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Selectivity of reagents used to extract iron from soil

机译:从土壤中提取铁的试剂的选择性

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The selectivity of the Tamm and Mehra-Jackson reagents to iron (hydr)oxides was verified chemically by comparing the efficiencies of the two methods of iron extraction: parallel (commonly adopted) and sequential, i.e., by calculating the difference Delta Fe = [Fe-dit - (Fe-ox(paral) + Fe-dit(seq))]. The expected equality of the extracted iron (i.e., Delta Fe similar to 0) is rarely observed. A positive balance reaching Delta Fe = (0.5-0.8)% predominates upon iron extraction from forest soils of the Cis-Ural region. This is probably due to the stable Fe(II)-oxalate forming in the course of the Tamm extraction, which is incompletely dissolved by the dithionite-citrate-bicarbonate (DCB). On the contrary, a negative balance with Delta Fe reaching -0.4% predominates in the steppe soils of the Stavropol region. This may be caused by Fe(II) minerals (pyrite and siderite) acting as catalyzers in Tamm's extract, while being weakly soluble in the DCB. To follow the additivity principle for the Tamm and Mehra-Jackson extracts, we suggest a modification of the Schwertmann criterion K-Sch = (Fe-ox: Fe-dit(paral)), which sometimes exceeds 1, to K-Sch (m) = Fe-ox: (Fe-ox + Fe-dit(seq)), which is always less than 1. The values of the modified Schwertmann criterion better agree with the color of the Cis-Ural forest soils expressed in the CIE-L*a*b* optical system as compared with the initial Schwertmann criterion. In the steppe soils, the use of the modified criterion makes it possible to replace the illogical values of K-Sch = 1.11-1.37 by the quite acceptable K-Sch(m) = 0.68-0.83.
机译:Tamm和Mehra-Jackson试剂对铁(氢)氧化物的选择性通过比较两种铁提取方法(平行(通常采用)和顺序)的效率进行化学验证,即通过计算差值Fe = -dit-(Fe-ox(paral)+ Fe-dit(seq))]。很少观察到所提取的铁的预期相等性(即,Delta Fe类似于0)。从顺-乌拉尔地区的森林土壤中提取铁时,达到Delta Fe =(0.5-0.8)%的正平衡为主。这可能是由于在Tamm萃取过程中形成了稳定的草酸Fe(II)-草酸,而亚硫酸氢盐-柠檬酸盐-碳酸氢盐(DCB)不能完全溶解草酸亚铁。相反,在斯塔夫罗波尔地区的草原土壤中,ΔFe达到-0.4%的负平衡占主导地位。这可能是由于Fe(II)矿物(黄铁矿和菱铁矿)在Tamm提取物中起催化剂的作用,而微溶于DCB。为了遵循Tamm和Mehra-Jackson提取物的可加性原理,我们建议将Schwertmann准则K-Sch =(Fe-ox:Fe-dit(paral))修改为K-Sch(m )= Fe-ox:(Fe-ox + Fe-dit(seq)),该值始终小于1。改良的Schwertmann准则的值与CIE-与初始Schwertmann准则相比,L * a * b *光学系统。在草原土壤中,使用修改后的标准可以用相当可接受的K-Sch(m)= 0.68-0.83代替K-Sch = 1.11-1.37的非逻辑值。

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