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Review of denitrification in tropical and subtropical soils of terrestrial ecosystems

机译:陆地生态系统热带和亚热带土壤中的反硝化研究综述

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摘要

Purpose Denitrification has been extensively studied in soils from temperate zones in industrialized countries. However, few studies quantifying denitrification rates in soils from tropical and subtropical zones have been reported. Denitrification mechanisms in tropical/subtropical soils may be different from other soils due to their unique soil characteristics. The identification of denitrification in the area is crucial to understand the role of denitrification in the global nitrogen (N) cycle in terrestrial ecosystems and in the interaction between global environmental changes and ecosystem responses. Materials and methods We review the existing literature on microbially mediated denitrification in tropical/subtropical soils, attempting to provide a better understanding about and new research directions for denitrification in these regions. Results and discussion Tropical and subtropical soils might be characterized by generally lower denitrification capacity than temperate soils, with greater variability due to land use and management practices varying temporally and spatially. Factors that influence soil water content and the nature and rate of carbon (C) and N turnover are the landscape-scale and field-scale controls of denitrification. High redox potential in the field, which is mainly attributed to soil oxide enrichment, may be at least one critical edaphic variable responsible for slow denitrification rates in the humid tropical and subtropical soils. However, soil pH is not responsible for these slow denitrification rates. Organic C mineralization is more important than total N content and C/N in determining denitrification capacity in humid subtropical soils. There is increasing evidence that the ecological consequence of denitrification in tropical and subtropical soils may be different from that of temperate zones. Contribution of denitrification in tropical and subtropical regions to the global climate warming should be considered comprehensively since it could affect other greenhouse gases, such as methane (CH_4) and carbon dioxide (CO_2), and N deposition. Conclusions Tropical/subtropical soils have developed several N conservation strategies to prevent N losses via denitrification from the ecosystems. However, the mechanisms involved in the biogeochemical regulation of tropical and subtropical ecosystem responses to environmental changes are largely unknown. These works are important for accurately modeling denitrification and all other simultaneously operating N transformations.
机译:目的在工业化国家温带地区的土壤中,反硝化作用已得到广泛研究。然而,鲜有关于量化热带和亚热带地区土壤反硝化率的研究。热带/亚热带土壤的反硝化机理可能因其独特的土壤特性而不同于其他土壤。识别该地区的反硝化作用对于了解反硝化在陆地生态系统中全球氮循环以及全球环境变化与生态系统响应之间的相互作用中的作用至关重要。材料和方法我们回顾了有关热带/亚热带土壤中微生物介导的反硝化作用的现有文献,试图为这些地区的反硝化作用提供更好的理解和新的研究方向。结果与讨论热带和亚热带土壤的反硝化能力通常比温带土壤低,由于土地利用和管理实践随时间和空间的变化而具有更大的可变性。影响土壤含水量以及碳(C)和氮周转的性质和速率的因素是脱氮的景观尺度和田间尺度控制。田间的高氧化还原电势主要归因于土壤氧化物的富集,可能是导致湿润热带和亚热带土壤中反硝化速率缓慢的至少一个关键的深度变量。但是,土壤pH值不是造成这些缓慢的反硝化速率的原因。在确定亚热带湿润土壤中的反硝化能力时,有机碳矿化作用比总氮含量和碳氮比重要。越来越多的证据表明,热带和亚热带土壤中反硝化的生态后果可能与温带地区不同。应该综合考虑热带和亚热带地区反硝化对全球气候变暖的贡献,因为它可能影响其他温室气体,例如甲烷(CH_4)和二氧化碳(CO_2)以及氮的沉积。结论热带/亚热带土壤已经制定了几种氮素保护策略,以防止由于生态系统中的反硝化而造成氮素损失。然而,很大程度上未知热带和亚热带生态系统对环境变化的反应的生物地球化学调控机制。这些工作对于准确模拟反硝化和所有其他同时进行的N转换非常重要。

著录项

  • 来源
    《Journal of soil & sediments》 |2013年第4期|699-710|共12页
  • 作者单位

    College of Tobacco Science, Yunnan Agricultural University, Kunming 650201, People's Republic of China Environmental Futures Centre and School of Biomolecular and Physical Sciences, Griffith University, Nathan, QLD 4111, Australia;

    Environmental Futures Centre and School of Biomolecular and Physical Sciences, Griffith University, Nathan, QLD 4111, Australia;

    School of Geography Science, Nanjing Normal University, Nanjing 210046, People's Republic of China;

    Environmental Futures Centre and School of Biomolecular and Physical Sciences, Griffith University, Nathan, QLD 4111, Australia;

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

    denitrification; environmental implication; nitrate leaching; nitrogen retention strategies; nitrous oxide;

    机译:反硝化环境影响;硝酸盐浸出氮保留策略;笑气;

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