Isotopic exchangeability reveals that soil phosphate is mobilised by carboxylate anions, whereas acidification had the reverse effect

IF 5.8 2区 农林科学 Q1 SOIL SCIENCE
Soil Pub Date : 2025-05-21 DOI:10.5194/soil-11-389-2025
Siobhan Staunton, Chiara Pistocchi
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Abstract

Abstract. Mineral P is an increasingly scarce resource, and therefore the mobilisation of legacy soil P must be optimised to maintain soil fertility. We have used isotopic exchangeability to probe the lability of native soil P in four contrasting soils following acidification and the addition of carboxylate anions (citrate and oxalate) in soil suspension. Acidification tended to cause immobilisation of soil P, but this was attributed to a salt effect. Addition of both citrate and oxalate led to marked increases in mobilisation of soil P. This would result from both competition between carboxylate and phosphate ions at adsorption sites and chelation of charge-compensating cations. The carboxylate effects were similar at each level of acidification, indicating that effects were largely additive. This is not true for the most calcareous soil where calcium oxalate may have been precipitated at the highest oxalate addition. Promoting carboxylate anions in soil by soil amendment or the use of crops that exude large amounts of such organic anions is a promising approach to improve soil-P availability.
同位素交换表明,土壤磷酸盐被羧酸阴离子调动,而酸化则具有相反的效果
摘要。矿质磷是一种日益稀缺的资源,因此必须优化土壤磷素的利用,以保持土壤肥力。我们使用同位素交换性来探测在酸化和土壤悬浮液中添加羧酸阴离子(柠檬酸盐和草酸盐)后,四种对比土壤中原生土壤P的不稳定性。酸化往往会导致土壤磷的固定,但这是由于盐的影响。柠檬酸盐和草酸盐的添加导致土壤磷的动员显著增加,这可能是由于羧酸盐和磷酸盐离子在吸附位点的竞争以及电荷补偿阳离子的螯合作用。羧酸盐的作用在每个酸化水平上都是相似的,表明这种作用在很大程度上是加性的。这对于大多数钙质土壤来说是不正确的,在那里草酸钙可能在最高的草酸添加下沉淀。通过土壤改良剂或使用大量散发这种有机阴离子的作物来促进土壤中的羧酸阴离子是改善土壤磷素有效性的一种有希望的方法。
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来源期刊
Soil
Soil Agricultural and Biological Sciences-Soil Science
CiteScore
10.80
自引率
2.90%
发文量
44
审稿时长
30 weeks
期刊介绍: SOIL is an international scientific journal dedicated to the publication and discussion of high-quality research in the field of soil system sciences. SOIL is at the interface between the atmosphere, lithosphere, hydrosphere, and biosphere. SOIL publishes scientific research that contributes to understanding the soil system and its interaction with humans and the entire Earth system. The scope of the journal includes all topics that fall within the study of soil science as a discipline, with an emphasis on studies that integrate soil science with other sciences (hydrology, agronomy, socio-economics, health sciences, atmospheric sciences, etc.).
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