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You are in:: Start > Project/Service Agreement:PTDC/QEQ-PRS/3787/2014–POCI-01-0145-FEDER-016816
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Project/Service Agreement:PTDC/QEQ-PRS/3787/2014–POCI-01-0145-FEDER-016816

Start Approved In Progress Completed Closed

Status
Projeto EncerradoClosed
Publication
PublicadoPublished
General Data
Code: 70069
 
Reference: PTDC/QEQ-PRS/3787/2014–POCI-01-0145-FEDER-016816
Short name: CrystalFlow
Title: Continuous crystallization of active pharmaceutical ingredients (APIs)
Competitive Funding: Yes
Does it involve businesses?: Yes
No. of Participating Institutions: 3
Scope
Type: Funded Project
 
Geographical Scope: National
 
Type of Action: R&TD
Funding
Programme: P2020|COMPETE - Projetos em Todos os Domínios Científicos
Funding Institution: FCT - Fundação para a Ciência e a Tecnologia
Financial Geographical Scope: National
Date of the Funding Agreement: 2016-07-04
Paying Entity: Fundação para a Ciência e a Tecnologia
Scheduling
Effective Start Date: 2016-07-01
Expected Completion Date: 2019-06-30
Effective Completion Date: 2019-06-30
Budget
Currency: EUR
 
Total Approved Budget: 221.364,00 EUR
Details
Summary: In the last decade, economic changes had repercussions in all industries; even the pharmaceutical industry, with its high profits obtained, starts to be pressured from all parts of the pharmaceutical value chain. Shift from the traditional pharmaceutical batch processes to continuous processes starts to be imperative in this new era. The Novartis/MIT protocol and the creation of the new Centre for Innovative Manufacturing in Continuous Manufacturing and Crystallisation (CMAC)-UK, involving 7 universities and 30 industries, are examples of the Governments and companies' commitment in this process revolution. In order to obtain continuous manufacturing, research focuses in microreactors, static mixers and oscillatory baffled reactors (OFR), the last being in advantage, due to their good results in mixing intensification and scale-up prediction. In last years a new generation of OFR has been arising, the meso-OFR. These mesoscale (milliliter) oscillatory baffled reactors have received considerable attention due to their small volume and ability to operate at low flow rates, reducing reagent requirements and waste. Based on theoretical and experimental observations a research team, headed by the principal investigator (PI) of the present project, found new dimension ranges and design of the reactor, fulfilling some of the gaps observed in the conventional OFR, as well as in the meso OFR, actually known. Based on this novel OFR a laboratory prototype was built. This apparatus, under evaluation for patent protection [1], has been used in continuous or batch mode for mixing intensification using different multiphase systems. The excellent results obtained attracted the interest of the most important Portuguese pharmaceutical industries, Hovione and Bial, as well as the international companies, Nitech and HELgroup, and the biggest European research center in continuous crystallization, CMAC, being several protocols under evaluation, two of them already signed.
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Results: - Aplicação computacional: foi desenvolvido uma aplicação computacinal para prever o melhor desenho do reator na intensificação da mistura na ausência e presença de sólidos; - Seleção do reator mais eficiente em misturas liquído-liquído e sólido-líquido; - Dois protótipos laboratoriais : Fruto dos estudos efetuados nas diferentes tarefas foi possível desenvolver dois protótipos laboratoriais, um dos quais foi implementado nas novas instalações de I&D da Hovione no decorrer do mês de Abril 2018. - Instalação de uma unidade piloto na Hovione.
Scientific Context
Scientific Domain (FOS - Level 2): Engineering and technology > Chemical engineering

Academic fields (CORDIS - Level 5)

  • Technological sciences > Engineering > Chemical engineering

Keywords

  • Cristalização em contínuo
  • Intensificação de processos
  • Princípios activos
  • Reator de fluxo oscilatório
Documents
Mais informações There are no Documents associated with the Project.

