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Finansuoja Europos Sąjunga. Tačiau išsakytos nuomonės ir požiūriai yra tik autoriaus (-ių) nuomonė ir nebūtinai atspindi Europos Sąjungos ar Europos Komisijos požiūrį ir nuomonę. Nei Europos Sąjunga, nei Europos Komisija negali būti už jas atsakingos.

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  • Privatumo politika
  • Atsakomybės apribojimas
  • Slapukai
Europos vėliava
    • Crop farming
    • Environment
    • Economics

    Practice abstract del GO Control Inteligente de Termografía (CIT) para necesidades hídricas y optimizar el consumo de agua

    The project's main objective is to improve the sustainability of Mediterranean agroecosystems by developing irrigation management systems capable of guaranteeing the productivity of the area's crops under the limitation of existing water resources. In this way, the consumption of existing water resources is optimized with the consequent energy savings, reducing the contamination of groundwater by nitrates and agrochemicals, minimizing soil erosion and respecting the environment.

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    Projektas

    Intelligent Thermography Control. Intelligent thermographic measurement system, which provides real

    Intelligent Thermography Control. Intelligent thermographic measurement system, which provides real-time water status of crops.

    Vieta
    • Spain
    Autoriai
    • Ricardo Serra
    Tikslas
    • Communication
    • Dissemination
    Failo tipas
    Document
    Failo dydis
    290 kB
    Sukurta
    04-04-2020
    Kilmės kalba
    Spanish
    Oficiali projekto svetainė
    Intelligent Thermography Control. Intelligent thermographic measurement system, which provides real
    Licencija
    CC BY
    Raktiniai žodžiai
    • nitrate
    • water
    • irrigation
    • agrochemical
    • energy
    • sustainability
    • erosion
    • environment

    Susijęs turinys

    A Bio-inspired Multilayer Drainage System

    Document

    Agricultural run-off and subsurface drainage tiles transport a significant amount of nitrogen and phosphorus leached after fertilization. alchemia-nova GmbH in collaboration with University of Natural Resources and Life Sciences, Vienna developed two multi-layer vertical filter systems to address the agricultural run-off issue, which has been installed on the slope of an agricultural field in Mistelbach, Austria. While another multi-layer addressing subsurface drainage water is implemented in Gleisdorf, Austria. The goal is to develop a drainage filter system to retain water and nutrients. Both multi-layer filter systems contain biochar and other substrates with adsorption properties of nutrients (nitrogen, phosphorus). The filter system can be of practical use if an excess of nutrients being washed out is of concern in the fields of the practitioner by keeping the surrounding waters clean. This approach may result in economic value by re-using the saturated biochar as fertilizer and improving the soil structure, thus increasing long-term soil fertility. Link: https://wateragri.eu/a-bio-inspired-multilayer-drainage-system/

    • Drainage System
    • water treatment system
    • retain water
    • drainage filter system

    NANOCELLULOSE MEMBRANES FOR NUTRIENT RECOVERY

    Document

    This project has received funding from the European Union’s Horizon 2020 research and innovation program under Grant Agreement No 858735This project has received funding from the European Union’s Horizon 2020 research and innovation program under Grant Agreement No 858735. FACTSHEET NANOCELLULOSE MEMBRANES FOR NUTRIENT RECOVERY Key information Functionalized nanocellulose membranes can take up nitrate and phosphate. These membranes can be put in a water treatment unit. As the membranes are biobased, degradable materials, they can after use be added to the soil, thus returning the leached nutrients back for their original purpose providing fertilizers (nutrient recycling).

    • Biobased nutrient capture
    • agricultural drainage water
    • nanocellulose-based membrane
    • runoff treatmen
    • nutrient-rich membrane

    Environmental monitoring within greenhouse crops using wireless sensors

    Document

    Because variables such as temperature and humidity have a profound effect on the activity of crop pests, diseases and natural enemies, the ability to monitor environmental conditions within a crop has always been important for crop protection.

    • Brassica
    • IPM
    • monitoring
    • pest
    • crop
    • diagnostics
    • detection
    • decision support
    • application
    • techniques
    • sprayer
    • drone
    • UV
    • sensors
    • environmental conditions
    • greenhouse
    • case study
    • temperature
    • humidity