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Laboratorija
Atlasīt publikācijas, kas satur norādītos vārdus
Polymer Laboratory
Publikācijas indeksētas datu bāzēs Web of Science Core Collection un/vai Scopus, Citas publikācijas zinātniskajos žurnālos, rakstu krājumos un konferenču materiālos, Monogrāfijas/Grāmatas, Zinātniskā komunikācija

2024

WoSCC/Scopus indeksēta publikācija

Effect of Chemical Structure and Apparent Density of Rigid Polyurethane Foams on the Properties of Their Chemical Recycling Products

Materials, 2024, 17(24), 6190, doi: 10.3390/ma17246190

Zemła M.; Kurańska M.; Vevere L.; Kirpluks M.; Malewska E.; Apostolou M.S.; Prociak A.

Environmental benefits of valorising food waste into bio-based polyols for the production of polyurethane rigid foams

Sustainable Production and Consumption, 2024, 51, 572-583, doi: 10.1016/j.spc.2024.09.029

Qin Z.-H.; Fridrihsone A.; Dong L.; Mou J.-H.; Miao Y.; Zhang L.; Xu C.; Kirpluks M.; Lin C.S.K.

Fast-curing bio-based thermoset foams produced via the Michael 1,4-addition using fatty acid-based acetoacetate and acrylate

European Polymer Journal, 2024, 210, 112968, doi: 10.1016/j.eurpolymj.2024.112968

Pomilovskis R.; Kaulina E.; Abolins A.; Mierina I.; Heinmaa I.; Rjabovs V.; Fridrihsone A.; Kirpluks M.

Improvement of the Birch Outer Bark Plywood Binder: The Impact of the Bark Fractional Composition and the Binder Preparation Methodology

Journal of Renewable Materials, 2024, 12(12), 2095-2113, doi: 10.32604/jrm.2024.056769

Bērziņš R.; Pāže A.; Sosins G.; Godiņa D.; Vēvere L.; Rižikovs J.

Open-cell bio-based polyurethane foams modified with biopolyols from non-edible oilseed radish oil

Clean Technologies and Environmental Policy, 2024, 26(8), 2503-2516, doi: 10.1007/s10098-024-02740-2

Malewska E.; Kirpluks M.; Słota J.; Banaś J.; Kurańska M.

Rapeseed Oil as Feedstock for Bio-Based Thermoset Foams Obtained via Michael Addition Reaction

Polymers, 2024, 16(1), 117, doi: 10.3390/polym16010117

Kirpluks M.; Abolins A.; Eihe D.; Pomilovskis R.; Fridrihsone A.

Rigid Polyurethane Foams’ Development and Optimization from Polyols Based on Depolymerized Suberin and Tall Oil Fatty Acids

Polymers, 2024, 16(7), 942, doi: 10.3390/polym16070942

Ivdre A.; Kirpluks M.; Abolins A.; Vevere L.; Sture B.; Paze A.; Godina D.; Rizikovs J.; Cabulis U.

The quantification of gaseous chemical compounds in the smoke from rigid polyurethane and rigid polyisocyanurate foam by a standardless evolved gas analysis method

Journal of Analytical and Applied Pyrolysis, 2024, 177, 106270, doi: 10.1016/j.jaap.2023.106270

Reinerte S.; Cabulis U.; Viksna A.

Valorisation of food waste into bio-based polyurethane rigid foams: From experimental investigation to techno-economic analysis

Chemical Engineering Journal, 2024, 493, 152680, doi: 10.1016/j.cej.2024.152680

Qin Z.-H.; Fridrihsone A.; Mou J.-H.; Pomilovskis R.; Godina D.; Miao Y.; Liu Z.; Tsang C.-W.; Zhang L.; Xu C.; Chopra S.S.; Kaulina E.; Kirpluks M.; Lin C.S.K.