CIRAD, UPR Recyclage et Risque, F-97743, Saint-Denis, La Réunion, France; Recyclage et Risque, Univ Montpellier, CIRAD, Montpellier, France; VEOLIA-eau, Saint-Denis, Réunion, France.
CIRAD, UPR Recyclage et Risque, F-97743, Saint-Denis, La Réunion, France; Recyclage et Risque, Univ Montpellier, CIRAD, Montpellier, France.
Chemosphere. 2020 Jan;239:124709. doi: 10.1016/j.chemosphere.2019.124709. Epub 2019 Aug 31.
The effect of organic fertilizers on soil phosphorus (P) availability is usually mainly associated with the rate and forms of P applied, while they also alter the soil physical-chemical properties, able to change P availability. We aimed to highlight the impact of pH and organic C modifications in soil on the inorganic P (Pi) sorption capacity and availability as compared to the effect of P accumulation after mineral or organic fertilizers. We conducted a 10-years-old field experiment on an andosol and compared fields that had been amended with mineral or organic (dairy slurry and manure compost) fertilizers against a non-fertilized control. Water and Olsen extractions and Pi sorption experiments were realized on soils sampled after 6 and 10 years of trial. We also realized an artificial and ex situ alkalization of the control soil to isolate the effect of pH on Pi sorption capacity. Organic fertilizer application increased total P, pH, and organic C in soil. Pi-Olsen increased mainly with soil total P (r adj = 0.79), while Pi-water increased jointly with soil total P and pH (r adj = 0.85). The Pi sorption capacity decreased with organic fertilizer application. Artificial and ex situ alkalization of the control soil showed that Pi sorption capacity decreased with increasing pH. Our study demonstrated that, beyond the P fertilization rate, the increase in organic C content and even more so in pH induced by a decade of organic fertilizer applications in soil decreased the Pi sorption capacity and consequently increased Pi-water in soil.
有机肥对土壤磷(P)有效性的影响通常主要与施入的 P 速率和形态有关,同时它们还会改变土壤理化性质,从而改变 P 的有效性。我们旨在强调与矿物或有机肥料施入后 P 积累的影响相比,土壤 pH 和有机 C 变化对无机 P(Pi)吸附能力和有效性的影响。我们在一种壤土上进行了为期 10 年的田间试验,比较了施用矿物或有机肥料(奶牛粪浆和堆肥)的田地与未施肥对照田。在试验 6 年和 10 年后,我们对土壤进行了水分和 Olsen 提取以及 Pi 吸附实验。我们还对对照土壤进行了人工和异位碱化,以分离 pH 对 Pi 吸附能力的影响。有机肥的施用增加了土壤中的总 P、pH 和有机 C。Pi-Olsen 主要随土壤总 P 增加(r adj = 0.79),而 Pi 水含量则随土壤总 P 和 pH 增加(r adj = 0.85)。Pi 吸附能力随有机肥的施用而降低。对照土壤的人工和异位碱化表明,Pi 吸附能力随 pH 的升高而降低。我们的研究表明,除了 P 施肥率之外,土壤中 10 年有机肥料施用引起的有机 C 含量增加,甚至 pH 升高,降低了 Pi 吸附能力,从而增加了土壤中的 Pi 水含量。