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Dynamics of carbon, nitrogen, phosphorus and sulfur in a boreal aspen forest soil.

机译:北方白杨林土壤中碳,氮,磷和硫的动态

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摘要

The objective of this research was to document the forms, amounts and cycling patterns of carbon (C), nitrogen (N), phosphorus (P) and sulfur (S) in soil profiles under trembling aspen (Populus tremuloides Michx.) stands located in Prince Albert National Park, Saskatchewan, Canada. Nutrient cycling was assessed by examining the forms, amounts and distribution of nutrients in components of soil and plant litter and changes in supply rates of nutrients seasonally over a two year period. A novel technique, involving in situ burial of ion exchange resin membranes (IEM) was used in the study to follow changes in supply rates of nutrient in the field and laboratory. The technique was also developed to assess differences in soil N, P and K supply rates in situ over small depth increments in the forest floor horizons (ie. the L, F and H horizons).; The total mass of organic C stored in the forest floor and mineral soil to a depth of 1-m ranged from 95.4 to 103.4 Mg ha{dollar}sp{lcub}-1{rcub},{dollar} with a mean of 99.2 Mg ha{dollar}sp{lcub}-1{rcub}.{dollar} Organic C and N in the forest floor accounted for the greatest proportion of the total storage (47.3% of C and 34.2% of N), followed by the B horizon (22.4% of C and 32.7% of N), the A horizon (17.3% of C and 18.3% of N) and the C horizon (13.0% of C and 14.8% of N). Unlike C and N, more than 96% of the total P was found in the mineral soil and only 3.5% in the forest floor. Much of the P stored in the mineral horizons is contained in non-labile primary mineral forms. The greatest proportion (36.5%) of organic S was found in the C horizon, with 26.6% in the forest floor.; Water-soluble organic C (WSOC) was determined monthly from May to October 1994 in the forest floor and Ae horizons. The distribution of WSOC within the soil profiles was related to the distribution of organic C. The concentration of WSOC varied significantly with profile depth, but varied little among the slope positions and aspects. The L horizon had the highest WSOC concentration (425-8690 mg kg{dollar}sp{lcub}-1{rcub}{dollar} oven dry soil), followed by the F, H and the Ae horizon.; The seasonal and spatial patterns in nutrient supply rate showed that the supply of readily available N, P and S in forest soils, especially in the forest floor, varied greatly over the season and by horizon. (Abstract shortened by UMI.)
机译:这项研究的目的是记录位于山杨发抖的杨树(Populus tremuloides Michx。)站立的土壤剖面中碳(C),氮(N),磷(P)和硫(S)的形式,数量和循环模式。加拿大萨斯喀彻温省阿尔伯特亲王国家公园。通过检查土壤和植物凋落物中养分的形式,数量和分布以及两年中季节性养分供应率的变化来评估养分循环。在研究中使用了一种涉及原位掩埋离子交换树脂膜(IEM)的新技术,以跟踪田间和实验室中营养物的供应速率变化。还开发了该技术,以评估森林地层地平线(即L,F和H地平线)中较小深度增量时土壤N,P和K的土壤供应速率的差异。存储在林地和矿质土壤中深度为1-m的有机碳的总质量为95.4至103.4 Mg ha {dollar} sp {lcub} -1 {rcub},{dollar},平均为99.2 Mg ha {dollar} sp {lcub} -1 {rcub}。{dollar}林地中的有机碳和氮占总存储量的最大比例(碳的47.3%和氮的34.2%),其次是硼地平线(C的22.4%和N的32.7%),A地平线(C的17.3%和N的18.3%)和C地平线(C的13.0%和N的14.8%)。与碳和氮不同,矿物土壤中的磷含量超过96%,而林地中磷的含量仅为3.5%。储存在矿物层中的许多磷都以不稳定的一次矿物形式存在。 C层中有机S的比例最大(36.5%),而林地中的比例为26.6%。 1994年5月至10月,每月在森林地面和Ae地平线上测定水溶性有机碳(WSOC)。土壤剖面中WSOC的分布与有机碳的分布有关。WSOC的浓度随剖面深度的变化而显着变化,但在斜坡位置和坡向之间变化不大。 L地平线的最高WSOC浓度(425-8690 mg kg {sp} {lcub} -1 {rcub} {dol}的烤箱干燥土壤),其次是F,H和Ae地平线。养分供应率的季节和空间格局表明,森林土壤中,尤其是林地中的速效氮,磷和硫的供应量随季节和水平变化很大。 (摘要由UMI缩短。)

著录项

  • 作者

    Huang, Wei Ze.;

  • 作者单位

    The University of Saskatchewan (Canada).;

  • 授予单位 The University of Saskatchewan (Canada).;
  • 学科 Agriculture Forestry and Wildlife.; Biogeochemistry.; Agriculture Soil Science.
  • 学位 Ph.D.
  • 年度 1996
  • 页码 188 p.
  • 总页数 188
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 森林生物学;生物地球化学、气体地球化学;土壤学;
  • 关键词

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