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Kaunas University of Technology


Lithuanian scientists propose a greener alternative for fire‑resistant concrete

Researchers at Kaunas University of Technology have developed a greener alternative for fire-resistant concrete using waste-based geopolymer mortars. These materials retain high compressive strength even after exposure to extreme heat, making them ideal for construction applications where high temperatures are present.

SourceKaunas University of Technology·JournalScientific Reports·TypeExperimental study·DateJul 28, 2026

Scientists use textile ash to create extremely strong cement

Researchers at Kaunas University of Technology have developed a new way to turn textile waste into energy and high-performance cement materials. The production of alternative fuel from textile waste can reduce CO2 emissions during cement production, while also providing an innovative approach to textile waste management.

SourceKaunas University of Technology·JournalJournal of Thermal Analysis·TypeExperimental study·DateNov 26, 2025

KTU researchers develop a system that helps block illegal timber from entering the EU market

A blockchain-based tracking and trading system designed to ensure full transparency in the timber supply chain. The system uses unique identifiers, blockchain technology, and smart contracts to verify wood origin and prevent illicit trade. This creates a competitive advantage for responsible businesses and promotes sustainability.

SourceKaunas University of Technology·JournalJournal of Industrial Information Integration·DateNov 24, 2025

Painting memory: Lithuanian researchers explore how street art shapes urban identity

Street art in Kaunas, Lithuania acts as a form of cultural activism and collective memory, blending languages, images, and historical narratives. Murals have become powerful tools for community reflection and dialogue, turning public space into a living archive of cultural identity.

SourceKaunas University of Technology·JournalJournal of Multilingual and Multicultural Development·TypeCase study·DateNov 3, 2025

World’s first: Lithuanian scientists’ discovery may transform OLED technology and explosives detection

Researchers have observed the luminescence of an excited complex formed by two donor molecules, opening possibilities for developing simpler, more efficient OLED devices. The discovery also enables the creation of sensitive sensors capable of detecting low concentrations of explosive substances.

SourceKaunas University of Technology·JournalACS Applied Electronic Materials·DateJul 8, 2025

From microplastics to macro-impact: KTU expert explains plastic recycling challenges

The use of plastic in Europe has skyrocketed, with each person generating an average of 36 kg of plastic packaging waste in 2021. KTU researchers conducted a macro-environmental analysis to examine six key areas influencing plastic packaging recycling, including outdated regulations and lower quality recycled plastics. This highlights ...

SourceKaunas University of Technology·JournalEuropean Journal of Medicinal Chemistry·DateJan 13, 2025

Managing forests with smart technologies

Researchers in Lithuania have developed Forest 4.0, a smart forest data processing model that enables real-time monitoring of forest conditions, sustainable resource accounting, and transparent governance. The system uses IoT sensors and AI algorithms to detect tree diseases, illegal logging, and predict changes in forest ecosystems.

SourceKaunas University of Technology·JournalFrontiers in Forests and Global Change·DateNov 25, 2024

Lithuanian scientists are developing an ultrasound device to improve blood circulation and prevent diabetes complications in the lower extremities

Scientists from Kaunas University of Technology and Lithuanian University of Health Sciences developed a non-invasive ultrasonic foot stimulation device to improve blood circulation in the lower limbs. The device uses low-frequency ultrasound to stimulate blood flow and regulate thrombogenesis, immune response, and inflammatory processes.

KTU scientists’ innovation for indoor solar cells can maximize the use of light energy

Researchers at Kaunas University of Technology (KTU) develop materials to improve indoor photovoltaic cells, generating electricity even in low-intensity light. The innovation utilizes Internet of Things technologies to efficiently regulate device operation and optimize energy consumption.

SourceKaunas University of Technology·JournalACS Applied Materials & Interfaces·TypeExperimental study·DateJul 25, 2024

With the rise of global mobility, the topic of international employees’ adjustment needs attention

A recent study by KTU and Germany highlights the lack of research on international employee adjustment, particularly for self-initiated expatriates and migrants. The study proposes a future research agenda to address organisational support, individual factors, and demographics influencing adjustment.

SourceKaunas University of Technology·JournalHumanities and Social Sciences Communications·TypeLiterature review·DateJul 15, 2024

Companies can improve the sustainability of their products in the earliest product-design stages

A new tool and framework allow companies to assess the circularity of their products in early design stages, enabling them to create sustainable new products. The circular design framework consists of 10 categories and includes interactive questions, helping entrepreneurs and designers think systematically and collaborate better.

SourceKaunas University of Technology·JournalJournal of Industrial Ecology·TypeSurvey·DateMay 27, 2024

Lithuanian researchers’ new development in solar cell technology – a promise of a significant advancement in the field

Researchers from Kaunas University of Technology have developed a new technology for perovskite solar cells using self-assembling monolayers. This innovation increases the efficiency of solar cells by allowing only one type of charge to pass through, similar to an automatic gate on the subway.

SourceKaunas University of Technology·JournalACS Energy Letters·TypeExperimental study·DateMay 15, 2024

Novel material for perovskite solar cells can improve their stability and efficiency

Researchers at Kaunas University of Technology developed a new material for perovskite solar cells, which exhibits better power conversion efficiencies and operational stability. The material, synthesised through polymerisation, can be used in both regular and inverted architecture solar cells.

SourceKaunas University of Technology·JournalACS Applied Materials & Interfaces·TypeExperimental study·DateMar 19, 2024

Low-frequency ultrasound can improve oxygen saturation in blood

Researchers at Kaunas University of Technology found that low-frequency ultrasound influences blood parameters, improving oxygen saturation and lowering blood pressure. The study used artificial intelligence to analyze 300 blood samples, revealing the potential for non-pharmaceutical treatment to improve oxygen circulation.

SourceKaunas University of Technology·JournalApplied System Innovation·TypeExperimental study·DateJan 22, 2024

Lithuanian researchers recycle surgical masks for hydrogen-rich gas production

Researchers from Kaunas University of Technology and Lithuanian Energy Institute investigate the possibilities of plasma gasification to convert surgical mask waste into hydrogen-rich syngas, which shows a 42% higher heating value than biomass. The obtained syngas can be used as clean fuel with low carbon emissions.

SourceKaunas University of Technology·JournalInternational Journal of Hydrogen Energy·TypeExperimental study·DateJan 10, 2024

Revolutionary idea by Lithuanian scientists: recycling cigarette waste to produce green fuel

Researchers at Kaunas University of Technology develop method to treat cigarette butts using pyrolysis, producing oil, char, and gas with real applications in fertilizers, wastewater treatment, energy storage, and biofuels. The process reduces biodiesel production costs by adding triacetin-rich oil as an additive.

SourceKaunas University of Technology·JournalJournal of Analytical and Applied Pyrolysis·TypeExperimental study·DateNov 27, 2023