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Katedra Technologii Polimerów
Research PotentialW Katedrze Technologii Polimerów realizowane są prace badawczo-wdrożeniowe, wykonywane ekspertyzy i analizy oraz prowadzone są szkolenia w zakresie technologii polimerów oraz przetwórstwa i recyklingu tworzyw sztucznych. Oferujemy nowe technologie i przeprowadzamy modyfikacje technologii już istniejących.
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Katedra Technologii Chemicznej
Research PotentialTechnologie gazu z łupków
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Katedra Inżynierii Chemicznej i Procesowej
Research Potential* Inżynieria chemiczna i bioprocesowa dla zastosowań w energii odnawialnej * Konstrukcja nowoczesnych rozwiązań do rozdzielania, kontroli i analityki procesowej o kontroli jakości * Otrzymywanie nowych sorbentów i faz stacjonarnych dla procesów rozdzielania w skali od laboratoryjnej do procesowej * Oczyszczanie ścieków przemysłowych z wykorzystaniem zaawansowanych procesów utleniania * Oczyszczanie ścieków przemysłowych z wykorzystaniem...
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Search results for: biomass liquefaction
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Laboratorium Materiałów Polimerowych
Business OfferLaboratorium jest wyposażone w:; • plastometr do badań wskaźnika szybkości płynięcia uplastycznionego tworzywa, ; • młot do badań udarności materiałów, ; • wtryskarkę hydrauliczną z urządzeniami peryferyjnymi wymaganymi do uruchomienia produkcji znormalizowanych próbek do badań wytrzymałościowych,; • zestaw urządzeń przetwórczo - pomiarowych;
Other results Pokaż wszystkie wyniki (21)
Search results for: biomass liquefaction
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Synthesis and characterization of biopolyols through biomass liquefaction of wood shavings and their application in the preparation of polyurethane wood composites
PublicationThe sustainability of production systems in wood processing, wood industry, and wooden waste disposal is an important issue for European industry and society. Proper development of products based on renewable wood resources gives an opportunity to provide materials with long-term environmental, social, and economic sustainability. This study aims to establish a new way of forestry and agricultural waste materials utilization by...
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The study on application of biopolyols obtained by cellulose biomass liquefaction performed with crude glycerol for the synthesis of rigid polyurethane foams
PublicationIn this work rigid polyurethane foams (PUR) were obtained by replacement of 0–70 wt% of petrochemical polyol with bio-polyol obtained via cellulose liquefaction in presence of crude glycerol. The foams with different content of a bio-polyol were prepared by single step method for NCO/OH ratio equals 1.5. The prepared materials were analyzed in terms of their morphology, chemical structure, thermal stability and basic physical and...
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Valorization of bio-based polyols synthesized via biomass liquefaction
Open Research DataAs the properties of polyols have a huge impact on the properties of manufactured polyurethanes, this study aims to determine the influence of polyethylene glycols with different molecular masses on the course of the biomass liquefaction process and bio-polyol properties. The obtained polyols were characterized by rheological studies. To confirm the...
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Characterization of Highly Filled Glass Fiber/Carbon Fiber Polyurethane Composites with the Addition of Bio-Polyol Obtained through Biomass Liquefaction
PublicationThis work aims to investigate the process of obtaining highly filled glass and carbon fiber composites. Composites were manufactured using previously obtained cellulose derived polyol, polymeric methylene diphenyl diisocyanate (pMDI). As a catalyst, dibutyltin dilaurate 95% and Dabco® 33-LV were used. It was found that the addition of carbon and glass fibers into the polymer matrix causes an increase in the mechanical properties...
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Liquefaction of macroalgae Enteromorpha biomass for the preparation of biopolyols by using crude glycerol
PublicationThis article describes the liquefaction process of macroalgae Enteromorpha with the use of crude glycerol as a solvent and a reagent, aimed at obtaining of new bio-polyols, which are characterized with respect to their chemical structure, physical and thermal properties. Six different biopolyols were prepared. In order to optimize the liquefaction of algal biomass for the best bio-polyol properties, two catalysts (sulfuric or orthophosphoric...