Synthesis and properties of bio-waste-based hydroxyapatite via hydrothermal processSynthese und Eigenschaften von Hydroxylapatit auf Bioabfallbasis uber einen hydrothermalen Prozess

MATERIALWISSENSCHAFT UND WERKSTOFFTECHNIK(2020)

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Abstract
In this study, a facile hydrothermal method is applied to produce hydroxyapatite (HA) particles using egg shells as calcium precursors and fruit waste extracts (banana peel) as biomolecular templates at 150 degrees C for a reaction time period of 12 hours (h) and 24 hours. The sintering of the green samples of hydroxyapatite were conducted at 1250 degrees C in air for 2 h. The results showed that pectin extracted from banana peel extracts assisted in regulating crystal growth to obtain homogeneous hydroxyapatite powder, with higher purity observed for 24 h hydrothermal reaction time. Fourier-transform infrared spectroscopy (FTIR) spectra revealed the presences of phosphate (PO43-) and hydroxyl (OH-) groups in the powders. A relative density of 89.6 % was achieved for sintered hydroxyapatite compacts produced via hydrothermal method for 24 h. The sintered body was characterized by having high Vickers hardness of 5.35 GPa and good fracture toughness of 1.23 MPa root m, suitable for biomedical application.
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Key words
Hydroxyapatite,bio-waste,bio-ceramics,hydrothermal,mechanical properties
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