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Potential Phytoavailability Of Anthropogenic Cobalt In Soils As Measured By Isotope Dilution Techniques

机译:同位素稀释技术测定的人为钴在土壤中的潜在植物利用率

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Isotope dilution is a useful technique to determine the potential phytoavailability of an element in soil. This method involves equilibrating an isotope with soil and then sampling the labile metal pool by analysis of the soil solution (E value) or plants growing in the soil (L value). The work reported here was conducted to evaluate the distribution coefficient (K_d), and the potential phytoavailability (E value) of cobalt (Co) in eight soils subjected to the atmospheric deposition of anthropogenic Co. Multiple regression analyses demonstrated that the K_d of isotopically exchangeable Co in these soils was best modelled with two parameters: soil pH and organic carbon (OC) content (log K_d=0.85(pH) + 1.1(logOC)-5.0, R~2 = 0.94, p < 0.01). Cobalt E values ranged from 1.5 to 37% of total soil Co concentrations. No evidence was obtained to suggest that Co(III), if present, was isotopically exchangeable in these soils and it was concluded that the Co E values consisted solely of Co(II). Cobalt L values, measured with Triticum aestivum L. (46 days), of two of these soils (varying in soil pH, e.g. 5.0 and 7.2) were statistically (p < 0.05) different to E values. However, when changes of bulk soil pH on Co E values were considered, the two values were statistically (p < 0.05) similar indicating that processes affecting soil pH during plant growth can alter isotopically exchangeable concentrations of Co.
机译:同位素稀释是确定土壤中元素潜在植物利用率的有用技术。该方法包括用土壤平衡同位素,然后通过分析土壤溶液(E值)或土壤中生长的植物(L值)对不稳定的金属池进行采样。进行了此处报告的工作,以评估人类活动Co大气沉积的8种土壤中钴(Co)的分布系数(K_d)和潜在的植物利用率(E值)。多元回归分析表明,同位素可交换的K_d这些土壤中的Co最好用两个参数建模:土壤pH和有机碳(OC)含量(log K_d = 0.85(pH)+ 1.1(logOC)-5.0,R〜2 = 0.94,p <0.01)。钴E值占土壤总Co浓度的1.5%至37%。没有证据表明Co(III)(如果存在)在这些土壤中可以同位素交换,因此得出结论,Co E值仅由Co(II)组成。在两种土壤中(土壤pH分别为5.0和7.2),用普通小麦(46天)测量的钴L值与E值具有统计学差异(p <0.05)。然而,当考虑土壤整体pH值随Co E值的变化时,这两个值在统计学上相似(p <0.05),表明在植物生长过程中影响土壤pH值的过程可以改变同位素同位素交换的Co浓度。

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