Biomass Valorization
Converting renewable biomass into value-added chemicals, fuels, and functional materials: lignocellulose processing, furfural and platform chemicals, hydrothermal carbonization.
Innovative Technologies for Sustainable Chemistry and Energy
A research-driven technology company in Astana, Kazakhstan, developing solutions at the intersection of sustainable chemistry, biomass valorization, advanced materials, and process intensification.
TEQNOVATE is a research-oriented technology company founded in 2025 in Astana, Kazakhstan. We focus on developing innovative and sustainable solutions for chemistry, materials, energy, and industrial processes.
Our goal is to transform scientific research into practical technologies that contribute to cleaner production, efficient resource utilization, and sustainable industrial development.
To develop scientifically advanced and commercially relevant technologies that support sustainable chemistry, clean energy, resource efficiency, and next-generation industrial processes.
To become a recognized technology company connecting scientific innovation with practical industrial applications.
Our work spans six interconnected research areas.
Converting renewable biomass into value-added chemicals, fuels, and functional materials: lignocellulose processing, furfural and platform chemicals, hydrothermal carbonization.
Greener synthesis routes built on renewable feedstocks, reduced solvent use, and waste minimization.
Continuous-flow processes for safer, faster, and more efficient synthesis, from pharmaceutical intermediates to catalytic biomass conversion.
Light-driven reactions in flow photoreactors: photocatalysis, visible-light synthesis, and sustainable oxidation and reduction.
Porous and activated carbons, catalytic and composite materials, membranes, and functional nanomaterials for energy and environmental applications.
Hydrogen storage materials, carbon-based energy materials, and energy-efficient, low-carbon chemical processes.
Flow reaction systems with improved reaction control, heat and mass transfer, safety, and scalability.
Compact photochemical reactors for efficient light-driven synthesis and catalytic processes.
Processes converting agricultural residues and other biomass feedstocks into valuable chemical products.
Design, preparation, testing, and optimization of catalysts for synthesis, biomass conversion, and environmental applications.
Compact, efficient, and controllable chemical processes through advanced reactor design and optimized operating conditions.
We work with research institutions, industrial partners, and technology companies.
Development and optimization of new chemical, materials, and energy technologies.
Laboratory-scale and flow-based synthesis of chemicals, intermediates, and research compounds.
Preparation, screening, and performance evaluation of catalytic materials.
Characterization of chemical products, materials, and process samples: HPLC, GC, spectroscopy, thermal and elemental analysis.
Development and validation of laboratory-scale technologies with scale-up potential.
Experimental testing of chemical processes, catalysts, materials, and reaction conditions.
Consulting in chemistry, chemical engineering, materials science, and biomass conversion.
Yesil District, E 652 Street 10, office 34, Astana 010000, Kazakhstan
250240019672