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Silica content in soil solution and its relation with phytolith weathering and silica biogeochemical cycle in Typical Argiudolls of the Pampean Plain, Argentina-a preliminary study

机译:阿根廷庞毕平原平原典型Argiudolls土壤溶液中的二氧化硅含量及其与植物石化风化作用和二氧化硅生物地球化学循环的关系-初步研究

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摘要

Purpose Little is known on the silica biogeochemical cycle in terrestrial environments. The aim of this work is to assess phytolith's role on the biogeochemical cycle of Si in Typical Argiudolls under different vegetation of the Pampean Plain, Argentina.rnMaterials and methods The work has been developed in three plots with different vegetal cover: grasses and shelter-belt plantations of Acacia melanoxylon-Celtis tala and Eucalyptus globulus-C. tala. The heavy liquid separation in the soil samples was realized with sodium polytungstate. The silica concentration of the soil solution and groundwaters was determined by UV-VIS spectrophotometry. Results and discussion Acacia and eucalyptus do not produce phytoliths; instead, Dactylis glomerata (grass) is a silica-accumulating species, and their phytolith assemblage is composed basically by oblong and crenate, smoothrnelongate, rectangular and prickles within isolated phytoliths, and smooth long cells articulated. Phytolith content in soils decreases with depth. Total stock of phytoliths represents 5.9 to 12.9 wt.% and is higher in the arboreal plots. In the A horizons, phytolith fraction represents about 59.6×10~3 to 103.5×10~3kg/ha. In these horizons, 90.7-94.4% of the phytolith content constitutes the labile pool and 9.3-5.6% the stable pool. In the arboreal plots, SiO_2 content in soil solution is higher (406-1,106 μmol/L) and decreases with depth, while in the grass plot, SiO_2 content is lesser (421-777μmol/L) and increases with depth; probably because of differences in the nutritional requirements and root design between vegetal species, therefore, in the different depth uptake from the soil solution. In groundwaters, silica content is very high (932 μmol/L).rnConclusions Phytoliths are very representative in Typical Argiudolls and show a great degree of weathering so they could be into account in the biogeochemical studies since they could contribute with silica content in the soil solution, affecting the terrestrial silica biogeochemical cycle.
机译:目的对于陆地环境中的二氧化硅生物地球化学循环知之甚少。这项工作的目的是评估阿根廷Pampean平原不同植被下典型Argiudolls中硅藻石在硅生物地球化学循环中的作用。材料和方法该工作已在三个具有不同植物覆盖的样地中进行了研究:草和防护林带刺槐金合欢-Celtis tala和桉树-C人工林。塔拉。用聚钨酸钠实现了土壤样品中的重液分离。通过UV-VIS分光光度法测定土壤溶液和地下水中的二氧化硅浓度。结果与讨论金合欢和桉树不产生植硅体。相反,Dactylis glomerata(草)是一种二氧化硅富集的物种,它们的植石组合基本上是由孤立的植石中的长圆形和月牙形,平滑长形,矩形和多刺组成的,并且有节状的平滑长细胞。土壤中的植硅石含量随深度降低。植硅体的总存量占5.9至12.9 wt。%,在树栖地块中较高。在A层中,植硅体含量约占59.6×10〜3至103.5×10〜3kg / ha。在这些视野中,90.7-94.4%的植物硅酸盐含量构成了不稳定库,而9.3-5.6%的组成为稳定库。在乔木样地中,土壤溶液中的SiO_2含量较高(406-1,106μmol/ L),并随深度的增加而降低;而在草地样地中,SiO_2含量较小(421-777μmol/ L),随深度的增加而增加;可能是由于植物物种之间营养需求和根系设计的差异,因此,从土壤溶液中吸收的深度不同。在地下水中,二氧化硅含量非常高(932μmol/ L)。结论结论硅藻土在典型的Argiudolls中非常有代表性,并且表现出很大的风化作用,因此可以在生物地球化学研究中加以考虑,因为它们可能会影响土壤中的二氧化硅含量。溶液,影响陆地二氧化硅的生物地球化学循环。

著录项

  • 来源
    《Journal of soil & sediments》 |2010年第6期|P.983-994|共12页
  • 作者单位

    Institute de Geologia de Costas y del Cuaternario, FCEyN, UNMdP, CC 722 (7600) Mar del Plata, Buenos Aires, Argentina Consejo Nacional de Investigaciones Cientificas y Tecnicas (CONICET), Avda. Rivadavia 1917, CP C1033AAJ, Cuidad de Buenos Aires, Argentina;

    rnInstitute de Geologia de Costas y del Cuaternario, FCEyN, UNMdP, CC 722 (7600) Mar del Plata, Buenos Aires, Argentina Consejo Nacional de Investigaciones Cientificas y Tecnicas (CONICET), Avda. Rivadavia 1917, CP C1033AAJ, Cuidad de Buenos Aires, Argentina;

    rnInstitute de Geologia de Costas y del Cuaternario, FCEyN, UNMdP, CC 722 (7600) Mar del Plata, Buenos Aires, Argentina;

    rnInstitute Argentino de Oceanografia (IADO), Area de Oceanografia Quimica, CCT-CONICET-Bahia Blanca, CC 804 (8000) Bahia Blanca, Buenos Aires, Argentina Consejo Nacional de Investigaciones Cientificas y Tecnicas (CONICET), Avda. Rivadavia 1917, CP C1033AAJ, Cuidad de Buenos Aires, Argentina;

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

    amorphous silica; phytoliths; silica biogeochemistry; terrestrial ecosystems;

    机译:无定形二氧化硅植物石二氧化硅生物地球化学陆地生态系统;

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