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首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Soil factors determining the fine-root biomass in soil regeneration after a post-fire and soil reconstruction in reclaimed post-mining sites under different tree species
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Soil factors determining the fine-root biomass in soil regeneration after a post-fire and soil reconstruction in reclaimed post-mining sites under different tree species

机译:不同树种物种后开采后火灾后土壤再生后土壤再生中的细根生物量的土壤因素

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摘要

For this study, we analyzed the increase in fine root biomass under pine, birch, and larch (Pinus sylvestris, Betula pendula, and Larix decidua, respectively) plantings growing in regenerated (postfire sites) and reconstructed (reclaimed mine soils) forest ecosystems. The control sites were located in natural habitats on podzolic soils in managed forests of the Olkusz Forest District, Poland. The objective of the manuscript included determination of the chemical properties of soils that influence the biomass of fine roots of different tree species under the conditions of regenerated and reconstructed forest ecosystems. We found that there was no difference in the biomass of the fine roots of the studied species in the reconstructed forest system. The afforestation of forest ecosystems with birch may be particularly beneficial to environment because of its higher fine root biomass. Additionally, the fine root biomass increased with pH. Factors reducing the growth of fine root biomass were the availability of magnesium and the total soil carbon content. These results confirm the vulnerability of fine roots to site conditions and highlight the utility of fine root biomass evaluation when studying the dynamics and regeneration of soils.
机译:在这项研究中,我们分析了在再生(火灾后现场)和重建(复垦矿区土壤)森林生态系统中生长的松树、桦树和落叶松(分别为樟子松、桦树和落叶松)幼苗下细根生物量的增加。控制点位于波兰奥尔库兹林区管理森林中灰化土壤的自然栖息地。手稿的目的包括在再生和重建森林生态系统的条件下,测定影响不同树种细根生物量的土壤化学性质。我们发现,在重建的森林系统中,研究物种细根的生物量没有差异。用桦树造林的森林生态系统,由于其细根生物量较高,可能对环境特别有利。此外,细根生物量随着pH值的增加而增加。降低细根生物量增长的因素是镁的有效性和土壤总碳含量。这些结果证实了细根对场地条件的脆弱性,并强调了细根生物量评估在研究土壤动态和再生时的实用性。

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