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School Students participation in monitoring solar radiation components: Preliminary results for UVB and UVA solar radiant fluxes

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  • Jacovides, C.P.
  • Boland, J.
  • Rizou, D.
  • Kaltsounides, N.A.
  • Theoharatos, G.A.

Abstract

As the planet is experiencing dramatic environmental problems mainly due to human activities, education plays an essential role in the formation of pupils’ attitudes toward the environment, both social and natural. That is, the depletion in the concentration of ozone layer in the stratosphere significantly increases the UV radiant flux levels (mainly the part of UVB, from about 290–315 nm) reaching the earth’s surface. These modifications have raised concern among the scientists and policy makers during the last two decades so that numerous field experiments have been conducted illustrating deleterious UVB effects on both ecosystems and human beings. Indeed, in recent years, the ultimate action of education is to sensitize the pupils as well as the public toward environmental problems laying the foundations for both students’ and citizens’ active participation in the protection of the environment.

Suggested Citation

  • Jacovides, C.P. & Boland, J. & Rizou, D. & Kaltsounides, N.A. & Theoharatos, G.A., 2012. "School Students participation in monitoring solar radiation components: Preliminary results for UVB and UVA solar radiant fluxes," Renewable Energy, Elsevier, vol. 39(1), pages 367-374.
  • Handle: RePEc:eee:renene:v:39:y:2012:i:1:p:367-374
    DOI: 10.1016/j.renene.2011.08.037
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    References listed on IDEAS

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    1. Broman, Lars, 1994. "On the didactics of renewable energy education — drawing on twenty years experience," Renewable Energy, Elsevier, vol. 5(5), pages 1398-1405.
    2. Kudish, A.I. & Lyubansky, V. & Evseev, E.G. & Ianetz, A., 2005. "Inter-comparison of the solar UVB, UVA and global radiation clearness and UV indices for Beer Sheva and Neve Zohar (Dead Sea), Israel," Energy, Elsevier, vol. 30(9), pages 1623-1641.
    3. Jacovides, C.P. & Assimakopoulos, V.D. & Tymvios, F.S. & Theophilou, K. & Asimakopoulos, D.N., 2006. "Solar global UV (280–380nm) radiation and its relationship with solar global radiation measured on the island of Cyprus," Energy, Elsevier, vol. 31(14), pages 2728-2738.
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    Cited by:

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    2. Porfirio, Anthony Carlos Silva & De Souza, José Leonaldo & Lyra, Gustavo Bastos & Maringolo Lemes, Marco Antonio, 2012. "An assessment of the global UV solar radiation under various sky conditions in Maceió-Northeastern Brazil," Energy, Elsevier, vol. 44(1), pages 584-592.
    3. Kudish, Avraham I. & Evseev, Efim G., 2012. "UVB irradiance and atmospheric optical depth at the Dead Sea basin, Israel: Measurements and modeling," Renewable Energy, Elsevier, vol. 48(C), pages 344-349.
    4. Utrillas, M.P. & Pedrós, R. & Gandía, S. & Gómez-Amo, J.L. & Estellés, V. & Martínez-Lozano, J.A., 2015. "Measurements of integrated direct, diffuse and global ultraviolet-B radiation," Energy, Elsevier, vol. 93(P2), pages 1658-1662.
    5. Ghoneim, Adel A. & Kadad, Ibrahim M. & Altouq, Majida S., 2013. "Statistical analysis of solar UVB and global radiation in Kuwait," Energy, Elsevier, vol. 60(C), pages 23-34.

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