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Articles containing the keyword 'tree effects'

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article id 5561, category Article
Jari Liski. (1995). Variation in soil organic carbon and thickness of soil horizons within a boreal forest stand – effect of trees and implications for sampling. Silva Fennica vol. 29 no. 4 article id 5561. https://doi.org/10.14214/sf.a9212
Keywords: Pinus sylvestris; soil carbon; spatial variation; soil formation; soil morphology; tree effects; soil sampling; geostatics
Abstract | View details | Full text in PDF | Author Info

Spatial variation in the density of soil organic carbon (kg/m2) and the thickness of soil horizons (F/H, E) were investigated in a 6 m x 8 m area in Scots pine (Pinus sylvestris L.) stand in Southern Finland for designing an effective sampling for the C density and studying the effect of trees on the variation. The horizon thickness of the podzolized soil were measured on a total of 126 soil cores (50 cm deep) and the C density of the organic F/H and 0–10 cm, 10–20 cm and 20–40 cm mineral soil layers was analysed.

The C density varied 3–5 fold within the layers and the coefficients of variation ranged from 22 % to 40%. Considering the gain in confidence per sample, 8–10 samples were suggested for estimating the mean C density in the F/H and 0–40 cm layers, although about 30 samples are needed for 10% confidence in the mean. The C densities and horizon thicknesses were spatially dependent within the distances of 1–8 m, the spatial dependence accounting for 43–86% of the total variance. The F/H layer was thicker and contained more C within 1–3 m radius from trees. In the 10–20 cm and 20–40 cm layers (B horizon) the C density also increased towards the trees, but more pronouncedly in the immediate vicinity of the stems. Because the spatial patterning of the E horizon thickness was similar, the increase was attributed to stemflow and precipitation of organic compounds in the podzol B horizon.

  • Liski, E-mail: jl@mm.unknown (email)

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Nohrstedt H.-Ö., Börjesson G. (1998) Respiration in a forest soil 27 years after fert.. Silva Fennica vol. 32 no. 4 article id 679 (remove) | Edit comment
Ilvessalo L., (1929) Utilization of tree classification in thinnings Acta Forestalia Fennica vol. 34 no. 38 article id 7251 (remove) | Edit comment
Hakkarainen A. E., (1977) Metsäteollisuuden tutkimus- ja kehittämistoimint.. Silva Fennica vol. 11 no. 3 article id 4971 (remove) | Edit comment
Gordon J. G., Gatherum G. E. (1968) Photosynthesis and growth of selected Scots pine.. Silva Fennica vol. 2 no. 3 article id 4771 (remove) | Edit comment
Yli-Vakkuri P., Autio A. et al. (1968) Time lag between final cutting and regeneration Silva Fennica vol. 2 no. 3 article id 4769 (remove) | Edit comment
Lukkala O. J., (1939) Forest management of forests in drained peatland.. Silva Fennica vol. no. 52 article id 4567 (remove) | Edit comment
Aaltonen V. T., (1939) Root systems of trees and forest management Silva Fennica vol. no. 52 article id 4552 (remove) | Edit comment
Saastamoinen O., (1977) Economics of forest uses in Finnish Lapland. Silva Fennica vol. 11 no. 3 article id 4973 (remove) | Edit comment
Ståhl E. G., (1998) Changes in wood and stem properties of Pinus syl.. Silva Fennica vol. 32 no. 2 article id 693 (remove) | Edit comment
Seppälä K., (1968) Preliminary results of post-drainage development.. Silva Fennica vol. 2 no. 3 article id 4770 (remove) | Edit comment
Harstela P., (1978) Definition of the amount of strain caused by for.. Silva Fennica vol. 12 no. 1 article id 4985 (remove) | Edit comment