Lantbruks- och trädgårdsföretagarnas egen forskningsstiftelse finansierar behovsdriven forskning för svenska förhållanden.
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Lantbruks- och trädgårdsföretagarnas egen forskningsstiftelse finansierar behovsdriven forskning för svenska förhållanden.
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Status: | Pågående |
Projektnummer: | O-18-20-162 |
Kategori: | Focus area | Food & feed |
Branschområden: | Växtodling |
Ansökningsår: | 2018 |
Huvudsökande: | Kristin Piikki |
Organisation: | Kristin Piikki |
E-postadress: | kristin.piikki@slu.se |
Telefon: | 0511-67222 |
Medsökande: | Henrik Stadig |
Medsökande: | Mats Söderström |
The goal is models for translating satellite data from the time of supplementary fertilisation directly to nitrogen (N) recommendation maps. The crops are winter wheat (Triticum aestivum L.) and malting barley (Hordeum vulgare L.). A new multispectral camera for drones, with nine bands of the same specifications as Sentinel-2 in the 400-900 nm spectral range, will be used to collect reflectance data in Swedish trial series L3-2299 and L3-2302. Robust models for economically optimal N rates will be developed and evaluated. If successful, models can be implemented in satellite-based decision support systems for precision agriculture, such as CropSAT. Key results will be implemented in a ‘Focus on Nutrients’ (national programme to improve nutrient use efficiency) module on precision agriculture. Potential benefits of the models can be large, by enabling wide application of more accurate N fertilisation. The project spans the knowledge chain from needs-driven research to evaluation.
Målet är prediktionsmodeller som direkt översätter satellitdata från tiden för tilläggsgödsling till kväverekommendationskartor. Grödorna är höstvete (Triticum aestivum L.) och maltkorn (Hordeum vulgare L.). En ny drönarburen multispektral kamera med nio våglängdsband med samma specifikationer som Sentinel-2 i det spektrala området 400-900 nm ska användas för att samla in reflektansdata i försöksserierna L3-2299 och L3-2302. Från insamlade data ska robusta modeller för ekonomiskt optimal kvävegiva utvecklas och utvärderas. Om dessa bedöms tillförlitliga ska de tillhandahållas fritt för implementering i satellitbaserade beslutsstödsystem för precisionsodling (t.ex. CropSAT). Viktiga resultat från projektet ska implementeras i Greppa Näringens precisionsodlingsmodul. Nyttan för näringen bedöms som stor då man möjliggör bred tillämpning av mer träffsäker kvävegödsling och projektet spänner över hela kunskapskedjan från behovsdriven forskning till produktutveckling och utvärdering.
Projektnummer: O-17-20-958 • Status: Avslutat • Datum för slutrapport: 3 september 2021
We want to develop a high-yielding cropping systems where the need for tillage and herbicides is greatly reduced compared with current conventional farming systems. The cropping system include, cultivation with wide row spacing, strip sowing and band spraying, combined with the use of subsidiary …
Läs merProjektnummer: O-17-22-980 • Status: Avslutat • Datum för slutrapport: 31 augusti 2021
Peat use in horticulture is increasingly discussed due to its climate-relevance and the disturbance of mires. At the
same time, peat is the most important, natural horticultural growing media constituent and only a few other organic
constituents have gained acceptance in horticulture, but cannot …
Projektnummer: S-17-24-784 • Status: Avslutat • Datum för slutrapport: 1 juli 2021
Slippery floors results in falls and injuries which can be fatal. Moreover, on dairy farms slippery floors impede oestrus behaviour and ease of heat detection and as result cause economical losses due to impaired fertility. Grooving is the most common way to treat concrete floors to reduce …
Läs merProjektnummer: V1430018 • Status: Avslutat • Datum för slutrapport: 30 juni 2021
A primary reason for unhealthy legs and claws are unsuitable floor properties in dairy houses,
which may result in slippery floors and slip injuries to cows and mastitis.
The hygiene of a floor surface and floor properties affect the cow claw/floor interaction and gait.
The aim is to determine an …
Projektnummer: O-17-22-943 • Status: Avslutat • Datum för slutrapport: 30 juni 2021
The main purpose of this interdisciplinary project is to generate renewable advanced materials from biomass through green technologies. Harvest2.0 focuses on valorizing furans extracted from agricultural by-products in combination with polymer technologies based on incorporation of the climate gas …
Läs merProjektnummer: O-17-20-982 • Status: Avslutat • Datum för slutrapport: 30 juni 2021
We are facing a protein shift in which a portion of the animal based protein in our diet needs to be replaced by plant proteins to reduce the climate impact from the food sector. Many agricultural by-streams contain high value proteins not used to their full potential. We aim to recover proteins …
Läs merProjektnummer: H-19-47-475 • Status: Avslutat • Datum för slutrapport: 30 juni 2021
Respiratory conditions is a growing issue in the equine industry and for horse welfare. Equine asthma is characterised by airway obstruction, chronic intermittent cough and mucus accumulation an impact the quality of life for affected horses. Similar to its human equivalent, equine asthma is a …
Läs merProjektnummer: H-19-47-484 • Status: Avslutat • Datum för slutrapport: 30 juni 2021
The transition from winter-feeding to pasture involves a considerable diet change that might compromise the health of horses. Diseases like colic as well as insulin dysregulation and pasture associated laminitis are related to diet changes and pasture intake. However, little information exist on …
Läs merProjektnummer: H-17-47-290 • Status: Avslutat • Datum för slutrapport: 29 juni 2021
The purpose of the project is to analyse stable cultures in cyberspace in Sweden and Norway. In recent years, questions about the welfare of horses have been debated in social media and norms for horse-keeping are created on Internet. In this project, these norms are conceptualised as stable …
Läs merProjektnummer: O-16-20-761 • Status: Avslutat • Datum för slutrapport: 1 juni 2021
Using split fertilization of nitrogen (N) in wheat production is today well-established to increase protein content and adjust fertilization. However, deep knowledge and understanding of N uptake and remobilization during late stages of crop development are missing. Moreover, while split …
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