Laboratory of Environmental Change and Global Sustainability

A.Y. 2023/2024
9
Max ECTS
144
Overall hours
Language
English
Learning objectives
The course aims at introducing students, by means of one of the four monographic and multidisciplinary experiences, to the main issues concerning:
1) analysis of meteorological data, or
2) analysis of satellite environmental data, or
3) modelling the response of cropping systems to current and projected weather data, or
4) circular resources: waste and biomasses recycling and valorization by means of green chemistry principles and technologies.
Expected learning outcomes
The expected learning outcomes depend on the monographic experience selected by the student.
At the end of the experience concerning meteorological data, students must be able to perform an analysis of long series of meteorological data. Specifically they must be able to face data organization; quality checks; homogeneity checks and data homogenization; data analysis, with particular focus on spatial patterns and temporal trends.
At the end of the experience concerning satellite environmental data, students must be able to perform an analysis of satellite environmental data such as solar radiation, cloud cover or snow data. Specifically they must be able to face data organization; Data download; data analysis, with particular focus on spatial patterns and temporal trends.
At the end of the experience concerning cropping systems, students must be able to generate downscaled future projections of daily weather data and to use modelling tools able to predict the effect of genotype × environment × management interactions on the productivity of key food crops. This will allow performing predictions of how near-real time weather data affect crops productivity as well as analysing climate change impacts on food availability in the coming decades.
At the end of the experience concerning waste valorisation, students will become aware of how the current technologies can support the environmental sustainability. This will be achieved through practical demonstration on supercritical fluid extraction of added-value compounds from agri-food wastes. The extracts will be then characterized by advanced analytical techniques to identify and quantify the compounds of interest. Finally, the use of the extracts in applications of industrial interest will be assessed and subjected to group discussion.
Single course

This course can be attended as a single course.

Course syllabus and organization

Single session

Responsible
Lesson period
Second semester
Course syllabus
The course schedules one monographic practical experience in one among different proposed areas. The subject choice will be varied year-by-year.
The subject proposed for the academic year 2023/24 will be:
- Climate change and food security
- Circular resources: green chemistry
- Glaciers and Climate
Prerequisites for admission
Skills acquired during the first year of the master degree
Teaching methods
The laboratory aims at training students to face autonomuosly a data analysis or an experiment.
Teaching method consists in starting the course with a few lectures on theoretical topics to provide students with the bases for understanding and developing the projects and to introduce the methods for the scheduled activities.
Students will work to find the best way to face the proposed analysis.
The activities will be performed in small groups (2-3 students). The frequency to the course is mandatory.
Teaching Resources
Scientific papers and/or manuals available on the website of the course in the Ariel platform at www.unimi.it
Assessment methods and Criteria
The exam (approved) will consists in a talk focused on the obtained results. Within this talk the students will highlight the problems they faced and the methods they adopted
Professor(s)
Reception:
Wednesday 13:30-12:30, other days by appointment
via Golgi 19, Building 5A (Chemistry), West Wing, mezzanine, room R20-O