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  5. Impact on Soil Physical Properties Related to a High Mechanization Level in the Row Thinning of a Korean Pine Stand

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Article
English
2022

Impact on Soil Physical Properties Related to a High Mechanization Level in the Row Thinning of a Korean Pine Stand

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English
2022
Land
Vol 11 (3)
DOI: 10.3390/land11030329

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Eunjai Lee
Eunjai Lee

Institution not specified

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Kigwang Baek
Eunjai Lee
Hyung–Tae Choi
+3 more

Abstract

In ground-based harvesting, machine traffic can cause soil physical disturbances including excessive compaction, the displacement of the soil surface and topsoil, and rutting. These impacts can indirectly hamper seedling survival and tree growth because of reduced soil permeability and root growth. However, the extent of soil disturbance in mechanized row thinning by harvester and forwarder systems in South Korea is unclear. Therefore, our objectives were to determine the impacts of two types of harvesters, soil textures, and extraction methods on soil compaction and rutting in a Korean Pine stand. The results showed that the machine passes affected soil disturbances. The soil bulk density inside the tracks (at 0–10 and 10–20 cm soil depths) after harvester passes (wheeled vs. tracked) increased by 17 and 27% and 30 and 20%, respectively. The largest impact was recorded for the forwarding track and significant differences were observed between the track and reference locations. Furthermore, the rutting depth in the forwarding trails was significantly higher than in the harvester trails. Thus, the application of a brush mat on harvester and forwarder trails may reduce machine-induced soil compaction. These results provide useful information to help forest engineers and field managers design environmentally sound ground-based harvesting operations.

How to cite this publication

Kigwang Baek, Eunjai Lee, Hyung–Tae Choi, Min-Jae Cho, Yunsung Choi, Sang-Kyun Han (2022). Impact on Soil Physical Properties Related to a High Mechanization Level in the Row Thinning of a Korean Pine Stand. Land, 11(3), pp. 329-329, DOI: 10.3390/land11030329.

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Publication Details

Type

Article

Year

2022

Authors

6

Datasets

0

Total Files

0

Language

English

Journal

Land

DOI

10.3390/land11030329

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