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TITLE

Lupinus mutabilis for Increased biomass from marginal lands and value for biorefineries

OBJECTIVE

The Andes Lupin (Lupinus mutabilis, tarwi) grows excellently in marginal lands due to it´s excellent foraging characteristics having the ability to fix nitrogen, mobilise soil phosphate and have low nutritional requirements for cultivation. For the increased biomass needed in Europe in coming years and decades we cannot rely on the most fertile lands, which is currently allocated to food production, we need to increase the yield from marginal lands. There the lupin varieties are preponderant, the one providing highest yield (up to 80 ton/ha) is Lupinus mutabilis. Varieties can be chosen for giving this high yield of green silage or high yield of seeds contain more than 20% oil, more than 40% protein and the remainder carbohydrates are mainly oligosaccharides characterized as “prebiotics”. Andes lupin can be grown as a summer crop in N-central Europe conditions and as winter crop in Mediterranean conditions. Breeding and cropping research is performed in the LIBBIO project for maximizing the yield and value of lupin agriculture in different European marginal lands conditions, with respect to both the farmers and biorefineries. Pre-industrial processing is developed and optimized for the lupin, properties of the different fractions analysed, their advantage for different industrial use evaluated, and a few products developed as an example. With respect to environmental impact the lupin is expected to be superior. It does not need much fertilizer, it enriches the soil with nitrogen and phosphate and is therefore expected to be excellent for crop rotation and soil regeneration. These properties will be evaluated further in the project along with techno-economic and agricultural viability and effect on farm and biorefinery income.
ACRONYM

LIBBIO

FUNDING SOURCE

H2020

WEBSITE http://www.libbio.net/
REPORT Not available
CROP CATEGORIES

Lignocellulosic

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PROJECT DURATION

2016-2020

PROJECT TYPE

EU

NUTS3
CROP CATEGORIES

Lignocellulosic

KEYWORDS

Lupin

Marginal lands

Bioeconomy

Bioproducts

OTHER GEOLOCATION
FUNDING SOURCE

H2020

FINAL REPORT

N/A

TOPICS

Cultivation & agronomic management

Harvest & logistics

Genetics & breeding

Uses/applications

COORDINATOR

Innovation Center Iceland

PARTNERS

HANZEHOGESCHOOL GRONINGEN STICHTING (NL)

WAGENINGEN UNIVERSITY (NL)

DEUTSCHES INSTITUT FUER LEBENSMITTELTECHNIK (DE)

STICHTING LOUIS BOLK INSTITUUT (NL)

COLOR & BRAIN BV (NL)

AGENCIA ESTATAL CONSEJO SUPERIOR DE INVESTIGACIONES CIENTIFICAS (ES)

Instituto Superior de Agronomia (PT)

AGRICULTURAL UNIVERSITY OF ATHENS (GR)

LANDGRAEDSLA RIKISINS (IS)

UNIVERSITATEA DE STIINTE AGRICOLE SI MEDICINA VETERINARA ION IONESCU DE LA BRAD DIN IASI (RO)

VANDINTER SEMO BV (NL)

LUSOSEM PRODUTOS PARA AGRICULTURA SA (PT)

HOEHERE BUNDESLEHR- UND FORSCHUNGSANSTALT FUER LANDWIRTSCHAFT RAUMBERG-GUMPENSTEIN (AT)

The Andes Lupin (Lupinus mutabilis, tarwi) grows excellently in marginal lands due to it´s excellent foraging characteristics having the ability to fix nitrogen, mobilise soil phosphate and have low nutritional requirements for cultivation. For the increased biomass needed in Europe in coming years and decades we cannot rely on the most fertile lands, which is currently allocated to food production, we need to increase the yield from marginal lands. There the lupin varieties are preponderant, the one providing highest yield (up to 80 ton/ha) is Lupinus mutabilis. Varieties can be chosen for giving this high yield of green silage or high yield of seeds contain more than 20% oil, more than 40% protein and the remainder carbohydrates are mainly oligosaccharides characterized as “prebiotics”. Andes lupin can be grown as a summer crop in N-central Europe conditions and as winter crop in Mediterranean conditions. Breeding and cropping research is performed in the LIBBIO project for maximizing the yield and value of lupin agriculture in different European marginal lands conditions, with respect to both the farmers and biorefineries. Pre-industrial processing is developed and optimized for the lupin, properties of the different fractions analysed, their advantage for different industrial use evaluated, and a few products developed as an example. With respect to environmental impact the lupin is expected to be superior. It does not need much fertilizer, it enriches the soil with nitrogen and phosphate and is therefore expected to be excellent for crop rotation and soil regeneration. These properties will be evaluated further in the project along with techno-economic and agricultural viability and effect on farm and biorefinery income.

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