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Differentiating biological and chemical factors of top and deep soil carbon sequestration in semi-arid tropical Inceptisol: an outcome of structural equation modeling

机译:半干旱热带升中的顶层和深层土壤碳封存的生物学和化学因素 - 结构方程模型的结果

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摘要

Though soils sequester large amounts of carbon (C), variations in physical and chemical characteristics of top and deep layers necessitate the study of factors governing topsoil and deep soil C sequestration to predict land-use changes to alleviate climate change. Land-use systems involving pasture, trees, trees pasture and fallow were considered. The upper soil (0-15 cm) had similar to 12, 34 and 59% higher microbial biomass C than the 15-30, 30-45 and 45-60 cm layers, respectively. Fluorescein diacetate (FDA) and dehydrogenase activities had similar trends. Across the land uses, topsoil layers had similar to 17% lower silt + clay (s + c) content than deep layers. Amorphous iron content significantly increased with soil depth. In the top two soil layers, s + c accounted for similar to 19-30% of total soil organic carbon (SOC); in the next two layers s + c could store 30% of total SOC. Stepwise regression analysis revealed FDA to be the most significant biological driver for SOC sequestration. Structural equation modeling showed that biological factors controlled C sequestration in topsoil layers, while s + c and amorphous iron were the major factors of C sequestration in deep layers. Current land uses are largely deficient of SOC and have the potential to store an additional22 Mg CO(2)e per ha.
机译:虽然土壤隔离大量碳(C),但顶层和深层的物理和化学特性的变化需要研究控制表层中的含量和深层土壤的因素,以预测降低土地利用变化以减轻气候变化。考虑了涉及牧场,树木,树木牧场和休耕的土地使用系统。上部土壤(0-15cm)分别与15-30,30-45和45-60cm层相似的12,34和59%更高的微生物生物量C.荧光素二乙酸酯(FDA)和脱氢酶活动具有相似的趋势。在土地用途中,表土层与深层淤泥+粘土(S + C)含量相似。无定形铁含量明显增加,土壤深度显着增加。在前两层土层中,S + C占土壤总有机碳(SoC)的19-30%;在接下来的两层S + C中可以存储> 30%的SOC。逐步回归分析显示FDA是SoC封存最重要的生物驱动因素。结构方程模型表明,生物因素控制在甲醛层中的C螯合,而S + C和无定形铁是深层C螯合的主要因素。目前的土地使用主要缺乏SoC,并且有可能每公顷存放22mg CO(2)e。

著录项

  • 来源
    《Carbon Management》 |2020年第5期|441-453|共13页
  • 作者单位

    ICAR Indian Grassland & Fodder Res Inst Grassland & Silvipasture Management Div Jhansi 284003 Uttar Pradesh India;

    ICAR Indian Grassland & Fodder Res Inst Grassland & Silvipasture Management Div Jhansi 284003 Uttar Pradesh India;

    ICAR Indian Grassland & Fodder Res Inst Grassland & Silvipasture Management Div Jhansi 284003 Uttar Pradesh India;

    ICAR Indian Inst Soil Sci Soil Biol Div Bhopal 462038 India;

    ICAR Indian Agr Res Inst Ctr Environm Sci & Climate Resilient Agr New Delhi 110012 India;

    Birbal Sahni Inst Paleosci Radiocarbon Dating & Isotope Characterizat Lab Lucknow 226007 Uttar Pradesh India;

    Birbal Sahni Inst Paleosci Radiocarbon Dating & Isotope Characterizat Lab Lucknow 226007 Uttar Pradesh India;

    ICAR Indian Grassland & Fodder Res Inst Grassland & Silvipasture Management Div Jhansi 284003 Uttar Pradesh India;

    ICAR Indian Grassland & Fodder Res Inst Grassland & Silvipasture Management Div Jhansi 284003 Uttar Pradesh India;

    ICAR Indian Grassland & Fodder Res Inst Grassland & Silvipasture Management Div Jhansi 284003 Uttar Pradesh India;

    Indian Council Agr Res New Delhi 110012 India;

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

    Carbon stock; land-use systems; soil enzymes; microbial biomass C; silt plus clay;

    机译:碳库存;土地使用系统;土壤酶;微生物生物量C;淤泥加粘土;

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