Study-unit METODI E STRUMENTI DI SUPPORTO PER LE POLITICHE ENERGETICO-AMBIENTALI
Course name | Environmental engineering |
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Study-unit Code | A003415 |
Curriculum | Ambiente e energia |
Lecturer | Francesco Fantozzi |
CFU | 10 |
Course Regulation | Coorte 2022 |
Supplied | 2023/24 |
Supplied other course regulation | |
Type of study-unit | Obbligatorio (Required) |
Type of learning activities | Attività formativa integrata |
Partition |
LABORATORY OF ENERGY SYSTEMS
Code | A002622 |
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CFU | 5 |
Lecturer | Francesco Fantozzi |
Lecturers |
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Hours |
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Learning activities | Affine/integrativa |
Area | Attività formative affini o integrative |
Sector | ING-IND/09 |
Type of study-unit | Obbligatorio (Required) |
Language of instruction | Italian |
Contents | Technologies and resources for energy transition, circular economy and emissions abatment |
Reference texts | Slides |
Educational objectives | Characterization and quantification of resources. Performance and layouts of plants and components. MAss and energy balances |
Prerequisites | none |
Teaching methods | Frontal lessons and numerical exercises |
Other information | na |
Learning verification modality | Written report on lab activity or technology. Oral test. Oral test: n.2 open questions on powerplants and components. Info on facilities for students with special needs available at https://www.unipg.it/en/international-students/general-information/facilities-for-special-needs-students |
Extended program | Biomass and waste characterization and quantification - Technologies: combustion -gasification - pyrolysis - Synthesis and bio-fuels: biodiesel, bioethanol, HVO, Fischer Tropsch, efuels, biogas and biomethane - Technologies for abatement of NOX, SOX, Trace elements, dioxins, VOC, PM. |
Obiettivi Agenda 2030 per lo sviluppo sostenibile | 7-11-12 |
ENERGY PLANNING
Code | A002670 |
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CFU | 5 |
Lecturer | Giorgio Baldinelli |
Lecturers |
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Hours |
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Learning activities | Affine/integrativa |
Area | Attività formative affini o integrative |
Sector | ING-IND/10 |
Type of study-unit | Obbligatorio (Required) |
Language of instruction | Italian |
Contents | The global energy-environment framework. The traditional energy sources. Energy markets. Interactions between energy systems and the environment. Energy planning. |
Reference texts | Lecture notes will be distributed by the teacher. |
Educational objectives | The primary objective of the module is to provide students with the tools to learn about issues related to the traditional energy sources, their impact on the environment and how to manage their planning. |
Prerequisites | Applied physics. |
Teaching methods | The course is organised with classroom lectures on all treated subjects. Furthermore, interactive moments in groups will be organised for a better understanding of the dynamics linked to energy policy issues. |
Other information | Attendance to the classes is optional but strongly advised. |
Learning verification modality | The exam is oral and it consists of a discussion of no longer than 30 minutes. The exam aims to ascertain: i) the level of knowledge of the theoretical-methodological contents of the course ii) the level of competence in exposing the issues related to energy supply iii) autonomy of judgment in proposing the most appropriate approach for each area. The oral test also aims to verify the student's ability to express the themes proposed by the Commission, and to support a dialectical relationship during the discussion. |
Extended program | The global and national energy framework. Global pollution. International treaties for environmental protection. The coal. The gas. Oil. Nuclear energy. Electricity market. Gas market. Economic indicators. Incentives. Air pollution of energy systems. Secondary pollutants and emission sources. Water and thermal pollution of energy systems. Pollution by E.M.F. . Municipalities energy planning. Examples of municipalities energy planning. Sustainable Energy Action Plans. |