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首页> 外文期刊>Applied and environmental soil science >Impact of Soil Compaction on Bulk Density and Root Biomass of Quercus petraea L. at Reclaimed Post-Lignite Mining Site in Lusatia, Germany
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Impact of Soil Compaction on Bulk Density and Root Biomass of Quercus petraea L. at Reclaimed Post-Lignite Mining Site in Lusatia, Germany

机译:土壤压实对德国卢萨特(Lusatia)开垦后褐煤开采场的栎(Quercus petraea L.)的密度和根系生物量的影响

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摘要

The impact of soil compaction on bulk density and root biomass of Quercus petraea L. was assessed after 85 years of reclamation of post-lignite mining soil at Welzow-South, in Lusatia, Germany. Bulk density of core soils sampled from 20 to 25 cm, 100 to 105 cm, and 200 to 205 cm depths and oven-dried biomass of Q. petraea roots sampled from 0 to 30 cm and at successive depths of 20 cm, up to 210 cm depth at compacted and uncompacted sites were determined. Bulk density was significantly higher at 20 to 25 cm (1.74 ± 0.09 g cm~(-3)) and 100 to 105 cm (1.65 ± 0.06 g cm~(-3)) depths of the compacted site. Likewise, compaction induced significant greater root biomass within the 0 to 70 cm depth with higher bulk density; root biomass at this depth was 2-fold greater compared to the uncompacted site. Root biomass decreased with soil depth and showed significant relationship with depth at both sites. The result indicates that, after 85 years of reclamation, the impact of soil compaction persisted as evident in higher bulk density and greater root biomass.
机译:在德国Lusatia的Welzow-South的褐煤开采后的土壤开垦85年之后,评估了土壤压实对栎属植物的容重和根系生物量的影响。在20至25 cm,100至105 cm和200至205 cm深度处取样的核心土壤的松密度和在0至30 cm处以及连续深度20 cm处取样的石蒜根的烘干生物质,最高可达210确定在压实和未压实部位的cm 3深度。堆积密度在压实部位的20至25 cm(1.74±0.09 g cm〜(-3))和100至105 cm(1.65±0.06 g cm〜(-3))深度时明显更高。同样,压实会在0至70 cm深度内以更高的堆积密度显着增加根系生物量。与未压缩的位点相比,该深度的根生物量大2倍。根系生物量随土壤深度的增加而减少,并且在两个地点都与深度有显着关系。结果表明,开垦85年后,土壤压实的影响持续存在,表现为更高的堆积密度和更大的根系生物量。

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  • 来源
    《Applied and environmental soil science》 |2015年第2015期|504603.1-504603.5|共5页
  • 作者单位

    Department of Environment and Development Studies, Central University College, Accra, Ghana,Institute of Green Growth Solutions, Box OS 3101, Osu, Accra, Ghana;

    Institute of Green Growth Solutions, Box OS 3101, Osu, Accra, Ghana,Soil Protection and Recultivation, Faculty of Environmental Science and Process Engineering, Brandenburg University of Technology Cottbus-Senftenberg, Konrad-Wachsmann-Allee 4, 03046 Cottbus, Germany,Department of Soil Science, School of Agriculture, College of Basic and Applied Sciences, University of Ghana, Legon, Ghana;

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