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March 5, 20260 citationsOpen Access

Effects of Different Fertilizer Regimes and Irrigation Water Qualities on Soil Fertility under Lettuce Production

TLThomaz Figueiredo LoboUniversidade Estadual Paulista (Unesp)HFHélio Grassi FilhoUniversity of ZululandJBJoão de Andrade BonettiFundação de Amparo à Pesquisa do Estado de São Paulo

Key Points

  • To assess the impact of organic compost and wastewater irrigation on soil fertility during lettuce cultivation.
  • Conducted a greenhouse experiment with a completely randomized split-plot design.
  • Used six nitrogen fertilization treatments (organic and synthetic) combined with freshwater or wastewater irrigation.
  • Five replicates for each treatment to ensure reliability of results.
  • The highest compost rate (1.08 g N) significantly improved soil fertility indicators such as pH and nutrient availability.
  • Organic compost treatments increased soil organic matter and dissolved organic carbon contents.
  • Combined use of organic and synthetic fertilizers reduced soil acidity and enhanced lettuce biomass yield.

Abstract

Purpose: This study aimed to evaluate the effect of organic compost as a substitute for synthetic nitrogen (N) and the use of wastewater irrigation on lettuce cultivation by assessing changes in key soil fertility parameters. Methods: A greenhouse experiment was conducted at the Soil Science Department of the School of Agricultural Sciences in Botucatu, Brazil (22°50′S, 48°22′W), on a medium-textured Rhodic Hapludox. The experimental design was completely randomized in a split-plot arrangement, with six N fertilization treatments (organic and synthetic) combined with either wastewater or freshwater irrigation, and five replicates. The N treatments were as follows: T1 – no N; T2 – 0.54 g N applied as urea, split at 7, 14, and 28 days after transplanting; T3 – 0.27 g N from organic compost and 0.27 g N from urea, split at 7, 14, and 28 days after transplanting; T4 – 0.54 g N from organic compost; T5 – 0.81 g N from organic compost; T6 – 1.08 g N from organic compost. Results: The highest compost rate (1.08 g N, T6) significantly improved soil fertility by increasing pH, cation exchange capacity, base saturation, and the availability of macro- and micronutrients, under both freshwater and wastewater irrigation. These treatments also enhanced soil organic matter and dissolved organic carbon contents, which were positively correlated with nutrient availability. Conclusion: The T6 treatment also produced the highest green biomass yield of lettuce compared to the exclusive use of urea, highlighting organic compost as a sustainable alternative for N fertilization. Highlights · Organic compost improved soil fertility, nutrient availability, and lettuce yield. · Wastewater irrigation enhanced nutrient recycling and crop productivity. · Combined organic and chemical fertilization reduced soil acidity and Al³⁺ toxicity. · Long-term compost uses increased soil organic carbon and nutrient correlations. · Organic compost offers a sustainable alternative to synthetic nitrogen fertilizers.

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Cite This Study

Lobo et al. (2026) studied this question.

synapsesocial.com/papers/69a91db5d6127c7a504c0d20https://doi.org/10.57647/ijrowa.2026.18747
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