Olivia-Stella Salm

Publications

Journal / Periodical: Vibrational Spectroscopy
Authors: Salm, Olivia-Stella; Kudrjashova, Marina; Kulp, Maria
Year: 2026
Green non-destructive approach for quantifying hydroxyl groups in lignin using ATR-FTIR spectroscopy and chemometric methods
Journal / Periodical: Baltic Polymer Symposium 2025: Book of abstracts
Authors: Salm, O-S; Kudrjašova, M; Kulp, M.
Year: 2025
Journal / Periodical: Analytical Methods
Authors: Ho, T. Tran; Salm, Olivia-Stella; Lukk, Tiit; Kulp, Maria
Year: 2025

Projects

Year: 2026 - 2029
The ReDESign project focuses on the production of high-purity lignin and on developing a technology for recovering the green solvent needed for this process. Lignin is generated in large amounts as a by-product of the pulp industry, but it is mostly used as a low-value fuel. At the same time, purified lignin could serve as a raw material for higher value products such as composite materials, carbon materials, and other advanced bio-based products. The aim of the project is to develop a method that enables efficient regeneration and recycling of the deep eutectic solvent (DES) used in lignin purification. The expected results include a workable solvent reuse concept, improved understanding of the process chemistry, and a basis for creating an industrially applicable technology. In Estonia, this can support smarter use of biomass, promote the circular economy, and create new opportunities for developing high-value materials and technologies.
Year: 2024 - 2028
Wood or lignocellulosic biomass more generally, is a readily available renewable resource, offering sustainable solutions for our growing human population. The core wood polymers - cellulose, hemicellulose, and lignin - serve as fundamental components, extending beyond paper production to produce valuable wood sugars, textile fibers, thermoplastics, and fine chemicals. In our project, we are developing enzyme technologies utilizing extremophilic microbe-derived enzymes to break down and modify lignin, remove toxic phenolic compounds, convert cellulose into wood sugars, and advance enzyme-catalyzed cellulose technologies. Additionally, the project focuses on advancing technologies for converting kraft, hydrolysis (and organosolv) and synthetic lignins into porous materials, thermoplastics, and cutting-edge catalysts.