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Biorefinery integration of a green protein platform for maximum resource utilization.
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The multi-feedstock biorefinery – Assessing the compatibility of alternative feedstocks in a 2G wheat straw biorefinery process.
GCB Bioenergy,
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Combination of ensiling and fungal delignification as effective wheat straw pretreatment.
Biotechnology for Biofuels,
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Hydrated metal salt pretreatment and alkali catalyzed reactive distillation: A two-step production of waste cooking oil biodiesel.
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Local protein sources for growing-finishing pigs and their effects on pig performance, sensory quality and climate impact of the produced pork.
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Production of high-value bio-resources from treatment wetland biomass. Abstract from WETPOL 2021: 9th International Symposium on Wetland Pollutants Dynamics and Control, Vienna, Austria.
Rodriguez-Dominguez, M. A.
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The use of treatment wetlands plants for protein and cellulose valorization in biorefinery platform.
Science of the total Environment,
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Optimization of the Recovery of Anthocyanins from Chokeberry Juice Pomace by Homogenization in Acidified Water.
Waste and Biomass Valorization,
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Nutritional values of forage-legume-based silages and protein concentrates for growing pigs.
Animal : an international journal of animal bioscience,
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Scenarier for anvendelse af biomasseressourcer i fremtidens produktionssystemer for fødevarer, energi og materialer inden for rammerne af gældende politik for landbrug, miljø, klima, natur og energi. Aarhus Universitet - DCA - Nationalt Center for Fødevarer og Jordbrug. Rådgivningsrapport fra DCA - Nationalt Center for Fødevarer og Jordbrug
Njakou Djomo, S.
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Green proteins: An energy-efficient solution for increased self-sufficiency in protein in Europe.
Biofuels, Bioproducts and Biorefining,
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Biorefinery of Green Biomass─How to Extract and Evaluate High Quality Leaf Protein for Food? Journal of Agricultural and Food Chemistry,
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Extracts of green biomass as source of protein for pigs. In M. L. Chizzotti (Ed.),
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Kragbæk Damborg, V.
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Ensiled pulp from biorefining increased milk production in dairy cows compared with grass–clover silage.
Journal of Dairy Science,
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Bidrag til MOF spg. 8 i forbindelse med beslutningsforslag 15, No. 2020-0094295, 4 p., May 14, 2020.
Jørgensen, U., Kristensen, T., Jørgensen, J. R., Kongsted, A. G., De Notaris, C., Nielsen, C., Mortensen, E. Ø., Ambye-Jensen, M., Jensen, S. K., Stødkilde-Jørgensen, L., Dalsgaard, T. K., Møller, A. H., Grøn Sørensen, C., Asp, T., Lehmann Olsen, F. & Gylling, M. (2021).
Green biorefining of grassland biomass. DCA - Nationalt Center for Fødevarer og Jordbrug. DCA rapport No. 193
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Coupling the benefits of grassland crops and green biorefining to produce protein, products and services for the green transition. In I. Delaby, R. Beaumont, V. Brocard, S. Lemauviel-Lavenant, S. Plantureux, F. Vertès & J. I. Peyraud (Eds.),
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Green biomass - protein production through biorefining. DCA - Nationalt Center for Fødevarer og Jordbrug,. DCA rapport No. 93
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Effect of screw pressing and days of regrowth on grass silage characteristics and quality. In P. Virkajärvi, K. Hakala, M. Hakojärvi, J. Helin, I. Herzon, V. Jokela, S. Peltonen, M. Rinne, M. Seppänen & J. Uusi-Kämppä (Eds.),
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Fiber digestibility and protein value of pulp silage for lactating dairy cows: Effects of wet fractionation by screw pressing of perennial ryegrass.
Journal of Dairy Science,
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Gylling, M., Nord-Larsen, T.
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Potential Danish biomass production and utilization in 2030. DCA - Nationalt Center for Fødevarer og Jordbrug. DCA Report No. 219
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Gaffey, J., Rajauria, G., McMahon, H., Ravindran, R., Dominguez, C.
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Green Biorefinery systems for the production of climate-smart sustainable products from grasses, legumes and green crop residues.
Biotechnology Advances,
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Djomo, S. N.
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Solving the multifunctionality dilemma in biorefineries with a novel hybrid mass–energy allocation method.
Global Change Biology Bioenergy,
9(11), 1674-1686.
https://doi.org/10.1111/gcbb.12461
Corona, A.
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Techno-environmental assessment of the green biorefinery concept: Combining process simulation and life cycle assessment at an early design stage.
Science of the Total Environment,
635, 100-111.
https://doi.org/10.1016/j.scitotenv.2018.03.357
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Environmental screening of potential biomass for green biorefinery conversion.
Journal of Cleaner Production,
189, 344-357.
https://doi.org/10.1016/j.jclepro.2018.03.316
Chowdhury, M. R.
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Effects of Heat Treatment of Green Protein on in Situ Protein Disappearance and in Vitro Fatty Acid Biohydrogenation.
Journal of Agricultural and Food Chemistry,
66(30), 8169-8178.
https://doi.org/10.1021/acs.jafc.8b02176
Chan, S. W. S., Marami, H., Tayo, L. L., Fog, E.
, Andrade, T. A., Ambye-Jensen, M., Birkved, M. & Khoshnevisan, B. (2024).
Environmental impacts of a novel biorefinery platform integrated with power-to-protein technology to decrease dependencies on soybean imports.
Science of the total Environment,
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