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Catalytic upgrading of lignocellulose-derived platform molecules : Screening of homogeneous catalysts

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dc.date.accessioned 2013-04-09T13:59:38Z und
dc.date.accessioned 2017-10-24T12:19:36Z
dc.date.available 2013-04-09T13:59:38Z und
dc.date.available 2017-10-24T12:19:36Z
dc.date.issued 2013-04-09T13:59:38Z
dc.identifier.uri http://radr.hulib.helsinki.fi/handle/10138.1/2490 und
dc.identifier.uri http://hdl.handle.net/10138.1/2490
dc.title Catalytic upgrading of lignocellulose-derived platform molecules : Screening of homogeneous catalysts en
ethesis.discipline Inorganic Chemistry en
ethesis.discipline Epäorgaaninen kemia fi
ethesis.discipline Oorganisk kemi sv
ethesis.discipline.URI http://data.hulib.helsinki.fi/id/98a50d4e-20e4-4960-9568-e70cd0c26540
ethesis.department.URI http://data.hulib.helsinki.fi/id/c2dd677c-da9c-4011-94b0-27b1585ac1cb
ethesis.department Kemiska institutionen sv
ethesis.department Department of Chemistry en
ethesis.department Kemian laitos fi
ethesis.faculty Matematisk-naturvetenskapliga fakulteten sv
ethesis.faculty Matemaattis-luonnontieteellinen tiedekunta fi
ethesis.faculty Faculty of Science en
ethesis.faculty.URI http://data.hulib.helsinki.fi/id/8d59209f-6614-4edd-9744-1ebdaf1d13ca
ethesis.university.URI http://data.hulib.helsinki.fi/id/50ae46d8-7ba9-4821-877c-c994c78b0d97
ethesis.university Helsingfors universitet sv
ethesis.university University of Helsinki en
ethesis.university Helsingin yliopisto fi
dct.creator Nurttila, Sandra
dct.issued 2013
dct.language.ISO639-2 eng
dct.abstract Lignocellulosic biomass has received widespread attention as environmentally benign feedstock for fuels. Biomass consists of cellulose, hemicellulose and lignin and has rather high oxygen content. Different techniques for the conversion of lignocellulose to liquid fuels have been suggested in the literature. In this thesis the emphasis is on the utilization of biomass-derived platform molecules. Platform molecules include eg. ketones, alcohols and carboxylic acids. In the literary section different deoxygenation and C-C coupling reactions for the conversion of biomass-derived platform molecules to larger hydrocarbons have been reviewed. Reaction routes for upgrading of the platform molecules 5-hydroxymethylfurfural, 2-furaldehyde, levulinic acid and some monofunctional compounds have been presented. These paths comprise mainly dehydration, hydrogenation, aldol condensation and ketonization. Heterogeneous catalysis, particularly bifunctional supported catalysts, dominates in this field. The selectivity that may be achieved with homogeneous catalysts is seen as highly desirable and served as the main incentive for the experimental work. Furthermore, the lack of publications in the area of homogeneously catalyzed C-C coupling of biomass-derived compounds also motivated for the work. Herein, 1st row transition metal acetates were utilized as catalysts for the ketonization of biomass-derived levulinic acid and other carboxylic acids. Some experiments were conducted with lignin as well. Reactions were performed under microwave heating or reflux conditions. Products were analyzed by GC-MS, GC-FID, NMR and FTIR. Combinatorial chemistry made it possible to conduct up to twelve reactions simultaneously. More than 160 reactions were performed in less than two months' time. The main product in many of the reactions was aromatic phthalic acid mono 2-ethylhexyl ester. Some other interesting products included hexadecanoic acid, 2,6-dimethyl-2,5-heptadien-4-one, diisooctyl and dibutyl phthalate. Despite small amounts of the products, their presence proves that various compounds may be produced from biomass by tailoring the catalyst and reaction conditions. en
dct.language en
ethesis.language.URI http://data.hulib.helsinki.fi/id/languages/eng
ethesis.language English en
ethesis.language englanti fi
ethesis.language engelska sv
ethesis.thesistype pro gradu-avhandlingar sv
ethesis.thesistype pro gradu -tutkielmat fi
ethesis.thesistype master's thesis en
ethesis.thesistype.URI http://data.hulib.helsinki.fi/id/thesistypes/mastersthesis
dct.identifier.urn URN:NBN:fi-fe2017112251399
dc.type.dcmitype Text

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