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首页> 外文期刊>Journal of Agricultural Science >Physical, Chemical, Morphological and Mineralogical Characterization Surface and Subsurface in Hydromorphic and Non-hydromorphic Soil of the Central Amazon
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Physical, Chemical, Morphological and Mineralogical Characterization Surface and Subsurface in Hydromorphic and Non-hydromorphic Soil of the Central Amazon

机译:亚马逊中央和非湿润土壤中的物理,化学,形态学和矿物学表征表面和地下

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Amazonian soils have some physical, chemical and mineralogical differences, understanding the differences is important to understand the behavior of nutrients in the soil, especially phosphorus. The study was carried out in two types of soils: a Hydromorphic soil profile and a Non-hydromorphic soil profile in the Central Amazon region of Brazil, located in the metropolitan area of Manaus. Five depths were sampled: 0.00-0.05; 0.05-0.1; 0.1-0.2; 0.2-0.4; and 0.4-0.6 m. Physical, chemical, mineralogical and morphological attributes of both soils were studied. With the exception of clay, the levels of sand and silt remained stable in depth. The levels of organic matter gradually decrease in depth. The pH in water and in KCl, ?pH, point of zero load, were similar between the surface and subsurface soils. Al3+, H++Al3+, CECt, CECT and clay activity were similar in Non-hydromorphic soil and increase in surface (< 0.2 m) and stabilize in subsurface (> 0.2 m). In both soils, the bases are reduced in subsurface (> 0.2 m). Aluminum and iron oxalate reduce with greater expressiveness in Non-hydromorphic soil. Aluminum and dithionite iron exhibit the same behavior. The levels of Goethite (Gt) and Hematite (Hm) are high in depth in the Non-hydromorphic soil and decrease in the Hydromorphic soil. There are sensitive distinctions between soils, due to the imposed edaphoclimatic conditions.
机译:亚马逊土壤有一些物理,化学和矿物学差异,了解差异对于了解土壤中的营养成分,尤其是磷。该研究是以两种类型的土壤进行:巴西中央亚马逊地区的潮湿土壤曲线和非潮湿的土壤剖面,位于马瑙斯大都市区。取样五个深度:0.00-0.05; 0.05-0.1; 0.1-0.2; 0.2-0.4;和0.4-0.6米。研究了两种土壤的物理,化学,矿物学和形态学属性。除了粘土之外,沙子和淤泥的水平深度稳定。有机质水平逐渐减少深度。在水中和KCl中的pH值,αpH值,零载荷点,表面和地下土壤之间具有相似。 Al3 +,H ++ Al3 +,CECT,CECT和粘土活性在非潮湿的土壤中相似,表面(<0.2米)增加并稳定在地下(>0.2μm)。在两种土壤中,地下(>0.2μm)降低了基础。铝和铁氧酸铁在非潮湿土壤中具有更大的富有效力。铝和二硫铁矿铁表现出相同的行为。甲酸酯(GT)和赤铁矿(HM)的水平在非潮湿的土壤中深度深度,并降低了潮湿的土壤。由于施加的胶质基础条件,土壤之间存在敏感的区别。

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