Fundamentals of Bioprocess Engineering
Áreas Científicas |
Classificação |
Área Científica |
OFICIAL |
Processos em Engenharia Química e Biológica |
Ocorrência: 2019/2020 - 1S
Ciclos de Estudo/Cursos
Sigla |
Nº de Estudantes |
Plano de Estudos |
Anos Curriculares |
Créditos UCN |
Créditos ECTS |
Horas de Contacto |
Horas Totais |
BIOT |
70 |
Study Plan |
2 |
- |
4,5 |
67,5 |
121,5 |
Docência - Responsabilidades
Língua de trabalho
Portuguese
Objetivos
In Fundaments in Bioprocess the student should develop the ability to solve simple mathematical calculationsin order to quantify the transformation of raw materials into finished products, while also giving importance to consumption or production of energy.Throughout this model, students should acquire the following competencies:- Implement mass and energy balances to operations unit and chemical processes with multiple steps.- Classify and determine sensible heat, latent heats and heats of reaction.- Implement combined mass balance and energy to any process.- Solve problems involving mass and energy balances in non-stationary state
Resultados de aprendizagem e competências
N/A
Modo de trabalho
Presencial
Pré-requisitos (conhecimentos prévios) e co-requisitos (conhecimentos simultâneos)
N/A
Programa
1.Bioprocess development
2. Introduction to engineering calculation
3. Presentation and analysis of data4. Material balances: thermodynamic preliminaries; Law of conservation of mass; procedure for material balances. Material balances in non-reactive processes: Processes with multiple unit operations; Recycle By- pass and purge streams. Material balance in reactive processes: Multiple reactions yield and selectivity, molecular and atomic balances, product separation.
4. Energy balances; Basic energy balance equations; Procedure for energy balance calculations, Energybalance in non-reactive processes. Energy balance reactive processes: heats of reaction, measurement and calculation of heat of reaction (Hess''s law), reactions of formation and heat of formation; Combustion reactions; Heat reaction for process with biomass production; Energy balances equation for cell culture, Fermentation energy balances4. Combined energy and material balances
Bibliografia Obrigatória
Felder, Richard M., Rousseau, Ronald W.,; Elementary Principles of Chemical Process, Jonh Wiley & Sons
Perry, Jonh H.,; Chemical Engineer’s Handbook, Prentice-Hall Internationa Inc
Geankoplis, Christie J; Transport Processes and Unit Opertions, Prentice-Hall Internationa Inc
Pauline M. Doran; Bioprocess Engineering Principles, Academic Press , 2000
Métodos de ensino e atividades de aprendizagem
Lectures with exposition technique to depiction the proposed concepts by stimulating the student to an logic and critical thinking and also propose to the students, in an autonomous manner, the resolution of practicalexamples to implement the concepts outlined above.
continuous evaluation (face-to-face) 1st minitest * 0.1 + 2nd minitest * 0.1 + 3ºminitest*0.1 + 4th test * 0.7
Evaluation by exam (all epotheans): 100% Exam. or 70% exame ( minimum 9.5 values)+1st minitest * 0.1 + 2nd minitest * 0.1 + 3rd minitest*0.1( the beste grade)
Evaluation Type: Distributed evaluation with final exam
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Tipo de avaliação
Evaluation with final exam
Componentes de Avaliação
Designation |
Peso (%) |
Participação presencial |
100,00 |
Total: |
100,00 |
Componentes de Ocupação
Designation |
Tempo (Horas) |
Estudo autónomo |
54,00 |
Frequência das aulas |
67,50 |
Total: |
121,50 |
Obtenção de frequência
on appeal examination
Fórmula de cálculo da classificação final
continuous evaluation (face-to-face) 1st minitest * 0.1 + 2nd minitest * 0.1 + 3ºminitest*0.1 + 4th test * 0.7
Evaluation by exam (all epotheans): 100% Exam. or 70% exame ( minimum 9.5 values)+1st minitest * 0.1 + 2nd minitest * 0.1 + 3rd minitest*0.1( the best grade)
Evaluation Type: Distributed evaluation with final exam
Provas e trabalhos especiais
N/A
Trabalho de estágio/projeto
N/A
Avaliação especial (TE, DA, ...)
N/A
Melhoria de classificação
N/A
Observações
N/A