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Using isotopes to trace freshly applied cadmium through mineral phosphorus fertilization in soil-fertilizer-plant systems

机译:使用同位素通过土壤 - 肥料系统中的矿物磷施肥来追踪新鲜施用的镉

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Applications of mineral phosphorus (P) fertilizer can lead to cadmium (Cd) accumulation in soils and can increase Cd concentrations in edible crop parts. To determine the fate of freshly applied Cd, a Cd source tracing experiment was conducted in three soil-fertilizer-wheat systems by using a mineral P fertilizer labeled with the radio isotope Cd-109 and by exploiting natural differences in Cd stable isotope compositions (delta Cd-114/110). Source tracing with stable isotopes overestimated the proportion of Cd in plants derived from the P fertilizer, because the isotope ratios of the sources were not sufficiently distinct from those of the soils. Despite indistinguishable extractable Cd pools between control and treatments, the addition of P fertilizer resulted in a more negative apparent isotope fractionation between soil and wheat. Overall, the radio isotope approach provided more robust results and revealed that 6.5 to 15% of the Cd in the shoot derived from the fertilizer. From the introduced Cd, a maximum of 22% reached the wheat shoots, whilst 97.8% remained in the roots and soils. The low recoveries of the fertilizer derived Cd suggest that continuous P fertilizer application in the past decades can lead to a build-up of a residual Cd pool in soils. (C) 2018 Elsevier B.V. All rights reserved.
机译:矿物磷(P)肥料的应用可以导致土壤中的镉(CD)积累,可以增加食用作物零件中的CD浓度。为了确定新应用CD的命运,通过使用与无线电同位素CD-109标记的矿物P化肥在三种土壤 - 肥料 - 小麦系统中进行CD源跟踪实验,并通过利用CD稳定同位素组合物的自然差异(Delta CD-114/110)。具有稳定同位素的源跟踪估计源自P肥料中CD的比例,因为该来源的同位素比没有与土壤的同位素比例不同。尽管控制和治疗之间不可区分的可萃取CD池,但添加P肥料导致土壤和小麦之间的更负面明显的同位素分级。总体而言,无线电同位素方法提供了更强大的结果,并显示出源自肥料中的6.5%至15%的CD。从介绍的CD中,最多22%达到小麦芽,而97.8%仍然存在于根和土壤中。肥料衍生CD的低收索表明,过去几十年的连续P肥料应用可能导致土壤中残留CD池的积聚。 (c)2018年elestvier b.v.保留所有权利。

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