School of Energy, Built Environment, and Chemical Engineering (EBCE)

About School

“The School of Energy, Built Environment, and Chemical Engineering (EBCE) aims to provide high quality graduate education, training, and high quality research. We also aim to provide technical services to meet society’s need for the development and deployment of efficient, economical and sustainable environmental and energy services. We are devoted to providing our students with an experiential learning environment to maximize their knowledge. The Department of Energy Resources offers its students courses that cover important topics such as renewable energy systems, alternative fuels, energy storage systems, fuel cell technologies, and many more. The Department of Environmental Engineering presents a wide range of knowledge in the fields of natural resources management, integrated wastewater treatment, environmental assessment and management and air quality. The Chemical and Petrochemical Engineering Department is designed to provide students with basic and applied scientific research in the fields relevant to chemical and petrochemical industries, in order to develop new products and/or improve the properties of existing products. Finally, the sustainable Architecture Departmentgives the students the necessary skills and education to improve their career in term of the sustainability and energy efficiency aspects that help them lead their community towards healthier and sustainable futures.The EBCE School is an exciting place to study. We are a dedicated and expert team of academia that undertakes a wide range of research disciplines.”

The School of EBCE hosts four key departments:

  1. Energy Resources Engineering
  2. Environmental Engineering
  3. Chemical and Petrochemical Engineering
  4. Sustainable Architecture

Our programs blend advanced theoretical instruction, hands-on project-based learning, and applied experiments and research, focusing on challenges in sustainable energy, environmental protection, and clean technologies which serve the society and industry.

Why Choose EBCE at E-JUST?

  • High opportunity in jobs' market.
  • Japanese-based educational approach & global faculty
  • Project-based learning (PBL) is embedded in all degrees
  • Research collaboration with Institute of Science Tokyo & Kyushu University.
  • High-impact, industry-focused research topics
  • Access to cutting-edge facilities and smart labs
  • Opportunities for local and international internships
  • Strong focus on innovation, sustainability, clean energy, mechanical power systems, electromechanical building systems, and advancing chemical industries.

Program Highlights

  • Multidisciplinary, future-driven education
  • BSc., M.Sc. and Ph.D. degrees in all four departments
  • Complementary courses available for cross-disciplinary admissions
  • Applied research, seminars, and real-world problem-solving
  • Aligned with Egypt Vision 2030 and UN SDGs 2030.
Vision

To be a leading and well-established school in the areas of Energy, Built Environment, and Chemical Engineering in the world.

Mission

To provide students with relevant and efficient education, learning and research by adapting the Japanese style of education in the EBCE School, as well as impacting society and its sustainability through professionalism, ethics, and interdisciplinary programs.

Strategic Objectives
  1. Develop the strategic planning and follow-up system at the school levelto ensure integration between strategic and operational plans, and to implement measurable performance indicators to track the achievement of institutional goals.
  2. Enhance integration between academic programs and labour market needsby developing curricula, expanding partnerships with industry, and activating interdisciplinary courses and applications.
  3. Develop and sustain academic and supporting staffby improving workload distribution, developing leadership preparation programs, and strengthening performance-based incentive systems.
  4. Maximize the utilization of infrastructure and educational and research laboratoriesby enhancing the integration between theoretical and practical aspects and improving operational efficiency and academic and research utilization.
  5. Enhance the effectiveness of the applied scientific research systemby linking it to the needs of industrial sectors and developing mechanisms to measure the economic and societal impact of research.
  6. Develop an integrated system to support the student and graduate experienceby improving academic and career advising, organizing industrial training, and activating the role of alumni in supporting the educational process.