biomaterials; calcium acetate; eggshell waste; sustainable; Computer Science (miscellaneous); Geography, Planning and Development; Renewable Energy, Sustainability and the Environment; Environmental Science (miscellaneous); Energy Engineering and Power Technology; Hardware and Architecture; Computer Networks and Communications; Management, Monitoring, Policy and Law
Abstract :
[en] Eggshell waste represents an underutilized biogenic resource, rich in calcium carbonate and organic components, whose increasing generation poses significant environmental and economic challenges. It is estimated that more than 8 million tons of eggshells are produced worldwide annually, most of which are disposed of in landfills, leading to landfill overload and increased waste management costs. In this context, the main objective of this study was to develop and compare three processing routes for converting calcium carbonate derived from eggshell waste into calcium acetate, using commercial vinegar (4–5% acetic acid) as a low-cost, sustainable acid source. The proposed routes were systematically evaluated based on processing efficiency, product characteristics, and operational simplicity. The materials obtained were characterized by X-ray fluorescence, scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDS), X-ray diffraction (XRD), Fourier-transform infrared spectroscopy (FTIR), thermogravimetric analysis (TGA/DTG), X-ray photoelectron spectroscopy (XPS), particle size analysis, and zeta potential measurements. The results indicated that the eggshells contained approximately 95.39% calcium, confirming their suitability as an efficient calcium precursor. Among the routes evaluated, the process using a spherical condenser under reflux at 90 °C showed superior performance, achieving shorter reaction times and maintaining comparable yields of membrane byproducts compared to the other methods. This approach differs from conventional routes by eliminating the need for high-purity reagents, reducing processing time, and using exclusively food-grade acetic acid, thus increasing sustainability and cost-effectiveness. Morphological, chemical, and thermal analyses confirmed the quality and stability of the synthesized calcium acetate. In general, these results demonstrate that eggshell waste can be efficiently valorized into calcium acetate through a scalable, straightforward process, thereby reducing landfill disposal and supporting circular economy strategies, with potential applications in the production of calcium-based biomaterials.
Disciplines :
Chemistry
Author, co-author :
Silva, Jasmine Keise de Oliveira ; School of Engineering, São Paulo State University (UNESP), Ilha Solteira, Brazil ; School of Engineering and Sciences, São Paulo State University (UNESP), Guaratinguetá, Brazil
Bittencourt, Carla ; Université de Mons - UMONS > Faculté des Sciences > Service de Chimie des Interactions Plasma-Surface
Simões, Alexandre Zirpoli ; School of Engineering and Sciences, São Paulo State University (UNESP), Guaratinguetá, Brazil
Alves, Ana Paula Rosifini ; School of Engineering, São Paulo State University (UNESP), Ilha Solteira, Brazil ; School of Engineering and Sciences, São Paulo State University (UNESP), Guaratinguetá, Brazil
Language :
English
Title :
Determination of the Processing Route for Obtaining Calcium Acetate from Eggshell Waste
Publication date :
06 February 2026
Journal title :
Sustainability (Switzerland)
ISSN :
2071-1050
eISSN :
2071-1050
Publisher :
Multidisciplinary Digital Publishing Institute (MDPI)
R400 - Institut de Recherche en Science et Ingénierie des Matériaux
Funders :
São Paulo Research Foundation São Paulo Research Foundation São Paulo Research Foundation National Council for Scientific and Technological Development
Funding text :
This work was supported financially by the S\u00E3o Paulo Research Foundation (FAPESP), through research grants No. 2024/04829-4, No. 2022/14790-2 (NWO) and No. 2024/11110-6 (WBI), and from the National Council for Scientific and Technological Development (CNPq), project No. 445151/2024-2.
