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首页> 外文期刊>Water, air and soil pollution >Cation Exchange Capacity and Proton Binding Properties of Pea (Pisum sativum L.) Roots
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Cation Exchange Capacity and Proton Binding Properties of Pea (Pisum sativum L.) Roots

机译:豌豆(Pisum sativum L.)根的阳离子交换能力和质子结合特性

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Risk assessment of trace-metal contamination in soils requires predictive models that take into account the interaction of metal ions with other cations (e.g., H~+ and Ca~(2+)) that can change the speciation of trace metals in solution and compete for binding sites on plant roots thus affecting metal uptake and toxicity. Acid-base titrations were used to estimate the types and quantity of cation-binding sites on fresh pea (Pisum sativum L. cv. Lincoln) roots and their binding strength with protons. The roots were found to have three types of cation-binding sites with site densities of 190, 382, and 347 μmol_e g~(-1) (dry weight), respectively. The binding strength with H~+ was indicated by the equilibrium formation constants (K_(HLj)). The logK_(HLj) values under different ionic strengths were determined. At zero ionic strength, the logK_(HLj) values are estimated to be 2.5, 5.5, and 8.3, respectively. Complementary experiments were used to validate the titration results. These included an ion exchange experiment, an experiment with HC1 extractions, and a KOH neutralization method. Estimates from all four methods were consistent under the experimental conditions. The quantification of thernbinding capacity and the characteristics of these binding sites will assist in the development of more appropriate solution speciation models that incorporate biotic ligands. The derived parameters will provide the basis on which further development of a biotic ligand model is dependent.
机译:土壤中痕量金属污染的风险评估需要一种预测模型,该模型要考虑金属离子与其他阳离子(例如H〜+和Ca〜(2+))的相互作用,这些相互作用可以改变溶液中痕量金属的形态并竞争用于植物根部的结合位点,从而影响金属的吸收和毒性。酸碱滴定法用于估计鲜豌豆(Pisum sativum L. cv。Lincoln)根上阳离子结合位点的类型和数量,以及它们与质子的结合强度。发现根具有三种类型的阳离子结合位点,其位点密度分别为190、382和347μmol_eg〜(-1)(干重)。通过平衡形成常数(K_(HLj))表示与H〜+的结合强度。确定在不同离子强度下的logK_(HLj)值。在零离子强度下,logK_(HLj)值分别估计为2.5、5.5和8.3。补充实验用于验证滴定结果。其中包括离子交换实验,HCl萃取实验和KOH中和方法。在实验条件下,所有四种方法的估计值都是一致的。结合能力的定量和这些结合位点的特征将有助于开发结合了生物配体的更合适的溶液形态模型。得出的参数将为生物配体模型的进一步发展提供依据。

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