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Soil carbon management and climate change

机译:土壤碳管理与气候变化

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摘要

World soils, a large reservoir of reactive carbon, moderate the global carbon cycle, atmospheric chemistry, radioactive forcing and ecosystem services; as such, soil carbon sequestration is important in limiting global warming to 2℃. Among uncertainties are emissions from soils and permafrost, the CO_2 fertilization effect, silicate weathering, the fate of eroded carbon, the efficiency of natural sinks, the permanence of carbon sequestered in soil and measurements of changes in soil carbon over short periods. Adoption of proven technologies can sequester carbon at the rate of 500-1000 kg/ha/year in croplands, 50-500 kg/ha/year in grazing lands, 500-1000 kg/ha/year in forestlands and 5-10 kg/ha/year of pedogenic carbonates in arid lands. Soil carbon is stabilized though deep placement, interaction with clays and the formation of stable aggregates. Adoption of recommended practices can be promoted by payments for ecosystems services. Researchable priorities include understanding trends of principal drivers, quantifying feedbacks related to climate change and impacts on ecosystem services.
机译:世界土壤是反应性碳的大储量,缓和了全球碳循环,大气化学,放射性强迫和生态系统服务;因此,固碳对于将全球变暖限制在2℃是很重要的。不确定性包括土壤和多年冻土的排放,CO_2的施肥效应,硅酸盐的风化,侵蚀的碳的命运,天然汇的效率,固存在土壤中的碳的持久性以及短期内土壤碳变化的测量。采用行之有效的技术可以使农田中的碳固存速率为500-1000 kg / ha /年/年,牧场中的固碳速率为50-500 kg / ha /年/年,在森林地中固存碳的速率为500-1000 kg / ha /年和5-10 kg /干旱土地上成岩碳酸盐的公顷/年。通过深层放置,与粘土相互作用以及形成稳定的骨料,土壤碳得以稳定。可以通过为生态系统服务付费来促进采用推荐的做法。可研究的优先事项包括了解主要驱动因素的趋势,量化与气候变化有关的反馈以及对生态系统服务的影响。

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  • 来源
    《Carbon Management》 |2013年第4期|439-462|共24页
  • 作者

    Rattan Lai;

  • 作者单位

    Carbon Management and Sequestration Center, Ohio State University, Columbus, OH 43210, USA;

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  • 正文语种 eng
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