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Evaluation of the rates of soil organic matter mineralization in forest ecosystems of temperate continental, mediterranean, and tropical monsoon climates

机译:对温带大陆性,地中海性和热带季风气候的森林生态系统中土壤有机质矿化速率的评估

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The processes of the organic matter (OM) mineralization in forest soils developed under temperate continental (Moscow oblast, Russia), Mediterranean (the central and western parts of Spain), and tropical monsoon (southern Vietnam) climates were studied under laboratory conditions. The potential and specific rates of the OM mineralization (PR (min) and PR (min)/C(org), respectively), the ecophysiological parameters of the microbial communities status (C(mic), qCO(2), and C(mic)/C(org)), and the sensitivity of the rate of the OM mineralization to the rise in temperature were evaluated by the temperature coefficients (Q (10)) determined in the humus horizons (0-10 cm, without forest litter). The average values of PR (min) for the climatic zones decreased in the following order: Mediterranean (57.1 +/- 10.6 mg C/kg per day) > temperate continental (23.8 +/- 7.1 mg C/kg per day) > tropical monsoon (10.4 +/- 1.6 mg C/kg per day). The lowest resistance of the soil OM to mineralization as evaluated by the PR (min)/C(org) values was found in the Albeluvisol and Phaeozem of the temperate continental climate and in the Acrisol of the Mediterranean climate. The highest Q (10) coefficients were attributed to the OM mineralization in the forest soils of the temperate continental climate. This allowed us to conclude that the observed and expected climate changes with an increase in the mean annual air temperature should lead to the maximum intensification of the OM mineralization processes in the forest soils of northern regions.
机译:在实验室条件下研究了在温带大陆性(莫斯科州,俄罗斯),地中海性(西班牙中西部)和热带季风(越南南部)气候下森林土壤中有机质(OM)矿化的过程。 OM矿化的潜在速率和比速率(分别为PR(min)和PR(min)/ C(org)),微生物群落状态的生态生理参数(C(mic),qCO(2)和C( mic)/ C(org)),并通过腐殖质层位(0-10 cm,无森林凋落物)中确定的温度系数(Q(10))来评估OM矿化速率对温度升高的敏感性)。气候区的PR(min)平均值按以下顺序降低:地中海(57.1 +/- 10.6 mg C / kg每天)>温带大陆性(23.8 +/- 7.1 mg C / kg每天)>热带季风(每天10.4 +/- 1.6 mg C / kg)。通过PR(min)/ C(org)值评估,土壤OM对矿化的最低抵抗力是在温带大陆性气候的Albeluvisol和Phaeozem和地中海性气候的Acrisol中发现的。 Q(10)系数最高归因于温带大陆性气候的森林土壤中的OM矿化作用。这使我们得出结论,随着年平均气温的升高,观测到的和预期的气候变化将导致北部地区森林土壤中OM矿化过程的最大集约化。

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