Publications associated with the Project

Article in International Scientific Journal
P. Cruz (Author) (Other); Fernando Rocha (Author) (FEUP); A. Ferreira (Author) (FEUP)
2018
Article in International Scientific Journal
A. Ferreira (Author) (FEUP); Patrick O. Adesite (Author) (Other); J. A. Teixeira (Author) (Other); F. Rocha (Author) (FEUP)
2017
Article in International Scientific Journal
Patrícia Cruz (Author) (FEUP); Fernando Rocha (Author) (FEUP); A. Ferreira (Author) (FEUP)
2016
Article in International Scientific Journal
N. Santos (Author) (Other); A. Ferreira (Author) (FEUP); J. Pereira (Author) (Other)
2018
Article in International Scientific Journal
F. Almeida (Author) (Other); Fernando Rocha (Author) (FEUP); A. Ferreira (Author) (FEUP)
2018
Article in International Scientific Journal
António Ferreira (Author) (FEUP); Patrícia Cruz (Author) (FEUP); Fernando Rocha (Author) (FEUP); Carolina Silva (Author) (FEUP)
2019
Article in International Scientific Journal
Filipa Castro (Author) (FEUP); António Ferreira (Author) (FEUP); José A. Teixeira (Author) (Other); Fernando Rocha (Author) (FEUP)
2018
Summary of Presentation in an International Conference
Filipa Castro (Author) (FEUP); A. Ferreira (Author) (FEUP); António José Teixeira (Author) (Other); Fernando Rocha (Author) (FEUP)
2018
Patent
A. Ferreira (Author) (FEUP); Fernando Rocha (Author) (FEUP); J. A. Teixeira (Author) (Other); Filipa Castro (Author) (FEUP)
2016
Patent
A. Ferreira (Author) (FEUP); Fernando Rocha (Author) (FEUP); J. A. Teixeira (Author) (Other); A. Vicente (Author) (Other)
2016
Patent
A. Ferreira (Author) (FEUP); Fernando Rocha (Author) (FEUP); J. A. Teixeira (Author) (Other); A. Vicente (Author) (Other)
2016
Patent
A. Ferreira (Author) (FEUP); Fernando Rocha (Author) (FEUP); J.A. Teixeira (Author) (Other); Filipa Castro (Author) (FEUP)
2017
Academic Work
Filipe Almeida (Author) (FEUP); A. Ferreira (Technical adviser) (FEUP); Fernando Rocha (Technical adviser) (FEUP)
2017
Institutions Participating in the Project
Institution Contact Create Tab?
Name Short name Country Type Participation Name Telephone Email
Faculdade de Engenharia da Universidade do Porto FEUP Portugal University Proponent
Hovione Farmaciência, S.A. HOVIONE Portugal Indústria Partner
Universidade do Minho UMINHO Portugal University Partner
 
Budgets and Teams
Approved Budget: 170.964,00 EUR
Approved Funded Amount: 170.964,00 EUR
Approved co-funded Amount: 0,00 EUR
Funding Rate: 100 %
Confidential Budget:

People in the Project

Institution Name Short name Role Dedication (%) Contribution (%) Allocation
Start date End date
FEUP Alexandre Miguel Prior Afonso AMPA Researcher 15 5 2016-07-01 2019-06-30
FEUP António Manuel Azevedo Ferreira AMAF Official Researcher at the OU 65 36 2016-07-01 2019-06-30
FEUP Carolina Ramos e Silva CRS Grant recipient 100 20 2017-05-02 2019-04-04
FEUP Fernando Alberto Nogueira da Rocha FAR Researcher 15 5 2016-07-01 2019-06-30
FEUP Fernando João Dinis Pereira Researcher 15 2 2017-05-15 2017-07-31
FEUP Filipa Juliana Fernandes Castro FJFC Researcher 25 5 2016-07-01 2019-06-30
FEUP Filipe José Pires Almeida Researcher 15 2 2017-05-15 2017-07-31
FEUP João Bernardo Lares Moreira de Campos JBC Researcher 15 5 2016-07-01 2019-06-30
FEUP João Bernardo Lares Moreira de Campos JBC Researcher
FEUP Jose Antonio Couto Teixeira J Researcher 15 5
FEUP Patrícia da Conceição Ferreira Dias Cruz PCFDC Researcher 40 15 2017-04-17 2019-06-30

Technicians in the Project

Technician Contact
FEUP 624190 Maria de Lurdes Fernandes de Matos Gonçalves
Laboratories
Mais informações There are no Laboratories associated with the Project.
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