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October 15, 2025Plants0 citationsOpen Access

Development and Evaluation of a Slow-Release Occluded Fertilizer Employing Functionalized Biosolids as a Support Matrix

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RPRafael PalaciosNRNora Restrepo–SánchezRRRosember Ramírez

Key Points

  • FOMI released less than 15% of nutrients at 48 hours in soil, demonstrating significant slow-release characteristics.
  • The study found that FOMI exhibited greater water-retention capacity and cation-exchange capacity compared to FOMII and uncoated fertilizers.
  • Kinetic models indicated lower release rates for FOMI, suggesting improved nutrient availability over time.
  • Both slow-release fertilizers returned organic matter to soils, highlighting their potential for sustainable agriculture.

Abstract

In this study, a slow-release fertilizer (SRF) was obtained by occluding NPK 10–10–10 into two matrices and compared with the uncoated mineral fertilizer (F). The first matrix, FOMI, used biosolids/paper sludge at 3:1 (w/w); the second, FOMII, used biosolids/clay at 1:1 (w/w). Materials and pellets were physiochemically and microbiologically characterized. Release kinetics were evaluated in water and in soil columns packed with acid-washed sand; matrix-only controls and sand blanks confirmed negligible background N, P, and K. The uncoated mineral fertilizer (F) showed a rapid burst, whereas occlusion slowed release. FOMII reduced release relative to F, and FOMI produced the slowest, controlled profiles: kinetic fits yielded lower k values for FOMI than for FOMII and F. FOMI also exhibited higher water-retention capacity (WRC) and cation-exchange capacity (CEC), consistent with its greater organic-matter content. In soil, FOMI released less than 15% at 48 h and no more than 75% at 30 d, meeting European Committee for Standardization (CEN) SRF criteria; FOMII released faster than FOMI but slower than F, which exceeded 90% within the test period. Therefore, FOMI is a biodegradable, low-cost SRF that improves fertilizer-use efficiency while returning organic matter to agricultural soils; FOMII shows intermediate yet beneficial performance.

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Cite This Study

Palacios et al. (2025) studied this question.

synapsesocial.com/papers/68ef858cc6a308ba06355759https://doi.org/10.3390/plants14203154
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