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Carbon dynamics in subtropical forest soil: effects of atmospheric carbon dioxide enrichment and nitrogen addition

机译:亚热带森林土壤中的碳动力学:大气二氧化碳富集和氮添加的影响

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Purpose The levels of atmospheric carbon dioxide concentration ([CO_2]) are rapidly increasing. Understanding carbon (C) dynamics in soil is important for assessing the soil C sequestration potential under elevated [CO_2]. Nitrogen (N) is often regarded as a limiting factor in the soil C sequestration under future CO_2 enrichment environment. However, few studies have been carried out to examine what would happen in the subtropical or tropical areas where the ambient N deposition is high. In this study, we used open-top chambers to study the effect of elevated atmospheric [CO_2] alone and together with N addition on the soil C dynamics in the first 4 years of the treatments applied in southern China.rnMaterials and methods Above- and below-ground C input (tree biomass) into soil, soil respiration, soil organic C, and total N as well as dissolved organic C (DOC) were measured periodically in each of the open-top chambers. Soil samples were collected randomly in each chamber from each of the soil layers (0-20, 20-40, and 40-60 cm) using a standard soil sampling tube (2.5-cmrninside diameter). Soil leachates were collected at the bottom of the chamber below-ground walls in stainless steel boxes.rnResults and discussion The highest above- and below-ground C input into soil was found in the high CO_2 and high N treatment (CN), followed by the only high N treatment (N+), the only high CO_2 treatment (C+), and then the control (CK) without any CO_2 enrichment or N addition. DOC in the leachates was small for all the treatments. Export of DOC played a minor role in C cycling in our experiment. Generally, soil respiration rate in the chambers followed the order: CN treatment>C+treatment> N+treatment>the control. Except for the C+ treatment, there were no significant differences in soil total N among the CN treatment, N + treatment, and the control. Overall, soil organic C (SOC) was significantly affected by the treatments (p<0.0001). SOC for all the soil layers in the treatments followed the order: CN treatment>N + treatment>C + treatment=CK treatment. Compared with the control, the higher SOC in the CN and N+ treatment was due to the greater above- and below-ground C input. The increased soil respiration in the C+ treatment led to the lower SOC. Conclusions Elevated atmospheric [CO_2] in the subtropical China accelerated soil C sequestration in this area; however, this increase would still need additional N input. The increased soil C pool was due to the enhanced tree growth. Special climatic condition in this area and the high density of tree planting might further accelerate soil C sequestration in this area.
机译:目的大气中二氧化碳浓度([CO_2])的水平正在迅速增加。了解土壤中碳(C)的动态对于评估在[CO_2]升高下土壤C的固存潜力很重要。在未来的CO_2富集环境下,氮(N)通常被视为限制土壤C固存的因素。但是,很少进行研究来研究在环境氮沉积较高的亚热带或热带地区发生的情况。在这项研究中,我们使用开放式腔室研究了在华南地区进行的前4年处理中,单独使用大气[CO_2]以及添加氮对土壤碳动态的影响。在每个开放式试验箱中定期测量地下碳向土壤的输入(树木生物量),土壤呼吸,土壤有机碳,总氮以及溶解有机碳(DOC)。使用标准土壤采样管(内径2.5厘米)从每个土壤层(0-20、20-40和40-60厘米)中的每个室中随机收集土壤样品。在不锈钢箱中地下室壁的底部收集土壤渗滤液。rn结果与讨论在高CO_2和高氮处理(CN)下,土壤中地下和地下的最高C输入量被发现,其次是唯一的高氮处理(N +),唯一的高CO_2处理(C +),然后是没有任何CO_2富集或氮添加的对照(CK)。对于所有处理,渗滤液中的DOC都很小。在我们的实验中,DOC的出口在C循环中的作用很小。通常,小室中的土壤呼吸速率遵循以下顺序:CN处理> C +处理> N +处理>对照。除C +处理外,CN处理,N +处理和对照之间的土壤总氮无显着差异。总体而言,土壤有机碳(SOC)受处理影响显着(p <0.0001)。处理中所有土壤层的SOC依次为:CN处理> N +处理> C +处理= CK处理。与对照组相比,CN和N +处理中较高的SOC是由于地面和地下C输入量较大。在C +处理中增加的土壤呼吸导致较低的SOC。结论中国亚热带大气[CO_2]升高,加速了该地区的土壤固碳。但是,这种增加仍然需要额外的N输入。土壤碳库增加是由于树木生长增强。该地区的特殊气候条件和高密度的植树造林可能会进一步加速该地区的土壤固碳。

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  • 来源
    《Journal of soil & sediments》 |2010年第4期|p.730-738|共9页
  • 作者单位

    South China Botanical Garden, Chinese Academy of Sciences, 723 Xingke Road, Guangzhou 510650, People's Republic of China;

    rnSouth China Botanical Garden, Chinese Academy of Sciences, 723 Xingke Road, Guangzhou 510650, People's Republic of China;

    rnSouth China Botanical Garden, Chinese Academy of Sciences, 723 Xingke Road, Guangzhou 510650, People's Republic of China;

    rnEnvironmental Futures Centre & School of Biomolecular and Physical Sciences, Griffith University, Nathan, Queensland 4111, Australia;

    rnSouth China Botanical Garden, Chinese Academy of Sciences, 723 Xingke Road, Guangzhou 510650, People's Republic of China;

    rnSouth China Botanical Garden, Chinese Academy of Sciences, 723 Xingke Road, Guangzhou 510650, People's Republic of China;

    rnSouth China Botanical Garden, Chinese Academy of Sciences, 723 Xingke Road, Guangzhou 510650, People's Republic of China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    carbon dioxide enrichment; nitrogen addition; soil organic C; soil respiration; subtropical forest soil; tree biomass;

    机译:二氧化碳浓缩氮添加土壤有机碳;土壤呼吸亚热带森林土壤树生物量;

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