"Studies on Processing and Characterization of Hydroxyapatite Biomaterials from Different Bio Wastes"
written by Sudip Mondal, Biswanath Mondal, Apurba Dey, Sudit S. Mukhopadhyay,
published by Journal of Minerals and Materials Characterization and Engineering, Vol.11 No.1, 2012
has been cited by the following article(s):
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[2] State of Art on Solvent Casting Particulate Leaching Method for Orthopedic ScaffoldsFabrication
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[4] A comparative study on physicochemical properties of hydroxyapatite powders derived from natural and synthetic sources
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[5] Investigation of Hydroxyapatite, Bioglass and Silver-Doped Bioactive Glass: Characterization, Mechanical and Chemical Properties
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[6] Progress in Hydroxyapatite-Starch Based Sustainable Biomaterials for Biomedical Bone Substitution Applications
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[7] Characterization and Utilization of Calcium Oxide (CaO) Thermally Decomposed from Fish Bones as a Catalyst in the Production of Biodiesel from Waste Cooking Oil
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[8] The effect of additives on the properties of HAp-Al2O3nano-composite powders
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[9] Obtención y caracterización de hidroxiapatita dopada con nanopartículas de ZnO con potenciales aplicaciones biomédicas
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[10] Behavior of Ti/HA in Saliva at Different Temperatures as Restorative Materials
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[11] Tailoring the adsorption behavior of bone char for heavy metal removal from aqueous solution
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[12] Natural origin hydroxyapatite scaffold as potential bone tissue engineering substitute
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[13] 以魚鱗為原料合成氫氧基磷灰石多孔材料應用於生醫領域及重金屬吸附功能之研究
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[14] Synthesis and Characterization of Hydroxyapatite Using Egg-Shell
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[15] Assessment of naproxen adsorption on bone char in aqueous solutions using batch and fixed-bed processes
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[16] Micro-Scratch Based Tribological Characterization of Hydroxyapatite (HAp) Fabricated through Fish Scales
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[17] Formation of fireside deposits in feather gasification and heat recovery systems—An industrial case study
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[18] The Synergistic Effect of Anionic Surfactant on Adsorption Enhancement of the Carotenoids Extract using Mesoporous Hydroxyapatite Nanoparticles
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[19] Characterization of derived natural hydroxyapatite (HAp) obtained from different types of tilapia fish bones and scales
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[20] Synthesis and Characterization of Synthetic and Natural Nano Hydroxyapatite Composites Containing Poloxamer Coated Demineralized Bone Matrix as Bone Graft Material: A Comparative Study
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[21] Removal of Hexavalent Chromium using Chitosan Prepared from the Shrimp and Crab Shells
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[22] Perancah Berpori Hidroksiapatit Dan Β-Tricalcium Phosphate Dari Limbah Cangkang Telur Ayam Dengan Porogen Alginat
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[23] Preparations of Hydroxyapatite from Tilapia Scales
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[24] Preparation and Characterization of Biological Hydroxyapatite (HAp) Obtained from Tilapia Fish Bone
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[25] Development of a Natural Calcium Phosphate Biomaterial Using Horse Bones
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[26] Preparation of Chitosan Coated Magnetic Hydroxyapatite Nanoparticles and Application for Adsorption of Reactive Blue 19 and Ni< sup> 2
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[27] Effect of sintering on the microstructural and mechanical properties of meleagris gallopova hydroxyapatite
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[28] Characterization and annealing performance of calcium phosphate nanoparticles synthesized by co-precipitation method
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[29] Preparation of Chitosan Coated Magnetic Hydroxyapatite Nanoparticles and Application for Adsorption of Reactive Blue 19 and Ni 2
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[30] Synthesis and sintering of hydroxyapatite derived from eggshells as a calcium precursor
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[31] Development and Characterization of Horse Bone-derived Natural Calcium Phosphate Powders
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[32] Characterization of Hydroxyapatite Nanoparticles from Fish Scale Waste and Its Adsorption of Carotenoids
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[33] Orientador: Prof. Dr. Rasiah Ladchumananandasivam
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[34] Structural and Composition of Natural Hydroxyapatite (HA) at Different Sintering Temperatures
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[35] MATERIAL BIOKERAMIK BERBASIS HIDROKSIAPATIT
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[36] Material Biokeramik Berbasis Hidroksiapatit Tulang Ikan Tuna
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[37] Effect of Magnesium on the Mechanical and Bioactive Properties of Biphasic Calcium Phosphate
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[38] Model for Assessment Evaluation of Methane Gas Yield Based on Hydraulic Retention Time during Fruit Wastes Biodigestion
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