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Eco-Energetic Engineering

Study field Eco-energetic engineering, includes multidisciplinary application of natural sciences, ecology and engineering disciplines, necessary for enabling of this type of engineers for identification, analysis and solving of current eco-energetic problems in process industry as well as for their readiness to accept challenges in the future of environmental protection from the sustainable development aspect. Engineers of this study programme are enabled to work in process technologies (food, chemical, petrochemical, pharmaceutical industry and biotechnological production) with the aim of: rationalization of production process, application of renewable energy resources, development of new process technologies for the use of secondary raw materials, waste management, recycling of secondary products and projection of environmental protection system.

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Oil-Petrochemical Engineering

Study field Oil-petrochemical engineering offer necessary knowledge for production, research and development, application and sale of oil products, gas, petrochemical products, fuels, lubricants and alternative fuels as ecologically acceptable products. Oil-petrochemical engineer is enabled to run, improve and optimize current chemical-technological processes in accordance with current quality standards, environmental protection and sustainable development. Teaching process at the study field of oil-petrochemical engineering is performed by the use of current instrumental methods, with the support of modern software packages and cooperation with European universities. Many years of experience in cooperation with companies from oil-petrochemical industry gives possibility of acquiring up-to-date and practical knowledge which enables fast and efficient including of engineers into current chemical-technological processes after they graduate.

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Chemical-Processing Engineering

Study field Chemical processing engineering in its long term tradition has an engineering approach in problem solving and it is based on classical courses, recognizable in the world. By the application of physicochemical methods on the modern equipment, the processing parameters are defined and by the use of results analysis the parameters are defined and their interactions aiming at technological procedures improvement. At this study field the human resources are successfully trained to independently model, project and optimize technological processes and devices by the use of specialized mathematical-engineering programmes. The teaching process is based on a great amount of theoretical knowledge, laboratory and power-plant practice in order to develop creative students’ skills which enables them successful work in industry, institutes, scientific and educational institutions

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