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February 5, 20260 citations

A mini review of modified lignite-based slow-release fertilizer coated by polymer

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SSS. SilvianaHIHassya Marella IstantoMHMaylani Hapsari

Key Points

  • This review aims to investigate the effectiveness of lignite-based slow-release fertilizers coated with biodegradable polymers in improving nutrient release efficiency.
  • Reviewed existing literature on lignite as a carrier for slow-release fertilizers.
  • Analyzed performance of lignite mixed with biodegradable polymers like PVA for nutrient retention.
  • Evaluated results of field studies comparing biochar-polymer matrices against conventional fertilizers.
  • Biochar-PVA composites retained over 80% nitrogen after 30 days.
  • Paraffin-lignosulfonate coatings reduced nitrogen release to 28% within 24 hours.
  • CTAB-templated mesoporous silica extended nutrient release up to 45 days, retaining 85% nitrogen.
  • Field studies showed a 72% reduction in ammonia volatilization and a 32% increase in maize yields.

Abstract

Slow-release fertilizers (SRFs) offer a sustainable solution to improve nutrient efficiency and reduce environmental losses. This review focuses on lignite, a low-rank coal with high porosity, as a carrier for SRFs. When combined with biodegradable polymers like polyvinyl alcohol (PVA), lignite-based SRFs exhibit enhanced nutrient retention and controlled release. Biochar–PVA composites retained over 80% nitrogen after 30 days, while paraffin–lignosulfonate coatings reduced nitrogen release to 28% in 24 hours. CTAB-templated mesoporous silica extended nutrient release up to 45 days and retained 85% nitrogen. Field studies showed 72% less ammonia volatilization and 32% higher maize yields using biochar–polymer matrices. PVA also provides water retention up to 7.5 g/g with a release period of 18–30 days. This novelty departs from conventional polymer- based SRFs by integrating low-rank coal with inherent humic substances, CTAB for controlled pore structure, and PVA as an affordable crosslinker, resulting in improved nutrient release efficiency and positioning lignite– polymer SRFs as a sustainable, eco-friendly solution for modern agriculture.

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Cite This Study

Silviana et al. (2025) studied this question.

synapsesocial.com/papers/698433c8f1d9ada3c1fb12b6https://doi.org/10.1051/e3sconf/202565002053/pdf
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