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首页> 外文期刊>The Science of the Total Environment >Storage and stability of biochar-derived carbon and total organic carbon in relation to minerals in an acid forest soil of the Spanish Atlantic area
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Storage and stability of biochar-derived carbon and total organic carbon in relation to minerals in an acid forest soil of the Spanish Atlantic area

机译:在西班牙大西洋地区的酸性森林土壤中,生物炭衍生的碳和总有机碳相对于矿物质的储存和稳定性

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摘要

Biochar can largely contribute to enhance organic carbon (OC) stocks in soil and improve soil quality in forest and agricultural lands. Its contribution depends on its recalcitrance, but also on its interactions with minerals and other organic compounds in soil. Thus, it is important to study the link between minerals, natural organic matter and biochar in soil. In this study, we investigated the incorporation of biochar-derived carbon (biochar-C) into various particle-size fractions with contrasting mineralogy and the effect of biochar on the storage of total OC in the particle-size fractions in an acid loamy soil under Pinus radiata (C3 type) in the Spanish Atlantic area. We compared plots amended with biochar produced from Miscanthus sp. (C4 type) with control plots (not amended). We separated sand-, silt-, and clay-size fractions in samples collected from 0 to 20-cm depth. In each fraction, we analyzed day minerals, metallic oxides and oxy-hydroxides, total OC and biochar-C. The results showed that 51% of the biochar-C was in fractions <20 μm one year after the application of biochar. Biochar-C stored in day-size fractions (0.2-2 μm, 0.05-0.2 μm, <0.05 pm) was only 14%. Even so, we observed that biochar-C increased with decreasing particle-size in clay-size fractions, as it occurred with the vermiculitic phases and metallic oxides and oxy-hydroxides. Biochar also affected to the distribution of total OC among particle-size fractions. Total OC concentration was greater in fractions 2-20 μm, 0.2-2 μm, 0.05-0.2 μm in biochar-amended plots than in control plots. This may be explained by the adsorption of dissolved OC from fraction <0.05 μm onto biochar particles. The results suggested that interactions between biochar, minerals and pre-existing organic matter already occurred in the first year.
机译:生物炭可以极大地增加土壤中的有机碳(OC)储量,并改善森林和农田的土壤质量。其贡献取决于其顽固性,还取决于其与土壤中矿物质和其他有机化合物的相互作用。因此,研究土壤中矿物质,天然有机物与生物炭之间的联系非常重要。在这项研究中,我们研究了将生物炭衍生的碳(biochar-C)掺入具有不同矿物学特征的各种粒径级分中,以及生物炭对酸性壤质土壤中粒径级分中总OC的储存的影响。辐射松(C3型)在西班牙大西洋地区。我们比较了用Miscanthus sp。生产的生物炭修正的地块。 (C4类型),带有控制图(未修改)。我们在从0到20厘米深度收集的样品中分离了沙,粉砂和黏土大小的部分。在每个部分中,我们分析了日矿物质,金属氧化物和羟基氧化物,总OC和生物碳。结果表明,应用生物炭一年后,有51%的生物炭C含量小于20μm。以日大小级分(0.2-2μm,0.05-0.2μm,<0.05 pm)存储的Biochar-C仅为14%。即便如此,我们仍观察到生物炭-C随着黏土级分中粒径的减小而增加,因为它发生在ver石相,金属氧化物和羟基氧化物中。生物炭还影响总OC在粒度级分中的分布。在生物炭修正地块中,总的OC浓度在2-20μm,0.2-2μm,0.05-0.2μm的馏分中比对照地块更大。这可以通过将溶解的OC从馏分<0.05μm吸附到生物炭颗粒上来解释。结果表明,生物炭,矿物质和预先存在的有机物之间的相互作用已经在第一年发生。

著录项

  • 来源
    《The Science of the Total Environment 》 |2017年第1期| 204-213| 共10页
  • 作者单位

    Department of Mineralogy and Petrology, Science and Technology Faculty, University of the Basque Country (UPV/EHU), Apartado 644, E-48080 Bilbao, Spain,NEIKER-Tecnalia, Department of Conservation of Natural Resources, 812 Bizkaia Science and Technology Park, E-48160 Derio, Spain,European Commission, Joint Research Centre (JRC), Directorate D - Sustainable Resources, Land Resources, Via E. Fermi 2749,1-21027 Ispra (VA), Italy;

    NEIKER-Tecnalia, Department of Conservation of Natural Resources, 812 Bizkaia Science and Technology Park, E-48160 Derio, Spain;

    Department of Mineralogy and Petrology, Science and Technology Faculty, University of the Basque Country (UPV/EHU), Apartado 644, E-48080 Bilbao, Spain;

    NEIKER-Tecnalia, Department of Conservation of Natural Resources, 812 Bizkaia Science and Technology Park, E-48160 Derio, Spain;

    NEIKER-Tecnalia, Department of Conservation of Natural Resources, 812 Bizkaia Science and Technology Park, E-48160 Derio, Spain;

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

    Forest soil; Biochar; Organic carbon; Clay minerals; Metallic oxides and oxy-hydroxides; Particle-size fraction;

    机译:森林土壤;生物炭有机碳粘土矿物;金属氧化物和羟基氧化物;粒度分数;

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