Agrovoltaika (Czech Wikipedia)

Analysis of information sources in references of the Wikipedia article "Agrovoltaika" in Czech language version.

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asz.cz

doi.org

dx.doi.org

  • WESELEK, Axel; EHMANN, Andrea; ZIKELI, Sabine. Agrophotovoltaic systems: applications, challenges, and opportunities. A review. Agronomy for Sustainable Development. 2019-06-19, roč. 39, čís. 4, s. 35. Dostupné online [cit. 2022-02-07]. ISSN 1773-0155. DOI 10.1007/s13593-019-0581-3. (anglicky) 
  • GOETZBERGER, A.; ZASTROW, A. On the Coexistence of Solar-Energy Conversion and Plant Cultivation. International Journal of Solar Energy. 1982-01-01, s. 55–69. ISSN 0142-5919. DOI 10.1080/01425918208909875. Bibcode 1982IJSE....1...55G. 
  • BARRON-GAFFORD, Greg A.; PAVAO-ZUCKERMAN, Mitchell A.; MINOR, Rebecca L. Agrivoltaics provide mutual benefits across the food–energy–water nexus in drylands. Nature Sustainability. 2019-09, roč. 2, čís. 9, s. 848–855. Dostupné online [cit. 2021-12-17]. ISSN 2398-9629. DOI 10.1038/s41893-019-0364-5. (anglicky) 
  • AMADUCCI, Stefano; YIN, Xinyou; COLAUZZI, Michele. Agrivoltaic systems to optimise land use for electric energy production. Applied Energy. 2018-06-15, roč. 220, s. 545–561. Dostupné online [cit. 2022-02-07]. ISSN 0306-2619. DOI 10.1016/j.apenergy.2018.03.081. (anglicky) 
  • ANDREW, Alyssa C.; HIGGINS, Chad W.; SMALLMAN, Mary A. Herbage Yield, Lamb Growth and Foraging Behavior in Agrivoltaic Production System. Frontiers in Sustainable Food Systems. 2021, roč. 5, s. 126. Dostupné online [cit. 2021-12-17]. ISSN 2571-581X. DOI 10.3389/fsufs.2021.659175. 
  • PASCARIS, Alexis S.; HANDLER, Rob; SCHELLY, Chelsea. Life cycle assessment of pasture-based agrivoltaic systems: Emissions and energy use of integrated rabbit production. Cleaner and Responsible Consumption. 2021-12-01, roč. 3, s. 100030. Dostupné online [cit. 2021-12-17]. ISSN 2666-7843. DOI 10.1016/j.clrc.2021.100030. (anglicky) 
  • GRAHAM, Maggie; ATES, Serkan; MELATHOPOULOS, Andony P. Partial shading by solar panels delays bloom, increases floral abundance during the late-season for pollinators in a dryland, agrivoltaic ecosystem. Scientific Reports. 2021-04-02, roč. 11, čís. 1, s. 7452. Dostupné online [cit. 2021-12-22]. ISSN 2045-2322. DOI 10.1038/s41598-021-86756-4. (anglicky) 

doi.org

  • WESELEK, Axel; EHMANN, Andrea; ZIKELI, Sabine. Agrophotovoltaic systems: applications, challenges, and opportunities. A review. Agronomy for Sustainable Development. 2019-06-19, roč. 39, čís. 4, s. 35. Dostupné online [cit. 2022-02-07]. ISSN 1773-0155. DOI 10.1007/s13593-019-0581-3. (anglicky) 

ecowatch.com

  • A New Vision for Farming: Chickens, Sheep, and ... Solar Panels [online]. 2020-04-28 [cit. 2020-07-19]. Dostupné online. (anglicky) 

efotovoltaika.cz

  • Agrivoltaika je v kurzu. Solární panely dokáží krom výroby elektřiny zlepšit zemědělcům výnosnost plodin i několikanásobně - eFotovoltaika.cz [online]. 2022-07-04 [cit. 2022-07-04]. Dostupné online. 

