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鸟粪石与腐殖酸之间的相互作用及其对非酸性土壤肥料效率的影响

Interactions between Struvite and Humic Acid and Consequences on Fertilizer Efficiency in a Nonacidic Soil.

作者信息

Erro Javier, Seminario Iñigo, García-Mina José M

机构信息

Environmental Biology Department. Faculty of Sciences. BIOMA Institute. University of Navarra, c/Irunlarrea, 1, Pamplona 31008, Spain.

Magnesitas Navarra, S.A, Av. Roncesvalles, Zubiri, Navarra 31630, Spain.

出版信息

J Agric Food Chem. 2024 Oct 2;72(39):21475-21487. doi: 10.1021/acs.jafc.4c05472. Epub 2024 Sep 18.

Abstract

The effect of humic acid extracted from peat (AHt) on improving the struvite (STR) fertilizing efficiency is explored. To this end, a soil incubation study is correlated to plant assays comparing STR, STR-AHt, and superphosphate (SSP). Characterization techniques confirm the incorporation of the AHt into the STR. The P-pool distribution of STR and SSP is similar in the soil incubation, with STR-AHt presenting a higher labile P at 90 days passing from 10 to 15% P from SSP and STR to 25% P with STR-AHt. However, when applied to barley and tomato, STR yields more shoot P content, aboveground biomass, and residual P in soil than SSP. STR-AHt does not improve the STR results. The poor correlation observed between soil incubation and plant trials highlights the role of the rhizosphere in testing the fertilizer efficiency of STR. Mechanistic assays indicate the key role of rhizosphere pH. Finally, molecular modeling reveals a higher stabilization of STR with AHt, which could reduce P release decreasing the fertilizing potential of STR-AHt, as observed in the pot trials.

摘要

探讨了从泥炭中提取的腐殖酸(AHt)对提高鸟粪石(STR)施肥效率的影响。为此,将土壤培养研究与比较STR、STR-AHt和过磷酸钙(SSP)的植物试验相关联。表征技术证实了AHt已掺入STR中。在土壤培养中,STR和SSP的磷库分布相似,STR-AHt在90天时表现出更高的活性磷,从不溶性过磷酸钙和STR的10%磷增加到15%磷,而STR-AHt则增加到25%磷。然而,当施用于大麦和番茄时,STR比SSP产生更多的地上部磷含量地上生物量和土壤中的残留磷。STR-AHt并没有改善STR的效果。在土壤培养和植物试验之间观察到的不良相关性突出了根际在测试STR肥料效率中的作用。机理分析表明根际pH的关键作用。最后,分子模拟显示STR与AHt具有更高的稳定性,这可能会减少磷的释放,从而降低STR-AHt的施肥潜力,如盆栽试验中所观察到的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5775/11457438/96c1881743bb/jf4c05472_0001.jpg

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