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GROWTH DYNAMICS OF PERENNIAL ENERGY GRASS GENUS MISCANTHUS STUDIED IN SLOVAKIA

Marian Kotrla, Martin Prcik

First published: 2014-06-20https://doi.org/10.5593/sgem2014/b41/s17.033View metrics

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Publication details

Title
GROWTH DYNAMICS OF PERENNIAL ENERGY GRASS GENUS MISCANTHUS STUDIED IN SLOVAKIA
Authors
Marian Kotrla, Martin Prcik
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 14th SGEM GeoConference on ENERGY AND CLEAN TECHNOLOGIES
Publisher
Stef92 Technology
Year
2014
Pages
Not available yet
ISSN
1314-2704
ISBN
978-619-7105-15-5
Language
en
Publication type
Conference Paper
References24
  1. Huang B. & Hwang M.J. & Yang C.W. Causal relationship between energy consumption and GDP growth revisited: a dynamic panel data approach. Ecological Economics. 2008;67(1):41-54.

  2. Escobar J.C. & Lora E.S. &, Venturini O.J. & Yan ez E.E. & Castillo E.F. & Almazan O. Biofuels: environment, technology and food security. Renewable and Sustainable Energy Reviews. 2009;13(6-7):1275–1287.

  3. Singh A. & Pant D. & Korres N.E. & Nizami A.S. & Prasad S. & Murphy J.D. Key issues in life cycl e assessment of ethanol production from lignocellulosic biomass: challenges and perspectives. Bioresource Technology. 2010;101(13):5003–5012.

  4. Khanna M. & Dhungana B. & Clifton-Brown J. Costs of producing miscanthus and switchgrass for bioenergy in Illinois. Biomass and Bioenergy. 2008;32(6):482-493. Section Renewable Energy Sources and Clean Technologies

  5. Jureková, Z. & Drazič G. & Milovanovič J. & Babovič N. & Spasič S. & Marišová E. & Končeková, L. & Kotrla, M. & Tóthová, M. In J ureková Z. & Drazič G. (eds.): External and internal factors influencing the growth and biomass production of short rotation woods genus Salix and perennial grass Miscanthus. 179 p. 2011. ISBN 978-86- 86859-26-6.

  6. Lewandowski I. & Scurlock J.M.O. & Lindwall E. & Christou M. The development and current status of perennial rhizom at ous grasses as energy crops in the US and Europe. In Biomas and Bioenergy, 25, 2003, p. 335-361.

  7. Heaton E.A. & Dohleman F.G. & Long S.P. Seasonal nitrogen dynamics of Miscanthus × giganteus and Panicum virgatum. Global Change Biology. In Bioenergy, 1, 2010, p. 297-307.

  8. Ericsson K. & Rosenqvist H . & Nilsson L .J. Energy crop production costs in the EU. Biomass and Bioenergy. 2009;33(11):1577- 1586.

  9. Greef J. M. & Deuter M. 1993. Syntaxonomy of Miscanthus × giganteus Greef et Deu. In Angewandte Botanik, 67, 1993, p. 87-90.

  10. J ureková Z. & Kotrla M. & Prčík M. & Pauková Ž. Rast a tvorba biomasy genotypov Miscanthus v podmienkach juhozápadného Slovenska. In Acta regionalia et environmentalica Volume 9, No 2/2012, pp. 29-34. 2012. ISSN 1336-5452.

  11. Prčík M. & Kotrla M. Evaluation of dry matter production of M iscanthus sinensis (Tatai). In Acta regionalia et environmentalica Volume 10, No 2/2013, p p. 57-60, 2013. ISSN 1336-5452.

  12. Porvaz P. & Mati R. & Kotorová D. & Jakubová J. Pestovanie ozdobnice čínskej (Miscanthus sinensis Anderss.) na energetické účely . Michalovce : SCPV – Ústav agroekológie. 32 p. ISBN 978-80-88872-93-1.

  13. Huang B. & Hwang M.J. & Yang C.W. Causal relationship between energy consumption and GDP growth revisited: a dynamic panel data approach. Ecological Economics. 2008;67(1):41-54.

  14. Escobar J.C. & Lora E.S. &, Venturini O.J. & Yan ez E.E. & Castillo E.F. & Almazan O. Biofuels: environment, technology and food security. Renewable and Sustainable Energy Reviews. 2009;13(6-7):1275–1287.

  15. Singh A. & Pant D. & Korres N.E. & Nizami A.S. & Prasad S. & Murphy J.D. Key issues in life cycl e assessment of ethanol production from lignocellulosic biomass: challenges and perspectives. Bioresource Technology. 2010;101(13):5003–5012.

  16. Khanna M. & Dhungana B. & Clifton-Brown J. Costs of producing miscanthus and switchgrass for bioenergy in Illinois. Biomass and Bioenergy. 2008;32(6):482-493. Section Renewable Energy Sources and Clean Technologies

  17. Jureková, Z. & Drazič G. & Milovanovič J. & Babovič N. & Spasič S. & Marišová E. & Končeková, L. & Kotrla, M. & Tóthová, M. In J ureková Z. & Drazič G. (eds.): External and internal factors influencing the growth and biomass production of short rotation woods genus Salix and perennial grass Miscanthus. 179 p. 2011. ISBN 978-86- 86859-26-6.

  18. Lewandowski I. & Scurlock J.M.O. & Lindwall E. & Christou M. The development and current status of perennial rhizom at ous grasses as energy crops in the US and Europe. In Biomas and Bioenergy, 25, 2003, p. 335-361.

  19. Heaton E.A. & Dohleman F.G. & Long S.P. Seasonal nitrogen dynamics of Miscanthus × giganteus and Panicum virgatum. Global Change Biology. In Bioenergy, 1, 2010, p. 297-307.

  20. Ericsson K. & Rosenqvist H . & Nilsson L .J. Energy crop production costs in the EU. Biomass and Bioenergy. 2009;33(11):1577- 1586.

  21. Greef J. M. & Deuter M. 1993. Syntaxonomy of Miscanthus × giganteus Greef et Deu. In Angewandte Botanik, 67, 1993, p. 87-90.

  22. J ureková Z. & Kotrla M. & Prčík M. & Pauková Ž. Rast a tvorba biomasy genotypov Miscanthus v podmienkach juhozápadného Slovenska. In Acta regionalia et environmentalica Volume 9, No 2/2012, pp. 29-34. 2012. ISSN 1336-5452.

  23. Prčík M. & Kotrla M. Evaluation of dry matter production of M iscanthus sinensis (Tatai). In Acta regionalia et environmentalica Volume 10, No 2/2013, p p. 57-60, 2013. ISSN 1336-5452.

  24. Porvaz P. & Mati R. & Kotorová D. & Jakubová J. Pestovanie ozdobnice čínskej (Miscanthus sinensis Anderss.) na energetické účely . Michalovce : SCPV – Ústav agroekológie. 32 p. ISBN 978-80-88872-93-1.

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