Non-destructive estimation of sapwood and heartwood width in Scots pine (Pinus sylvestris L.)

Accurate estimates of the water conducting sapwood area are necessary to scale sapflow measurements to tree and stand level transpiration. We tested a non-destructive method, electric resistivity tomography (ERT), to estimate the area of conductive sapwood in 9 Pinus sylvestris L. tre...

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Main Authors: Bieker, Dirk, Rust, Steffen
Format: Article
Language:English
Published: Finnish Society of Forest Science 2010-01-01
Series:Silva Fennica
Online Access:https://www.silvafennica.fi/article/153
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spelling doaj-438536c080ba4bdab5dcd69818b0dbef2020-11-25T02:32:38ZengFinnish Society of Forest ScienceSilva Fennica2242-40752010-01-0144210.14214/sf.153Non-destructive estimation of sapwood and heartwood width in Scots pine (Pinus sylvestris L.)Bieker, DirkRust, Steffen Accurate estimates of the water conducting sapwood area are necessary to scale sapflow measurements to tree and stand level transpiration. We tested a non-destructive method, electric resistivity tomography (ERT), to estimate the area of conductive sapwood in 9 Pinus sylvestris L. trees in lower Saxony, Germany. Tomograms were compared to cross-sections stained with benzidine after harvesting. All tomograms displayed a distinct pattern of low resistivity at the stem perimeter and high resistivity in the stem centre with a steep increase in resistivity in between, assumed to indicate the transition from sapwood to heartwood. The tomograms showed a sapwood width 2 cm smaller than the staining method. This indicates that staining methods overestimate the amount of active sapwood because when heartwood is formed, moisture content decreases before extractive contents reach levels visible by staining. The ERT method is a new powerful method for the non-destructive estimation of sapwood and heartwood width.https://www.silvafennica.fi/article/153
collection DOAJ
language English
format Article
sources DOAJ
author Bieker, Dirk
Rust, Steffen
spellingShingle Bieker, Dirk
Rust, Steffen
Non-destructive estimation of sapwood and heartwood width in Scots pine (Pinus sylvestris L.)
Silva Fennica
author_facet Bieker, Dirk
Rust, Steffen
author_sort Bieker, Dirk
title Non-destructive estimation of sapwood and heartwood width in Scots pine (Pinus sylvestris L.)
title_short Non-destructive estimation of sapwood and heartwood width in Scots pine (Pinus sylvestris L.)
title_full Non-destructive estimation of sapwood and heartwood width in Scots pine (Pinus sylvestris L.)
title_fullStr Non-destructive estimation of sapwood and heartwood width in Scots pine (Pinus sylvestris L.)
title_full_unstemmed Non-destructive estimation of sapwood and heartwood width in Scots pine (Pinus sylvestris L.)
title_sort non-destructive estimation of sapwood and heartwood width in scots pine (pinus sylvestris l.)
publisher Finnish Society of Forest Science
series Silva Fennica
issn 2242-4075
publishDate 2010-01-01
description Accurate estimates of the water conducting sapwood area are necessary to scale sapflow measurements to tree and stand level transpiration. We tested a non-destructive method, electric resistivity tomography (ERT), to estimate the area of conductive sapwood in 9 Pinus sylvestris L. trees in lower Saxony, Germany. Tomograms were compared to cross-sections stained with benzidine after harvesting. All tomograms displayed a distinct pattern of low resistivity at the stem perimeter and high resistivity in the stem centre with a steep increase in resistivity in between, assumed to indicate the transition from sapwood to heartwood. The tomograms showed a sapwood width 2 cm smaller than the staining method. This indicates that staining methods overestimate the amount of active sapwood because when heartwood is formed, moisture content decreases before extractive contents reach levels visible by staining. The ERT method is a new powerful method for the non-destructive estimation of sapwood and heartwood width.
url https://www.silvafennica.fi/article/153
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