Scientific projects of the university

One of the most significant achievements of Satbayev University is the development and implementation of scientific technologies introduced into industrial practice.

Main priority research areas:

  • Ecology, environment, and rational use of natural resources
  • Energy, advanced materials, and transport
  • Advanced manufacturing, digital and space technologies
  • Life and health sciences
  • Sustainable development of the agro-industrial complex
  • Intellectual potential of the country
  • National security and defense, biological safety

The key objectives of the work include generating new knowledge; developing partnership mechanisms necessary for the creation and commercialization of domestic technologies; improving the system of financial support for innovation activities; enhancing scientific, technical, and intellectual potential; and addressing other critical issues related to the development of the innovation-driven economy.

Satbayev University is a leader in innovative scientific research in the country. Its scientists and faculty publish articles in leading international journals, while the number of inventions, patents, and copyrights continues to grow. The university works closely with industry, generating fundamental and applied ideas aimed at solving pressing challenges faced by economic sectors.

The university’s researchers are highly valued in the national labor market and receive recognition at prestigious international symposia and conferences. They actively explore new fields of knowledge and technologies and implement research outcomes following the full innovation cycle—from ideas to practical application in industry.

The University plans its scientific work for years to come, linking its future with the upcoming fourth industrial revolution.

AP25793601 – Improving the efficiency of oil field waterflooding by considering well interactions and optimizing their placement scheme
AP25795745 – Development and study of a new valve assembly model for sucker rod pump units to improve operational performance
AP26103635 – Development and optimization of an impact-hydraulic system for multi-well drilling and enhancing the productivity of low-yield wells in low-permeability reservoirs
AP26103573 – Development of a model and digital tool for designing and calculating technical-economic parameters of seasonal thermal energy storage system to improve efficiency, assess the possibility of integration with other technologies
AP26103501 – Development and integration of models, methods and artifacts of project management into research activities of national universities of Kazakhstan
AP26102805 – Development of supported catalysts based on platinum group metals nanoclusters for hydrogenation processes
AP26102323 – Optimization of Efficiency and Configuration of High-Temperature Heat Pumps for Integrating Renewable Energy Sources and Utilizing Waste Heat
AP26101911 – Vacancy defects in MXene: their study and application for obtaining MXene/cryogel hybrid filter with improved sorption properties for water purification
AP26100917 – Comprehensive Study of Gas-Helium Deposits in Southeastern Kazakhstan: Identifying Prospects for Industrial Extraction
AP26103735 – Increasing the efficiency of underground borehole leaching of uranium using oxidizing reagents in the form of liquid oxygen and ozone
AP26104425 – Development of technology for obtaining binary intermetallic compounds of beryllium with rare earth elements of the lanthanide series
AP26104131 – Assessing the applicability of digital core analysis using field geophysical data to create a 3D geological model of a shale oil reservoir
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