Full text of this article is only available in PDF format.

Veiko Uri (email), Hardi Tullus, Krista Lõhmus

Nutrient allocation, accumulation and above-ground biomass in grey alder and hybrid alder plantations

Uri V., Tullus H., Lõhmus K. (2003). Nutrient allocation, accumulation and above-ground biomass in grey alder and hybrid alder plantations. Silva Fennica vol. 37 no. 3 article id 490. https://doi.org/10.14214/sf.490

Abstract

The aim of the present work was to investigate the nutrient (N,P,K) allocation and accumulation in grey alder (Alnus incana (L.) Moench) and hybrid alder (Alnus incana (L.) Moench x Alnus glutinosa (L.) Gaertn.) plantations growing on former agricultural land and to estimate the above-ground biomass production during 4 years after establishment. In August of the 4th year, when leaf mass was at its maximum, the amount of nitrogen accumulated in above-ground biomass of grey alder stand was 142.0 kg ha–1, the amount of phosphorus 16.3 kg ha–1 and the amount of potassium 49.5 kg ha–1. The amount of nitrogen accumulated in a hybrid alder stand totalled 76.8 kg ha–1, that of phosphorus 6.2 kg ha–1 and that of potassium 28.2 kg ha–1. The smaller amounts of N,P and K bound in the hybrid alder plantation are related to the smaller biomass of the stand. Still, the amounts of N,P and K consumed for the production of one ton of biomass were similar in the case of up to 4-year-old grey alder and hybrid alder stands. In the 4th year, the amount of nutrients consumed in one ton of biomass produced were: 16.0 kg N, 1.6 kg P and 5.4 kg K for grey alder and 14.6 kg N, 1.1 kg P and 5.2 kg K for hybrid alder. In the 4th year the total above-ground biomass (dry mass) of grey alder (15750 plants ha–1) amounted to 12.3 t ha–1, current annual increment being 6.7 t ha–1. In hybrid alder stands (6700 plants ha–1), the respective figures were 6.1 t ha–1 and 4.5 t ha–1. Comparison of the production capacity on the basis of mean stem mass in the 4th year revealed that the stem mass of grey alder exceeded that of hybrid alder (0.64 kg and 0.58 kg, respectively). Grey alder outpaced hybrid alder in height growth; in the 4th year after establishment, the mean height of the grey alder stand was 4.6 ± 0.9 m and that of the hybrid alder plantation 3.5 ± 0.9 m.

Keywords
biomass; Alnus incana; Alnus incana x Alnus glutinosa; grey alder; hybrid alder; nutrient allocation; nutrient accumulation

Author Info
  • Uri, Institute of Silviculture, Estonian Agricultural University, Kreutzwaldi 5, 51014 Tartu, Estonia E-mail vuri@eau.ee (email)
  • Tullus, Institute of Silviculture, Estonian Agricultural University, Kreutzwaldi 5, 51014 Tartu, Estonia E-mail ht@nn.ee
  • Lõhmus, Institute of Geography, University of Tartu, Vanemuise 46, 51014 Tartu, Estonia E-mail kl@nn.ee

Received 21 November 2000 Accepted 24 March 2003 Published 31 December 2003

Views 10039

Available at https://doi.org/10.14214/sf.490 | Download PDF

Creative Commons License CC BY-SA 4.0

Register
Click this link to register to Silva Fennica.
Log in
If you are a registered user, log in to save your selected articles for later access.
Contents alert
Sign up to receive alerts of new content

Your selected articles
Send to email
Siitonen J., Hottola J. et al. (2009) Differences in stand characteristics between bro.. Silva Fennica vol. 43 no. 1 article id 216 (remove) | Edit comment
Jadwiszczak K. A., Drzymulska D. et al. (2012) Population history, genetic variation and conser.. Silva Fennica vol. 46 no. 4 article id 905 (remove) | Edit comment
Heikkilä T., (1932) A mirror dendrometer and the determination of th.. Acta Forestalia Fennica vol. 38 no. 3 article id 7269 (remove) | Edit comment
Zhang G., Zeng G.-m. et al. (2006) Seasonal dry deposition and canopy leaching of b.. Silva Fennica vol. 40 no. 3 article id 327 (remove) | Edit comment
Kärki T., (1999) Predicting the value of grey alder (Alnus incana.. Silva Fennica vol. 33 no. 1 article id 667 (remove) | Edit comment
Mikola P., Laiho O. et al. (1964) The effect of slash burning on the commencement .. Acta Forestalia Fennica vol. 77 no. 3 article id 7151 (remove) | Edit comment
Kitahara F., Mizoue N. et al. (2010) Effects of training for inexperienced surveyors .. Silva Fennica vol. 44 no. 4 article id 133 (remove) | Edit comment
Cowan I., (2002) Fit, fitter, fittest; where does optimisation fi.. Silva Fennica vol. 36 no. 3 article id 536 (remove) | Edit comment
Gronalt M., Rauch P. (2008) Vendor managed inventory in wood processing indu.. Silva Fennica vol. 42 no. 1 article id 267 (remove) | Edit comment
Laamanen R., Kangas A. (2011) Large-scale forest owner’s information needs in .. Silva Fennica vol. 45 no. 4 article id 101 (remove) | Edit comment
Kanzian C., Holzleitner F. et al. (2009) Regional energy wood logistics – optimizing loca.. Silva Fennica vol. 43 no. 1 article id 464 (remove) | Edit comment
Nuutinen T., Kellomäki S. (2001) A comparison of three modelling approaches for l.. Silva Fennica vol. 35 no. 3 article id 586 (remove) | Edit comment
Kangas E., (1942) Effect of seed extracting temperature on extract.. Acta Forestalia Fennica vol. 50 no. 14 article id 7367 (remove) | Edit comment
Sah S. P., Dutta I. C. et al. (1998) Nursery and field response of sissoo plants (Dal.. Silva Fennica vol. 32 no. 3 article id 685 (remove) | Edit comment
Pykäläinen J., (2000) Defining forest owner’s forest-management goals .. Silva Fennica vol. 34 no. 1 article id 644 (remove) | Edit comment
Uri V., Tullus H. et al. (2003) Nutrient allocation, accumulation and above-grou.. Silva Fennica vol. 37 no. 3 article id 490 (remove) | Edit comment
Your search results