FAO Gateway to Poultry Production and Products FAO Rome, Italy 2025
Pagonis N. Flegkas D. Itziou A. Kountouras K. Stimoniaris A. Samaras P. Karayannis V. Upcycling of eggshell waste into calcium phosphates for use in sustainable biomedical engineering applications Eng 2024 5 3540 3550 10.3390/eng5040184
Torres Gouveia M.E. Milhans C. Gezek M. Camci-Unal G. Eggshell-based unconventional biomaterials for medical applications Adv. NanoBiomed Res. 2025 5 2400120 10.1002/anbr.202570021
Kumar T.S.S. Madhumathi K. Jayasree R. Eggshell waste: A gold mine for sustainable bioceramics J. Indian Inst. Sci. 2022 102 599 620 10.1007/s41745-022-00291-3
Hembrick-Holloman V. Samuel T. Mohammed Z. Jeelani S. Rangari V.K. Ecofriendly production of bioactive tissue engineering scaffolds derived from egg- and seashells J. Mater. Res. Technol. 2020 9 13729 13739 10.1016/j.jmrt.2020.09.093
Huang K. Hou J. Gu Z. Wu J. Egg-white/eggshell-based biomimetic hybrid hydrogels for bone regeneration ACS Biomater. Sci. Eng. 2019 5 5384 5391 10.1021/acsbiomaterials.9b00990 33464059
Tavangar A. Tan B. Venkatakrishnan K. Synthesis of three-dimensional calcium carbonate nanofibrous structure from eggshell using femtosecond laser ablation J. Nanobiotechnol. 2011 9 1 10.1186/1477-3155-9-1
Torres-Mansilla A. Álvarez-Lloret P. Fernández-Penas R. D’Urso A. Baldión P.A. Oltolina F. Follenzi A. Gómez-Morales J. Hydrothermal transformation of eggshell calcium carbonate into apatite micro-nanoparticles: Cytocompatibility and osteoinductive properties Nanomaterials 2023 13 2299 10.3390/nano13162299
Habte L. Shiferaw N. Mulatu D. Thenepalli T. Chilakala R. Ahn J.W. Synthesis of nano-calcium oxide from waste eggshell by sol–gel method Sustainability 2019 11 3196 10.3390/su11113196
Adaikalam K. Hussain S. Anbu P. Rajaram A. Sivanesan I. Kim H.-S. Eco-friendly facile conversion of waste eggshells into CaO nanoparticles for environmental applications Nanomaterials 2024 14 1620 10.3390/nano14201620
Ahmed T.A. Wu L. Younes M. Hincke M. Biotechnological applications of eggshell: Recent advances Front. Bioeng. Biotechnol. 2021 9 675364 10.3389/fbioe.2021.675364 34295881
Afrrin M. Rajasekaran B. Nandhini R.S. Karthik P. Valorization of eggshell waste for sustainable food packaging: A review Food Bioprocess Technol. 2025 18 10209 10228 10.1007/s11947-025-04042-x
Nada E.A. Abu Kaddorah M.E. El Jamal M. Hamad A. Mansour F.R. Eggshell waste as a sustainable resource for nanoparticle preparation: Synthesis, characterization and applications Environ. Nanotechnol. Monit. Manag. 2025 24 101092 10.1016/j.enmm.2025.101092
Baláž M. Boldyreva E.V. Rybin D. Pavlović S. Mudrinić T. Luque R. State-of-the-art of eggshell waste in materials science: Recent advances in catalysis, pharmaceutical applications, and mechanochemistry Front. Bioeng. Biotechnol. 2021 8 612567 10.3389/fbioe.2020.612567
Heo W. Shin H. Ansari J.R. Park K. Seo J. Preparation and properties of calcium oxide and calcium peroxide from eggshell waste for enhanced antimicrobial activity Mater. Today Commun. 2024 41 110531 10.1016/j.mtcomm.2024.110531
Bhuvaneshwari V. Sonia S. Sivaganesh D. Harnessing the potency of eco-friendly calcium oxide derived from eggshells for enhanced photocatalytic activity and biocompatibility evaluation in HepG2 cell line Chem. Phys. Impact 2024 9 100699 10.1016/j.chphi.2024.100699
Strelec I. Tomičić K. Zajec M. Ostojčić M. Budžaki S. Eggshell-waste-derived calcium acetate, calcium hydrogen phosphate and corresponding eggshell membranes Appl. Sci. 2023 13 7372 10.3390/app13137372
Yao Y. Wang L. Zhang Y. Liu H. Optimization of preparation of calcium acetate from eggshell by response surface methodology Food Sci. Technol. 2022 42 e10221 10.1590/fst.114421
Menglieva S. Khozhiev S. Usmanova Z. Tukhtaev K. The technology of green synthesis of calcium acetate from quail eggshells BIO Web Conf. 2024 82 04001 10.1051/bioconf/20248204001
Ningrum R.A. Humaidi S. Sihotang S. Bonardo D. Estananto Synthesis and material characterization of calcium carbonate (CaCO3) from the waste of chicken eggshells J. Phys. Conf. Ser. 2022 2193 012009 10.1088/1742-6596/2193/1/012009