frontiersin.org

harvard.edu

adsabs.harvard.edu

nature.com

  • BARRON-GAFFORD, Greg A.; PAVAO-ZUCKERMAN, Mitchell A.; MINOR, Rebecca L. Agrivoltaics provide mutual benefits across the food–energy–water nexus in drylands. Nature Sustainability. 2019-09, roč. 2, čís. 9, s. 848–855. Dostupné online [cit. 2021-12-17]. ISSN 2398-9629. DOI 10.1038/s41893-019-0364-5. (anglicky) 
  • GRAHAM, Maggie; ATES, Serkan; MELATHOPOULOS, Andony P. Partial shading by solar panels delays bloom, increases floral abundance during the late-season for pollinators in a dryland, agrivoltaic ecosystem. Scientific Reports. 2021-04-02, roč. 11, čís. 1, s. 7452. Dostupné online [cit. 2021-12-22]. ISSN 2045-2322. DOI 10.1038/s41598-021-86756-4. (anglicky) 

repec.org

ideas.repec.org

  • PASCARIS1, Alexis S.; SCHELLY, Chelsea; ROULEAU, Mark. Do Agrivoltaics Improve Public Support for Solar Photovoltaic Development? Survey Says: Yes!. [s.l.]: [s.n.] Dostupné online. (anglicky) 

sciencedirect.com

  • AMADUCCI, Stefano; YIN, Xinyou; COLAUZZI, Michele. Agrivoltaic systems to optimise land use for electric energy production. Applied Energy. 2018-06-15, roč. 220, s. 545–561. Dostupné online [cit. 2022-02-07]. ISSN 0306-2619. DOI 10.1016/j.apenergy.2018.03.081. (anglicky) 
  • PASCARIS, Alexis S.; HANDLER, Rob; SCHELLY, Chelsea. Life cycle assessment of pasture-based agrivoltaic systems: Emissions and energy use of integrated rabbit production. Cleaner and Responsible Consumption. 2021-12-01, roč. 3, s. 100030. Dostupné online [cit. 2021-12-17]. ISSN 2666-7843. DOI 10.1016/j.clrc.2021.100030. (anglicky) 

worldcat.org

  • WESELEK, Axel; EHMANN, Andrea; ZIKELI, Sabine. Agrophotovoltaic systems: applications, challenges, and opportunities. A review. Agronomy for Sustainable Development. 2019-06-19, roč. 39, čís. 4, s. 35. Dostupné online [cit. 2022-02-07]. ISSN 1773-0155. DOI 10.1007/s13593-019-0581-3. (anglicky) 
  • GOETZBERGER, A.; ZASTROW, A. On the Coexistence of Solar-Energy Conversion and Plant Cultivation. International Journal of Solar Energy. 1982-01-01, s. 55–69. ISSN 0142-5919. DOI 10.1080/01425918208909875. Bibcode 1982IJSE....1...55G. 
  • BARRON-GAFFORD, Greg A.; PAVAO-ZUCKERMAN, Mitchell A.; MINOR, Rebecca L. Agrivoltaics provide mutual benefits across the food–energy–water nexus in drylands. Nature Sustainability. 2019-09, roč. 2, čís. 9, s. 848–855. Dostupné online [cit. 2021-12-17]. ISSN 2398-9629. DOI 10.1038/s41893-019-0364-5. (anglicky) 
  • AMADUCCI, Stefano; YIN, Xinyou; COLAUZZI, Michele. Agrivoltaic systems to optimise land use for electric energy production. Applied Energy. 2018-06-15, roč. 220, s. 545–561. Dostupné online [cit. 2022-02-07]. ISSN 0306-2619. DOI 10.1016/j.apenergy.2018.03.081. (anglicky) 
  • ANDREW, Alyssa C.; HIGGINS, Chad W.; SMALLMAN, Mary A. Herbage Yield, Lamb Growth and Foraging Behavior in Agrivoltaic Production System. Frontiers in Sustainable Food Systems. 2021, roč. 5, s. 126. Dostupné online [cit. 2021-12-17]. ISSN 2571-581X. DOI 10.3389/fsufs.2021.659175. 
  • PASCARIS, Alexis S.; HANDLER, Rob; SCHELLY, Chelsea. Life cycle assessment of pasture-based agrivoltaic systems: Emissions and energy use of integrated rabbit production. Cleaner and Responsible Consumption. 2021-12-01, roč. 3, s. 100030. Dostupné online [cit. 2021-12-17]. ISSN 2666-7843. DOI 10.1016/j.clrc.2021.100030. (anglicky) 
  • GRAHAM, Maggie; ATES, Serkan; MELATHOPOULOS, Andony P. Partial shading by solar panels delays bloom, increases floral abundance during the late-season for pollinators in a dryland, agrivoltaic ecosystem. Scientific Reports. 2021-04-02, roč. 11, čís. 1, s. 7452. Dostupné online [cit. 2021-12-22]. ISSN 2045-2322. DOI 10.1038/s41598-021-86756-4. (anglicky) 

yaleclimateconnections.org

  • Solar and crop production research shows ‘multi-solving’ climate benefits » Yale Climate Connections. Yale Climate Connections [online]. 2021-12-01 [cit. 2021-12-17]. Dostupné online. (anglicky)