The MSc by Research in Air Pollution Control using Nature-based Solutions Scholarship is a fully funded Master by Research scholarship offered by RMIT University, Australia. The project investigates how nature-based solutions can reduce air pollution in urban environments through advanced computational modelling and engineering analysis. Moreover, the research aims to improve urban air quality by developing innovative strategies that integrate vegetation and other green infrastructure into the built environment. Through this scholarship, students contribute to creating healthier, more sustainable cities while developing expertise in environmental engineering and urban air quality management.
Background and Purpose
The scholarship aims to improve urban air quality by evaluating how nature-based solutions influence airflow and pollutant dispersion in cities. The research focuses on modelling the effectiveness of green barriers, vegetation systems, and other urban greening interventions that reduce human exposure to harmful air pollutants. Furthermore, the project applies Computational Fluid Dynamics (CFD) modelling to simulate airflow patterns and pollutant transport within streets and public spaces. It also investigates how both movable and fixed green infrastructure affect urban ventilation and environmental performance. As a result, the research generates evidence-based engineering solutions that support healthier communities, sustainable urban planning, and improved environmental quality.
MSc by Research in Air Pollution Control using Nature-based Solutions Scholarship Benefits
The scholarship provides comprehensive financial support throughout the two-year Master by Research program. It covers full tuition fees and offers a generous tax-free annual living stipend. In addition, recipients gain access to RMIT University’s advanced research facilities, high-performance computational resources, and expert academic supervision. Scholars also receive opportunities to publish research findings, collaborate with specialists in sustainable urban infrastructure, and participate in professional research activities. Consequently, students develop advanced technical expertise while contributing to innovative environmental engineering research.
Eligibility Criteria
Applicants must satisfy the admission requirements for a Master by Research program at RMIT University. Additionally, they should possess an excellent academic record and hold qualifications in environmental engineering, civil engineering, mechanical engineering, environmental science, urban planning, physics, mathematics, or a closely related discipline. Candidates with experience in Computational Fluid Dynamics (CFD), numerical simulation, environmental modelling, fluid mechanics, or air quality research may receive preference. Furthermore, applicants should demonstrate strong analytical ability, research potential, and an interest in sustainable urban engineering.
MSc by Research in Air Pollution Control using Nature-based Solutions Scholarship Application Process
Eligible applicants must apply for admission to the Master by Research program at RMIT University and submit all required scholarship application documents. The selection committee evaluates candidates based on their academic achievements, research experience, technical expertise, and suitability for the project. Shortlisted applicants may also participate in interviews before the university makes the final selection. Successful candidates will undertake their research under the supervision of Professor Aonghus McNabola within RMIT University’s environmental engineering research program.
Opportunities for Scholars
The scholarship provides outstanding opportunities to conduct applied research that improves urban sustainability and public health. As a result, scholars gain expertise in Computational Fluid Dynamics (CFD), air quality modelling, numerical simulation, environmental engineering, urban sustainability, and scientific research methods. Furthermore, they contribute to the development of innovative nature-based solutions that reduce air pollution and support sustainable city design. Their research also strengthens collaboration with experts in environmental engineering and sustainable infrastructure while generating practical solutions for healthier urban environments. Ultimately, the scholarship prepares graduates for successful careers in environmental consulting, air quality management, civil and environmental engineering, government agencies, research institutions, urban planning, and academia.