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May 9, 2026Clean Technologies0 citationsOpen Access

Eggshell Waste Valorization for Sustainable Agriculture: Applications, Nanotechnology Advances, and Circular Bioeconomy Perspectives

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JSJuan Carlos Sainz-HernándezPRP RenganathanEPEdgar Omar Rueda Puente

Key Points

  • This review aims to explore the valorization of eggshell waste for sustainable agricultural applications and environmental remediation.
  • Critically synthesizes physicochemical properties of eggshells and membranes.
  • Examines applications in fertilizers, soil amendments, and biochar composites.
  • Identifies research priorities for advancing eggshell utilization within circular bioeconomy frameworks.
  • Finely ground eggshell powder shows beneficial effects on soil conditions and crop performance.
  • Nano-calcium carbonate and nanohydroxyapatite fertilizers improve nutrient supply and controlled release.
  • Research highlights key challenges in nanosafety, processing technologies, and regulatory aspects.

Abstract

Eggshell waste generated by the poultry processing industry represents a significant yet underutilized biogenic resource with substantial potential for sustainable agricultural and environmental applications. Globally, several million metric tons of eggshell residues are produced annually, consisting predominantly of calcium carbonate (CaCO3) in the form of calcite, along with minor quantities of organic matrices and trace minerals. These physicochemical characteristics make eggshells a promising renewable alternative to conventional mineral sources for use as fertilizers, soil amendments, and biomaterials. Recent studies have shown that finely ground eggshell powder (ESP) is an effective liming material that can regulate soil chemical conditions and improve agronomic performance under acidic soil conditions. Furthermore, eggshell-derived materials have been incorporated into composting systems, biochar composites, and nanostructured fertilizers to enhance nutrient dynamics, immobilization of contaminants, and microbial activity. Advances in nanotechnology have facilitated the synthesis of nano-calcium carbonate (NCC) and nanohydroxyapatite (nHAP) fertilizers with improved nutrient supply and controlled-release properties. However, challenges associated with nanosafety evaluation, large-scale processing technologies, regulatory harmonization, and long-term field validation remain. Therefore, this review critically synthesizes the structural, biochemical, and physicochemical properties of eggshells and eggshell membranes, examines their applications in sustainable agriculture and environmental remediation, and identifies the key research priorities required to advance eggshell valorization within circular bioeconomy strategies.

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Cite This Study

Sainz-Hernández et al. (2026) studied this question.

synapsesocial.com/papers/69fecfe9b9154b0b82876ee0https://doi.org/10.3390/cleantechnol8030069
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