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Propriedades químicas do solo na bacia hidrográfica do rio Vacacaí-Mirim

机译:瓦卡卡米米林河水文盆地土壤的化学性质

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The levels of metals in soils have increased gradually with the modernization of agriculture which has occurred in recent years. The human action performed by man in nature is the main cause of this phenomenon. On this basis, the present study's aim is to evaluate changes in soil chemical properties due to different uses and occupations in the river basin of Vacacaí-Mirim. The technique used for analysis was EDXRF, where the values were spacialized with the aid of the software Surfer 10. Values for Barium ranged from the detection limit (DL) to 7,608.27 mg/kg-1 with an average of 1,286.71 ± 2,295.18 mg/kg-1, the concentration of Phosphorus ranged from DL to 2,327.02 mg/kg-1 with an average of 676.45 ± 700.05 mg/kg-1, Manganese ranged from DL to 5,533.51 mg/kg-1 with an average of 1,057.34 ± 1,380.81 mg/kg-1, the values for Silicon ranged 229,114.70 to 832,568.70 mg/kg-1 with a mean of 696,134.25 ± 144,950.56 mg/kg-1, Zinc concentration ranged from DL to 429.98 mg/kg-1 with an average of 145.725 ± 123.78 mg/kg-1. Based on these results, it is possible to identify that the concentrations of the metals studied and the land use are closely linked, since concentrations are higher in areas that have agricultural uses, which require larger amounts of chemicals. Thus, it can be observed that the soils under the uses of rice, soybeans and pasture had greater influence on the concentration of the element barium, phosphorus, however, had most influence by the land use in pasture and soybeans.
机译:随着近年来发生的农业现代化,土壤中的金属含量逐渐增加。人在自然界中所采取的人类行动是造成这种现象的主要原因。在此基础上,本研究的目的是评估瓦卡卡米米里姆河流域由于不同用途和职业而引起的土壤化学性质的变化。用于分析的技术是EDXRF,其中值借助Surfer 10软件进行了空间化。钡的值从检测限(DL)到7,608.27 mg / kg-1不等,平均为1,286.71±2,295.18 mg / kg。 -1时,磷的浓度范围从DL到2,327.02 mg / kg-1,平均为676.45±700.05 mg / kg-1,锰的范围从DL到5,533.51 mg / kg-1,平均为1,057.34±1,380.81 mg / kg-1,硅的含量范围为229,114.70至832,568.70 mg / kg-1,平均值为696,134.25±144,950.56 mg / kg-1,锌浓度范围为DL至429.98 mg / kg-1,平均值为145.725±123.78 mg / kg-1。根据这些结果,可以确定所研究的金属的浓度与土地使用密切相关,因为在需要大量化学药品的农业用途地区浓度较高。因此,可以看出,使用稻米,大豆和牧场的土壤对钡,磷元素的浓度影响更大,但是受牧场和大豆中土地利用的影响最大。

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