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Release kinetics and distribution of boron in different fractions in some calcareous soils

机译:石灰性土壤中硼在不同组分中的释放动力学和分布

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The aim of this study was to evaluate the release kinetics, speciation, and fractionation of boron (B) in some calcareous soils of western Iran. Ten surface soil samples were incubated with 100 mg B kg~(-1) for a week at field capacity moisture. After air drying of samples, the trend of B release was experimented using sequential extraction with 10 mM CaCl_2. B speciation in soil solution was calculated for the first and the last steps of extraction by the visual MINTEQ program. The distribution of B among five fractions including exchangeable (Fl), specially adsorbed (F2), bound by Fe-Mn oxides (F3), organically bound (F4) and residual (F5), was determined in control and spiked soils. The results indicated that the release rates were initially rapid followed by a slower reaction and the main proportion of the added B was extracted by CaCl_2. The release kinetics of B was described well with Elovich, parabolic diffusion, power function, and first-order equations. The speciation results revealed that the uncharged boric acid (H3BO_3~0) was the dominant species in soil solutions. In control soils, B concentration in different fractions decreased in the following order: F5 > Fl > F2 > F3 > F4. In spiked soils, however, the largest and the smallest fractions were exchangeable and residual, respectively. This implies that B transformation from soluble to less mobile and non-labile forms is not a rapid process and requires more than a week. The significant relationship observed between kinetic parameters of power and parabolic equations and organically bound B fraction and OM content indicated that organic matter played an important role in B adsorption and release in calcareous soils.
机译:这项研究的目的是评估伊朗西部某些石灰质土壤中硼(B)的释放动力学,形态和分馏。将十个表层土壤样品与100 mg B kg〜(-1)在田间持水量下孵育一周。空气干燥样品后,使用10 mM CaCl_2顺序萃取实验了B释放的趋势。通过可视化MINTEQ程序,计算了提取的第一步和最后一步在土壤溶液中的B形态。在对照土壤和加标土壤中,确定了B在五种馏分中的分布,包括可交换的(F1),特别吸附的(F2),受Fe-Mn氧化物(F3),有机结合的(F4)和残留的(F5)。结果表明,释放速率最初是快速的,随后是较慢的反应,添加的B的主要部分是通过CaCl_2提取的。用Elovich,抛物线扩散,幂函数和一阶方程很好地描述了B的释放动力学。形态分析结果表明,不带电荷的硼酸(H3BO_3〜0)是土壤溶液中的优势种。在对照土壤中,不同比例的B浓度按以下顺序降低:F5> Fl> F2> F3> F4。但是,在加标土壤中,最大和最小部分分别是可交换的和残留的。这意味着硼从可溶形式转变为流动性和非不稳定形式不是一个快速的过程,需要一周以上的时间。幂和抛物线方程的动力学参数与有机结合的B分数和OM含量之间的显着关系表明,有机质在石灰性土壤中对B的吸附和释放起着重要作用。

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