Cilji:
Razumevanje okoljskih virov onesnaževal: Študenti bodo pridobili temeljno razumevanje virov onesnaževal v okolju, vključno z njihovimi vplivi na različne sfere Zemlje (biosfera, hidrosfera, litosfera, atmosfera).
Prepoznavanje in analiza onesnaženja: Študenti bodo razvili sposobnost prepoznavanja in analize različnih vrst onesnaženja, ki vplivajo na biosfero, hidrosfero, litosfero in atmosfero.
Zmožnost karakterizacije in remediacije kontaminiranih območij: Študenti bodo usposobljeni za prepoznavanje, karakterizacijo in remediacijo kontaminiranih območij, s posebnim poudarkom na toksičnih kemijskih elementih, radionuklidih in organskih onesnaževalih.
Načrtovanje nadzornih meritev: Študenti se bodo naučili načrtovati in izvajati nadzorne meritve (monitoring) za spremljanje okoljskih vplivov in onesnaževal.
Uporaba zakonodaje in normativov: Študenti bodo pridobili znanje o uporabi relevantne zakonodaje in normativov pri reševanju specifičnih okoljskih problemov.
Povezovanje teorije z raziskovalno prakso: Študenti bodo sposobni prilagoditi pridobljeno teoretično znanje ciljem in vsebini svojega raziskovalnega projekta, kar bo vključevalo uporabo primerov iz prakse.
Kompetence
Kritično razmišljanje in analiza: Študenti bodo razvili sposobnost kritičnega razmišljanja in analize okoljskih problemov, s posebnim poudarkom na identifikaciji in reševanju kompleksnih primerov onesnaženja.
Tehnično znanje: Študenti bodo pridobili tehnično znanje, potrebno za identifikacijo, karakterizacijo in remediacijo kontaminiranih območij, vključno z uporabo naprednih tehnologij in metod.
Zakonodajno znanje: Študenti bodo usposobljeni za uporabo zakonodajnih orodij in normativov v okviru okoljskega inženiringa in znanosti, kar jim bo omogočilo pravilen pristop k reševanju pravno-regulativnih vprašanj v okolju.
Praktične raziskovalne veščine: Študenti bodo razvili praktične raziskovalne veščine, vključno z načrtovanjem in izvedbo okoljskih monitoringov ter analizo podatkov, pridobljenih skozi ta proces.
Interdisciplinarno povezovanje: Študenti bodo sposobni interdisciplinarno povezovati znanja iz različnih področij, kot so kemija, fizika, biologija in geologija, za celostno razumevanje in reševanje okoljskih problemov.
Prilagodljivost in inovativnost: Študenti bodo razvili sposobnost prilagajanja znanja specifičnim okoljskim izzivom, s poudarkom na inovativnih pristopih k reševanju kompleksnih okoljskih problemov z uporabo primerov iz prakse.
Course Objectives
Understanding Environmental Pollution Sources: Students will gain a fundamental understanding of the sources of pollutants in the environment, including their impacts on various Earth spheres (biosphere, hydrosphere, lithosphere, atmosphere).
Identification and Analysis of Pollution: Students will develop the ability to identify and analyze different types of pollution affecting the biosphere, hydrosphere, lithosphere, and atmosphere.
Ability to Characterize and Remediate Contaminated Sites: Students will be trained to identify, characterize, and remediate contaminated areas, with a particular focus on toxic chemical elements, radionuclides, and organic pollutants.
Designing Monitoring Measurements: Students will learn to design and implement monitoring measurements to track environmental impacts and pollutants.
Application of Legislation and Standards: Students will acquire knowledge in applying relevant legislation and standards to solve specific environmental issues.
Integrating Theory with Research Practice: Students will be able to adapt the acquired theoretical knowledge to the goals and content of their research projects, which will include the use of practical case studies.
Competencies
Critical Thinking and Analysis: Students will develop the ability to critically think and analyze environmental issues, with a special focus on identifying and solving complex pollution cases.
Technical Knowledge: Students will acquire the technical knowledge needed to identify, characterize, and remediate contaminated areas, including the use of advanced technologies and methods.
Legislative Knowledge: Students will be equipped to use legislative tools and standards within the field of environmental engineering and science, enabling them to approach legal and regulatory environmental issues correctly.
Practical Research Skills: Students will develop practical research skills, including planning and conducting environmental monitoring and analyzing the data obtained through this process.
Interdisciplinary Integration: Students will be capable of integrating knowledge from various fields, such as chemistry, physics, biology, and geology, to achieve a comprehensive understanding and resolution of environmental issues.
Adaptability and Innovation: Students will develop the ability to adapt their knowledge to specific environmental challenges, with a focus on innovative approaches to solving complex environmental problems using practical case studies.