR spectroscopic and granulometric analysers, smart sensors for in batch and in continuous processes will be developed and integrated into the global control platform with the chemometric tools and the predictive software to deliver an integrated process control platform. ProPAT will enable near real time closed-loop process control to operate industrial processes at their optimum, both economically and environmentally, while ensuring high levels of quality. It will also allow the uptake of the Quality by Design for continuous process improvement. The project results will be validated in different processes and applications including milling of minerals, ceramics, metals, mixing and granulation of pharma products and polymerization of resins, and will represent a major step forward towards more efficient, reliable and sustainable industrial operation

 Deliverables

List of deliverables.
Training sessions reports, including the evaluation and conclusions Documents, reports 2019-10-03 18:15:16
Report on the environmental impacts of production using ProPAT compared to existing quality control Documents, reports 2019-10-03 18:15:11
Project video Websites, patent fillings, videos etc. 2019-09-09 17:53:54
Knowledge Transfer & Training Programme and Materials Documents, reports 2019-09-09 17:52:24
Communication Report Documents, reports 2019-09-09 17:53:55
Communication Plan Documents, reports 2019-05-22 20:30:10
Project Leaflet and Poster Websites, patent fillings, videos etc. 2019-05-22 20:30:09
Project Website (M3) Websites, patent fillings, videos etc. 2019-05-22 20:30:09
Report on the state-of-the art review and review paper(s) in preparation Documents, reports 2019-05-22 20:30:09
ProG-B. Beta prototypes of the ProG instrument Demonstrators, pilots, prototypes 2019-05-22 20:30:09
GCSS User Manual Documents, reports 2019-05-22 20:30:10

Take a look to the deliverables list in detail:  detailed list of ProPAT deliverables.

 Publications

year authors and title journal last update
List of publications.
2017 John H. Kalivas, Joan Ferré, Alister J. Tencate
Selectivity-relaxed classical and inverse least squares calibration and selectivity measures with a unified selectivity coefficient
published pages: e2925, ISSN: 0886-9383, DOI: 10.1002/cem.2925
Journal of Chemometrics 31/11 2019-06-07
2018 Faiz Mahdi, Ali Hassanpour, Frans Muller
An investigation on the evolution of granule formation by in-process sampling of a high shear granulator
published pages: 403-411, ISSN: 0263-8762, DOI: 10.1016/j.cherd.2017.10.038
Chemical Engineering Research and Design 129 2019-06-07
2017 Rodrigo R. de Oliveira, Ricardo H.P. Pedroza, A.O. Sousa, Kássio M.G. Lima, Anna de Juan
Process modeling and control applied to real-time monitoring of distillation processes by near-infrared spectroscopy
published pages: 41-53, ISSN: 0003-2670, DOI: 10.1016/j.aca.2017.07.038
Analytica Chimica Acta 985 2019-06-07
2016 Niall O’ Mahony, Trevor Murphy, Krishna Panduru, Daniel Riordan, Joseph Walsh
Smart Sensors for Process Analytical Technology
published pages: , ISSN: , DOI:
IEEE international conference on Advanced Intelligent Mechatronics Yearly 2019-05-27
2016 Niall O’ Mahony, Trevor Murphy, Krishna Panduru, Daniel Riordan, Joseph Walsh
Pharmaceutical manufacturing and the quality by design (QBD), process analytical technology (PAT) approach
published pages: , ISSN: , DOI:
The proceedings of the 27th Irish Signals and Systems Conference Yearly 2019-05-27
2016 Mahdi F.M., Hassanpour A. and Muller F.L
ANALYSIS OF GRANULATION MECHANISMS USING AN AUTO SAMPLEING SYSTEM
published pages: , ISSN: , DOI:
IFPRI-UKPTF 2016 Yearly 2019-05-27
2016 R. R. Retamal Marín, F. Babick, M. Stintz
On-line characterization of micro- and nanostructured materials in Process Analytical Technology (PAT)
published pages: , ISSN: , DOI:
2019-05-27
2016 Niall O’ Mahony, Trevor Murphy, Krishna Panduru, Daniel Riordan, Joseph Walsh
Adaptive Process Control and Sensor Fusion for Process Analytical Technology
published pages: , ISSN: , DOI:
The proceedings of the 27th Irish Signals and Systems Conference Yearly 2019-05-27

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