Araştırma Makalesi

Effect of Low-Molecular-Weight Organic Acid Applications on Available Phosphorus in Calcareous Soils

Cilt: 9 Sayı: 2 1 Ekim 2026
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Effect of Low-Molecular-Weight Organic Acid Applications on Available Phosphorus in Calcareous Soils

Öz

Phosphorus (P) fertiliser in calcareous soils precipitates as Ca-phosphates within weeks, generating plant-unavailable forms and reducing fertiliser-P recovery to ≤ 25%. Mobilising soil-accumulated P and prolonging fertiliser-P residence in the soil solution are therefore central agronomic challenges. The present study evaluated five low-molecular-weight organic acids (LMWOAs; acetic, oxalic, malic, citric and salicylic acid) at 10 mmol kg⁻¹ in a 90-day incubation (sampling at d 14, 30, 60 and 90) on four P-deficient calcareous soils (initial Olsen-P ≤ 10 mg kg⁻¹), without and with KH₂PO₄ addition (+50 mg P kg⁻¹). Under unfertilised conditions the effectiveness order was: oxalic acid (OA, 9.92 mg kg⁻¹) > control (C, 9.30 mg kg⁻¹) > malic acid (MA, 9.23 mg kg⁻¹) > acetic acid (AA, 9.13 mg kg⁻¹) > citric acid (CA, 9.11 mg kg⁻¹) > salicylic acid (SA, 8.93 mg kg⁻¹). Under P fertilisation the order shifted to: SA (43.6 mg kg⁻¹) > OA (42.4 mg kg⁻¹) = C = AA (42.1 mg kg⁻¹) > CA (40.1 mg kg⁻¹) > MA (38.0 mg kg⁻¹). Variance analysis showed that soil, fertilisation, organic acid and all two- and three-way interactions were highly significant (P < 0.001). Oxalic acid performed well in both regimes, whereas salicylic acid was particularly effective under P fertilisation. Combined LMWOA + water-soluble P-fertiliser application is therefore recommended for sustaining P availability over an extended cropping period in calcareous soils.

Anahtar Kelimeler

Destekleyen Kurum

TUBİTAK

Proje Numarası

2209-A, 1919B012319204

Etik Beyan

This article requires no Ethics Committee Report Approval

Teşekkür

The authors would like to thank the TUBİTAK for their financial support

Kaynakça

  1. Adams, M. A., Taranto, M. T., & Polglase, P. J. (2000). Sequential fractionation and characterisation (P-31-NMR) of phosphorus-amended soils in Banksia integrifolia (L.f.) woodland andadjacent pasture. Soil Biology and Biochemistry, 32(2), 169–177.
  2. Adler, P. R., & Sikora, L. J. (2003). Changes in Soil Phosphorus Availability with Poultry Compost Age. Communications in Soil Science and Plant Analysis, 34, 81–95. https://doi.org/10.1081/css-120017417
  3. Alejo, F., Rājan, S. S. S., & Chien, S. H. (2003). FAO/IAEA research activities on direct application of phosphate rock for sustainable crop production. 100–109. http://www.cabdirect.org/abstracts/20033151761.html Alpaslan, M., Güneş, A., & İnal, A. (2005). Deneme Tekniği. Ankara Üniversitesi Ziraat Fakültesi Yayınları.
  4. Amarawansha, E. A. G. S., Kumaragamage, D., Flaten, D., Zvomuya, F., & Tenuta, M. (2015). Phosphorus mobilization from manure-amended and unamended alkaline soils to overlying water during simulated flooding. Journal of Environmental Quality, 44(4), 1252–1262. https://doi.org/10.2134/jeq2014.10.0457
  5. Balemi, T., & Negisho, K. (2012). Management of soil phosphorus and plant adaptation mechanisms to phosphorus stress for sustainable crop production: a review. Journal of Soil Science and Plant Nutrition, 12, 547-562. https://doi.org/10.4067/s0718-95162012005000015
  6. Bhatti, J. S., Comerford, N. B., & Johnston, C. T. (1998). Influence of oxalate and soil organic matter on sorption and desorption of phosphate onto a spodic horizon. Soil Science Society of America Journal, 62(4), 1089–1095. https://doi.org/10.2136/sssaj1998.03615995006200040033x
  7. Bolan, N., Naidu, R., Mahimairaja, S., & Baskaran, S. (1994). Influence of low-molecular-weight organic acids on the solubilization of phosphates. Biology and Fertility of Soils, 18(4), 311–319. https://doi.org/10.1007/bf00570634
  8. Boschetti, N. G., Quintero, C. E., & Giuffre, L. (2007). Phosphorus fractions of soils under Lotus corniculatus as affected by different phosphorus fertilizers. Biology and Fertility of Soils, 45, 379–384.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Bitki Besleme ve Toprak Verimliliği

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

1 Ekim 2026

Gönderilme Tarihi

7 Ağustos 2026

Kabul Tarihi

6 Eylül 2026

Yayımlandığı Sayı

Yıl 2026 Cilt: 9 Sayı: 2

Kaynak Göster

APA
Çağlar, S., & Uygur, V. (2026). Effect of Low-Molecular-Weight Organic Acid Applications on Available Phosphorus in Calcareous Soils. Journal of Agriculture, 9(2). https://doi.org/10.46876/ja.2012700
AMA
1.Çağlar S, Uygur V. Effect of Low-Molecular-Weight Organic Acid Applications on Available Phosphorus in Calcareous Soils. Journal of Agriculture. 2026;9(2). doi:10.46876/ja.2012700
Chicago
Çağlar, Satı, ve Veli Uygur. 2026. “Effect of Low-Molecular-Weight Organic Acid Applications on Available Phosphorus in Calcareous Soils”. Journal of Agriculture 9 (2). https://doi.org/10.46876/ja.2012700.
EndNote
Çağlar S, Uygur V (01 Ekim 2026) Effect of Low-Molecular-Weight Organic Acid Applications on Available Phosphorus in Calcareous Soils. Journal of Agriculture 9 2
IEEE
[1]S. Çağlar ve V. Uygur, “Effect of Low-Molecular-Weight Organic Acid Applications on Available Phosphorus in Calcareous Soils”, Journal of Agriculture, c. 9, sy 2, Eki. 2026, doi: 10.46876/ja.2012700.
ISNAD
Çağlar, Satı - Uygur, Veli. “Effect of Low-Molecular-Weight Organic Acid Applications on Available Phosphorus in Calcareous Soils”. Journal of Agriculture 9/2 (01 Ekim 2026). https://doi.org/10.46876/ja.2012700.
JAMA
1.Çağlar S, Uygur V. Effect of Low-Molecular-Weight Organic Acid Applications on Available Phosphorus in Calcareous Soils. Journal of Agriculture. 2026;9. doi:10.46876/ja.2012700.
MLA
Çağlar, Satı, ve Veli Uygur. “Effect of Low-Molecular-Weight Organic Acid Applications on Available Phosphorus in Calcareous Soils”. Journal of Agriculture, c. 9, sy 2, Ekim 2026, doi:10.46876/ja.2012700.
Vancouver
1.Satı Çağlar, Veli Uygur. Effect of Low-Molecular-Weight Organic Acid Applications on Available Phosphorus in Calcareous Soils. Journal of Agriculture. 01 Ekim 2026;9(2). doi:10.46876/ja.2012700

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