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首页> 外文期刊>Journal of Environmental & Analytical Toxicology >Influence of Different Soil Moisture Content on Plant Configuration for the Submerged Area of Shifosi Reservoir, China
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Influence of Different Soil Moisture Content on Plant Configuration for the Submerged Area of Shifosi Reservoir, China

机译:石佛寺水库淹没区土壤水分含量对植物形态的影响

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To propose a reasonable configuration of plant measures and specific planning to improve the soil quality and the surrounding ecological environment of submerged area in Shifosi reservoir, we analyzed the soil moisture content and other key physical properties such as bulk density, maximum water-holding capacity, capillary water-holding capacity, field capacity and porosity of the submerged area. Soil samples were collected within 500 m scope from the auxiliary dam and tested using test methods in compliance with the national standard LY/T1215-1999. The correlation analysis showed that a highly significant correlation existed between the moisture content with other physical properties. The capillary water-holding capacity had the highest correlation with the soil water content, followed by the maximum waterholding capacity, porosity, field capacity, and bulk density. As the changes in soil moisture content may affect the variation of other physical properties, the immersion area was divided into three regions according to their soil water contents. In region 1, the moisture content was between 23.08% and 32.96%; in region 2, the moisture content was between 21.18% and 23.08%; and in region 3, the moisture content was below 19.85%. In each region, the adaptive plant measures and configurations were put forward on the basis of natural, social and economic conditions, as well as vegetation status. In region 1, the selected tree was Salix matsudana, shrub was Forsythia mandshurica, and suitable herb was Iris lactea var. chinensis. In region 2, the proper tree was Fraxinus velutina, shrub was Amorpha fruticosa, and herb was Festuca arundinacea. In region 3, the suitable tree was Pinus tabulaeformis var. mukdensis, shrub was Lespedeza bicolor, and herb was Eleocharis yokoscensis. The rational allocation of vegetation may prevent soil erosion, contribute to the full use of the land of the submerged area, achieve optimization of social, economic, and ecological benefits, and provide a reference for plant configuration of other reservoirs in Liaoning Province, China.
机译:为了提出合理的植物措施配置和具体规划,以改善石佛寺水库淹没区的土壤质量和周围的生态环境,我们分析了土壤水分含量和其他关键物理特性,例如容重,最大持水量,淹没区域的毛细管持水量,田间持水量和孔隙率。在辅助坝的500 m范围内收集土壤样品,并使用符合国家标准LY / T1215-1999的测试方法进行测试。相关分析表明,水分含量与其他物理性质之间存在高度显着的相关性。毛细持水量与土壤含水量的相关性最高,其次是最大持水量,孔隙率,田间持水量和容重。由于土壤含水量的变化可能会影响其他物理性质的变化,因此将浸泡区根据其土壤含水量分为三个区域。在区域1中,水分含量在23.08%至32.96%之间。在区域2中,水分含量在21.18%和23.08%之间;在区域3中,水分含量低于19.85%。在每个区域,根据自然,社会和经济条件以及植被状况,提出了适应性植物措施和配置。在区域1中,选定的树是松柳(Salix matsudana),灌木是连翘(Forsythia mandshurica),合适的草是鸢尾(Iris lactea var)。中华在区域2中,合适的树是白蜡树,灌木是紫穗槐,而草药是金合欢。在区域3中,合适的树是油松。 mukdensis,灌木为双色的Lespedeza,草本为Eleocharis yokoscensis。合理分配植被可以防止水土流失,有助于淹没区土地的充分利用,实现社会,经济和生态效益的优化,并为辽宁省其他水库的植物配置提供参考。

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