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Changes in carbon pool and CO2 emission in the course of postagrogenic succession on gray soils (Luvic Phaeozems) in European Russia

机译:欧洲灰色土壤(Luvic Phaeozems)灰色土壤中碳库和二氧化碳排放的变化

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摘要

An analogous time series of fallow ecosystems (gray soils (Luvic Phaeozems) plowed and fallowed for 2, 7, 20, 60, and more than 120 years) in the broad-leaved forest zone of Orel oblast has been analyzed. Changes in carbon pool and CO2 emission in the course of postagrogenic succession during the vegetation and winter seasons have been estimated. The restoration of ecosystems on Luvic Phaeozems follows regularities revealed in analogous studies of southern taiga Podzols and forest-steppe Chernozems. Analogously to the other studied zonal chronosequences, total annual soil respiration on Luvic Phaeozems reaches the initial level of undisturbed ecosystems simultaneously with the restoration of phytomass reserve, although significantly earlier than the organic carbon reserve in soils is restored. According to regression models, among the zonal fallows in European Russia, including the southern taiga (Podzols), mixed forests (Luvisols), broadleaved forests (Luvic Phaeozems ), forest-steppe (Chernozems) and dry steppe (Calcisol-Solonetz soil complexes), the mean annual soil respiration is maximum in the zone of gray soils and Chernozems. The increase in soil respiration under artificial wetting (Birch effect) on fallows in the broad-leaved forest zone is minimum among the studied zonal chronosequences: 1.1 +/- 0.6 (no effect), which corresponds to the optimal hydrothermal conditions in this zone.
机译:分析了一系列类似的时间系列落叶生态系统(灰色土壤(Luvic Phaeozems)在奥尔州阔叶林区耕种和落下的2,7,20,60,60岁以上)。据估计,植被和冬季季节后继承过程中碳库和二氧化碳排放的变化。在Luvic Phaeozems上恢复生态系统遵循了南部Taiga Podzols和Forest Steppe Chernozems类似研究的规律。类似于另一种研究的Zonal慢性酮类,Luvic Phaeozems的全年土壤呼吸同时达到未受干扰的生态系统的初始水平,虽然恢复了比土壤中的有机碳储备的显着提前。据回归模型,在欧洲俄罗斯的区域休息中,包括南部的Taiga(潮治队),混合森林(Luvisols),阔叶林(Luvic Phaeozems),森林 - 草原(Chernozems)和干草原(Calcisol-solonetz土壤综合体) ,平均年呼吸在灰色土壤和切尔诺泽姆区的最大值。在阔叶林区休史中的人工润湿(桦木效应)下的土壤呼吸的增加是最小的,研究的Zonal慢性核素:1.1 +/- 0.6(无效应),其对应于该区域的最佳水热条件。

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