Soil Genesis of Histosols and Gelisols with a Emphasis on Soil Processes Supporting Carbon Sequestration

M. Aide, Christine Aide, I. Braden
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引用次数: 1

Abstract

Based on the U.S. Soil Taxonomy Histosols are soils that have a histic epipedon, which is a surface horizon that exhibits a sufficient abundance of soil organic matter to be distinctively different than other soil orders predominantly composed of clastic materials. Gelisols are soils that have permafrost, with histels being a suborder that is dominated by organic materials. Collectively, these soil orders are abundant in peatland ecosystems. The abundance of soil organic material is primarily a consequence of climate, topography, hydrology, vegetation. Peatland ecosystems have been a major research arena; however, added research attention is being directed to the potential release of carbon because of accelerated climate change. This review focuses of the structure and dynamics of organic soils and an understanding of their creation, evolution and ultimate fate. Attention is focused on degraded peatland net primary productivity because of potential forthcoming differences attributed to rainfall, temperature, vegetation, hydrology and permafrost disappearance.
组织土和凝胶土的土壤成因:土壤过程对固碳的支持
根据美国土壤分类,组织层是具有历史表层的土壤,它是一种地表层,表现出足够丰富的土壤有机质,与主要由碎屑物质组成的其他土壤目明显不同。软土是一种具有永久冻土层的土壤,软土是一种以有机物质为主的亚目。总的来说,这些土壤阶在泥炭地生态系统中是丰富的。土壤有机质的丰富主要是气候、地形、水文和植被的结果。泥炭地生态系统一直是一个主要的研究领域;然而,由于气候变化的加速,更多的研究注意力正在转向潜在的碳释放。本文综述了有机土壤的结构和动力学,以及有机土壤的形成、演变和最终命运。由于由于降雨、温度、植被、水文和永久冻土的消失,泥炭地的净初级生产力可能即将出现差异,因此人们的注意力集中在退化的泥炭地上。
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