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A short communication on the effect of nitrogen fertilization of willow on yield, combustion emissions and greenhouse gas balance

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Abstract

Nitrogen fertilizer was applied to willow after harvest in 2011, two levels of nitrogen were applied (75; 150 kg N/ha) in addition to a control. The trial was harvested in January 2013, biomass from each treatment was burnt and emissions from combustion were quantified. Nitrogen application increased leaf nitrogen and plant height although there was no difference between the nitrogen treatments. Plant height and maximum stem diameter increased with applied nitrogen at final harvest. Nitrogen fertilization significantly increased yield by 35 % although there was no difference between the two nitrogen treatments. Stem nitrogen content did not differ significantly between treatments and there was no significant difference in NOx emissions between treatments. A life cycle assessment showed that nitrogen fertilization significantly increased net greenhouse gas benefit by up to 30 % depending on the fuel replaced. The study demonstrated that the application of relatively low levels of nitrogenous fertilizer to willow can significantly improve greenhouse gas mitigation without affecting other aspects of the environment such as air quality.

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References

  • Cadoux S, Riche AB, Yates NE, Machet JM (2012) Nutrient requirements of Miscanthus x giganteus: conclusions from a review of published studies. Biomass Bioenergy 38:14–22

    Article  CAS  Google Scholar 

  • Conry MJ, Ryan P (1967) Soils of County Carlow. Soil survey Bulletin No 17. http://www.agresearch.teagasc.ie/johnstown/Soil%20maps/Carlow/book.pdf. Accessed 21st August 2013

  • Dalgaard T, Halberg N, Porter JR (2001) A model of fossil energy use in Danish agriculture used to compare organic and conventional farming. Agric Ecosyst Environ 87:51–65

    Article  Google Scholar 

  • De Klein C, Novoa R, Ogle S, Smith K, Rochette P, Wirth T, McConkey B, Mosier A, Rypdal K, Walsh M, Williams S (2006) N2O emissions from managed soils, and CO2 emissions from lime and urea application. In: Eggleston S, Buendia L, Miwa K, Ngara T, Tanabe K (eds) 2006 IPCC Guidelines for National Greenhouse Gas Inventories. Published by the Institute for Global Environmental Strategies, Hayama, Kanagawa, Japan, pp 11.1–11.54

  • Dimitriou I, Mola-Yudego B, Aronsson P (2012) Impact of willow short rotation coppice on water quality. Bioenergy Res 5(3):537–545

    Article  CAS  Google Scholar 

  • Duffy P, Hanley E, Hyde B, O’Brien P, Ponzi J, Cotter E, Black K (2013) Ireland national inventory report 2013. Greenhouse gas emissions 1990-2011 reported to the United Nations framework convention on climate change. Environmental Protection Agency, Johnstown Castle, Wexford, Ireland. http://erc.epa.ie/ghg/nirdownloads.php. Accessed 10th November 2013

  • Flessa H, Ruser R, Dorsch P, Kamp T, Jimenez MA, Munch JC (2002) Integrated evaluation of greenhouse gas emissions from two farming systems in southern Germany. Agric Ecosyst Environ 91:175–189

    Article  CAS  Google Scholar 

  • Hytonen J (1994) Effect of fertilizer application rate on nutrient status and biomass production in short-rotation plantations of willows on cut-away peatland areas. Suo 45:65–77. ISSN 0039-5471

    Google Scholar 

  • Hytonen J (1995a) Effect of fertilizer treatment on the biomass production and nutrient uptake of short rotation willow on cut-away peatlands. Silva Fenn 29(1):21–40

    Article  Google Scholar 

  • Hytonen J (1995b) Effect of repeated fertilizer application on the nutrient status and biomass production of Salix ‘Aquatica’ plantations on cut-away peatland areas. Silva Fenn 29(2):107–116

    Article  Google Scholar 

  • Hytonen J (1996) Biomass production and nutrition of short-rotation plantations. Academic dissertation presented to the University of Helsinki

  • Hytonen J, Saarsalmi A (2009) Long term biomass production and nutrient uptake of birch, alder and willow plantations on cut-away peatland. Biomass Bioenergy 33:1197–1211

    Article  CAS  Google Scholar 

  • IEABCC (2013) International energy agency biomass combustion and cofiring database of biomass co-firing initiatives. http://www.ieabcc.nl/. Accessed 10th November 2013

  • Miguez FE, Villamil MB, Long SP, Bollero GNA (2008) Meta-analysis of the effects of management factors on Miscanthus giganteus growth and biomass production. Agric For Meteorol 148:1280–1292

    Article  Google Scholar 

  • Sommersacher P, Brunner T, Obernberger I (2012) Fuel indexes: a novel method for the evaluation of relevant combustion properties of new biomass fuels. Energy Fuels 26(1):380–390

    Article  CAS  Google Scholar 

  • Van Loo S, Koppejan J (2008) The handbook of biomass combustion and co-firing. ISBN 978-1-84407-249-1. EARTHSCAN, London and Sterling, VA

  • Weih M (2001) Evidence for increased sensitivity to nutrient and water stress in a fast growing hybrid willow compared with a natural willow clone. Tree Physiol 21:1141–1148

    Article  CAS  PubMed  Google Scholar 

  • Weih M, Nordh NE (2002) Characterising willows for biomass and phytoremediation: growth, nitrogen and water use of 14 willow clones under different irrigation and fertilisation regimes. Biomass Bioenergy 23:397–413

    Article  Google Scholar 

  • Weih M, Ronnberg-Wastljung A-C (2007) Shoot biomass growth is related to the vertical leaf nitrogen gradient in Salix canopies. Tree Physiol 27:1551–1559

    Article  CAS  PubMed  Google Scholar 

  • Wood S, Cowie A (2004) A review of greenhouse gas emission factors of fertiliser production. IEA Bioenergy 38:1–20

    Google Scholar 

Download references

Acknowledgments

The authors wish to acknowledge the assistance of Charles Gaussier, Peter Gaskin, Frank Ryan, Ivan Mitchell, Anthony Heffernan, Danny Keogh and Aaron O Connor.

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Correspondence to John Finnan.

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Finnan, J., Burke, B. & Carroll, J. A short communication on the effect of nitrogen fertilization of willow on yield, combustion emissions and greenhouse gas balance. Nutr Cycl Agroecosyst 98, 107–112 (2014). https://doi.org/10.1007/s10705-013-9596-3

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  • DOI: https://doi.org/10.1007/s10705-013-9596-3

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