Zia J. Shringi A.K. Riaz U. Calcium oxide nanoparticles from eggshell waste: A green nanotechnological strategy for microwave-assisted environmental cleanup Clean. Chem. Eng. 2025 11 100182 10.1016/j.clce.2025.100182
Rivera E.M. Araiza M. Brostow W. Castaño V.M. Díaz-Estrada J.R. Hernández R. Rodríguez J.R. Synthesis of hydroxyapatite from eggshells Mater. Lett. 1999 41 128 134 10.1016/S0167-577X(99)00118-4
Strelec I. Ostojčić M. Brekalo M. Hajra S. Kim H.-J. Stanojev J. Maravić N. Budžaki S. Transformation of eggshell waste to egg white protein solution, calcium chloride dihydrate, and eggshell membrane powder Green Process. Synth. 2023 12 20228151 10.1515/gps-2022-8151
Torres-Mansilla A. Hincke M. Voltes A. López-Ruiz E. Baldión P.A. Marchal J.A. Álvarez-Lloret P. Gómez-Morales J. Eggshell membrane as a biomaterial for bone regeneration Polymers 2023 15 1342 10.3390/polym15061342
Honary S. Zahir F. Effect of zeta potential on the properties of nano-drug delivery systems—A review Trop. J. Pharm. Res. 2013 12 255 264 10.4314/tjpr.v12i2.19
Bhattacharjee S. DLS and zeta potential—What they are and what they are not J. Control. Release 2016 235 337 351 10.1016/j.jconrel.2016.06.017
Vo Q.C. Son G. Seon G.M. Um S.W. Choi S.H. Yang H.-C. Effect of nanoparticulate CaCO3 on the biological properties of calcium silicate cement Sci. Rep. 2025 15 478 10.1038/s41598-024-84183-9
Min K.H. Kim D.H. Kim K.H. Seo J.-H. Pack S.P. Biomimetic scaffolds of calcium-based materials for bone regeneration Biomimetics 2024 9 511 10.3390/biomimetics9090511 39329533
Li C.-Q. Liang C. Chen Z.-M. Di Y.-H. Zheng S.-L. Wei S. Sun Z.-M. Surface modification of calcium carbonate: A review of theories, methods and applications J. Cent. South Univ. 2021 28 2589 2611 10.1007/s11771-021-4795-6
May Y. Nyein O.M. Kha N.N. Comparative study on the characteristics of eggshell wastes for preparation of calcium acetate J. Myanmar Acad. Arts Sci. 2019 17 335 354
Seesanong S. Seangarun C. Boonchom B. Ohpasee N. Laohavisuti N. Boonmee W. Rungrojchaipon P. Green Ca-source of cockle shells converted to calcium acetate for environmental sustainability Heliyon 2024 10 e32153 10.1016/j.heliyon.2024.e32153 38868018
Mongkol S. Seesanong S. Boonchom B. Laohavisuti N. Boonmee W. Thompho S. Rungrojchaipon P. Simple rapid production of calcium acetate lactate from scallop shell waste for agricultural application Int. J. Mol. Sci. 2025 26 4488 10.3390/ijms26104488
Engin B. Demirtaş H. Eken M. Temperature effects on eggshells investigated by XRD, IR and ESR techniques Radiat. Phys. Chem. 2006 75 268 277 10.1016/j.radphyschem.2005.09.013
Niu S. Han K. Lu C. Sun R. Thermogravimetric analysis of the relationship among calcium magnesium acetate, calcium acetate and magnesium acetate Appl. Energy 2010 87 2237 2242 10.1016/j.apenergy.2010.01.007
Ni M. Ratner B.D. Differentiating calcium carbonate polymorphs by surface analysis techniques—An XPS and TOF-SIMS study Surf. Interface Anal. 2008 40 1356 1361 10.1002/sia.2904
Wang Q. Jiang Z. Wang Y. Chen D. Yang D. Photocatalytic properties of porous C-doped TiO2 and Ag/C-doped TiO2 nanomaterials by eggshell membrane templating J. Nanopart. Res. 2009 11 375 384 10.1007/s11051-008-9390-3
Garduño-Pineda L. Linares-Hernández I. Solache-Ríos M.J. Teutli-Sequeira A. Martínez-Miranda V. Removal of inorganic chemical species and organic matter from slaughterhouse wastewater via calcium acetate synthesized from eggshell J. Environ. Sci. Health A 2019 54 295 305 10.1080/10934529.2018.1548190 30741124
Minakshi M. Higley S. Baur C. Mitchell D.R.G. Jones R.T. Fichtner M. Calcined chicken eggshell electrode for battery and supercapacitor applications RSC Adv. 2019 9 26981 26995 10.1039/C9RA04289J
Thermo Fisher Scientific Calcium and Carbon XPS Reference Binding Energies Thermo Fisher Scientific Waltham, MA, USA Available online: https://www.thermofisher.com/th/en/home/materials-science/learning-center/periodic-table/non-metal/carbon.html (accessed on 7 November 2025)
Mudiyanselage K. Burrell A. Senanayake S. Idriss H. XPS and NEXAFS study of the reactions of acetic acid and acetaldehyde over UO2(100) thin film Surf. Sci. 2019 680 107 112 10.1016/j.susc.2018.10.017