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首页> 外文期刊>Eurasian Soil Science >Assessment of Soil Water Composition in the Northern Taiga Coniferous Forests of Background Territories in the Industrially Developed Region
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Assessment of Soil Water Composition in the Northern Taiga Coniferous Forests of Background Territories in the Industrially Developed Region

机译:在工业发达地区北极纳北极星针叶林土壤水分组成的评价

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摘要

The composition of soil water under coniferous forests of Murmansk oblast-an industrially developed region of northern Russia-was investigated. The studied objects were dwarf-shrub-green-moss spruce forests and dwarf-shrub-lichen pine forests on Al-Fe-humus podzols (Albic Rustic Podzols) that are widespread in the boreal zone. The concentrations and removal of organic carbon performing the most important biogeochemical and pedogenic functions were estimated. The results proved significant intra- and inter-biogeocenotic variability in the composition of atmospheric depositions and soil water. Carbon removal with soil water from organic and mineral horizons within elementary biogeoareas (EBGA) under tree crowns was 2-5 and 2-3 times (in some cases, up to 10 times) greater than that in the intercrown areas, respectively. The lowest critical level of mineral nitrogen (0.2 mg/L) was, as a rule, exceeded in tree EBGAs contrary to intercrown areas. Concentrations of sulfates and heavy metals in water of tree EBGA were 3-5 times greater than those in inter-crown areas. Significant inter-biogeocenotic variations related to differences in the height of trees and tree stand density were found. It is argued that adequate characterization of biochemical cycles and assessment of critical levels of components in soil water of forest ecosystems should be performed with due account for the intra- and inter-biogeocenotic variability.
机译:摩尔曼斯克州针叶林下土壤水域的组成 - 俄罗斯北部北部的工业发达地区。学习的物体是侏儒 - 灌木 - 青苔云云云云杉森林和矮人灌木植物的松树林(Al-Fe-Humus Podzols(Albic仿古潮汐),在北方地区普遍存在。估计了表演最重要的生物地理化学和基础函数的有机碳的浓度和除去。结果证明了大气沉积和土壤水组合物中的具有显着的生物凝固性变异性。在树冠下的基础生物糖浆(EBGA)中的有机和矿物水域中的土壤水分从有机和矿物视野中除去,分别比接口区域中的2-5和2-3次(在某些情况下,最多10倍)。通常,矿物氮(0.2mg / L)的最低临界水平超过与接收区域相反的树EBGAS。硫酸盐浓度和树木水中重金属的浓度比冠间区域的水中的3-5倍。发现了与树木和树立密度高度差异有关的重要生物渗透性变化。有人认为,应当由于生物渗透性和生态地诊断可变性,应当进行森林生态系统土壤水域水中临界水平的大量表征生物化学循环和评估临界水平。

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