M
Mantha Gousi
Researcher at University of Patras
Publications - 5
Citations - 359
Mantha Gousi is an academic researcher from University of Patras. The author has contributed to research in topics: Catalysis & Deoxygenation. The author has an hindex of 4, co-authored 5 publications receiving 248 citations.
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Journal ArticleDOI
Development of nickel based catalysts for the transformation of natural triglycerides and related compounds into green diesel: a critical review
Christos Kordulis,Christos Kordulis,Kyriakos Bourikas,Mantha Gousi,Eleana Kordouli,Alexis Lycourghiotis +5 more
TL;DR: In this article, the authors reviewed the contributions relevant to each one of the aforementioned subjects for obtaining a synthetic picture concerning the progress pointed out so far and the future perspectives as well.
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Green diesel production over nickel-alumina co-precipitated catalysts
Mantha Gousi,Chrysanthi Andriopoulou,Kyriakos Bourikas,Spyros Ladas,Malamas Sotiriou,Christos Kordulis,Christos Kordulis,Alexis Lycourghiotis +7 more
TL;DR: In this article, a series of nickel-alumina co-precipitated catalysts with varying nickel loading in the range (0-100% nickel) was prepared under close control of the preparation parameters.
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Green diesel production over nickel-alumina nanostructured catalysts promoted by zinc
Mantha Gousi,Eleana Kordouli,Eleana Kordouli,Kyriakos Bourikas,Emmanouil Simianakis,Spyros Ladas,George D. Panagiotou,Christos Kordulis,Christos Kordulis,Christos Kordulis,Alexis Lycourghiotis +10 more
TL;DR: In this article, a series of Ni-Zn catalysts supported on alumina was synthesized and evaluated in the selective deoxygenation of sunflower oil using a semi-batch reactor.
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Green Diesel Production over Nickel-Alumina Nanostructured Catalysts Promoted by Copper
Mantha Gousi,Eleana Kordouli,Kyriakos Bourikas,Emmanouil Symianakis,Spyros Ladas,Christos Kordulis,Alexis Lycourghiotis +6 more
TL;DR: A series of nickel-alumina catalysts promoted by copper containing 1, 2, and 5 wt. % Ni (symbol: 60NiAl) were prepared following a one-step co-precipitation method and evaluated in the selective deoxygenation of sunflower oil using a semi-batch reactor as discussed by the authors.
Journal ArticleDOI
Effect of Immobilization Support and Fermentation Temperature on Beer and Fermented Milk Aroma Profiles
TL;DR: In this article, a sustainable exploitation of wastes like coconut and peanut shells is proposed through the production of carriers for immobilized cells of yeast and bacteria, after thermally drying, were evaluated for their efficiency in beer and milk fermentations respectively, in various fermentation temperatures and storage for up to three months.