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Preparation of Carbonate Apatite Monolith by Treatment of the Set Gypsum Containing Calcite in Trisodium Phosphate Solution

机译:通过治疗磷酸钠在磷酸氢钠溶液中含有石膏的制备

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Carbonate apatite is expected as a bone substitute with an excellent resorbability, because of its similarity in composition of the hard tissue. In this study, set gypsum containing calcite at various ratios were treated in trisodium phosphate solution at 100°C for 1day. Diametral tensile test, X ray diffraction, infrared absorption spectroscopy and scanning electron microscopic observation were carried out to characterize the carbonate apatite formed. DTS of the set specimens before the treatment decreased from 7.3 MPa to 0.6 MPa with the amount of calcite content up to 90%. On the other hand, DTS after the treatment was between 1.3 MPa and 3.9 MPa depending on the calcite content. DTS showed a decrease after the treatment at lower calcite content and did an increase at higher calcite content. Results of X-ray diffraction analysis showed gypsum disappeared and calcite always remained after the treatment in both of the solutions. With 0.5 mol/L Na{sub}3PO{sub}4 solution, a main product was II-CaSO{sub}4 in the specimens of lower calcite content (<40%) and apatite over 60% of calcite. With 1 mol/L Na{sub}3PO{sub}4 solution, a main product was apatite irrespective of calcite content. An a-axis in hexagonal apatite crystal decreased (9.314 and 9.329A) and the c-axis increased (6.908 and 6.917A). From the values of the lattice parameter, it was estimated that the synthesized carbonate apatite contain about 15-20 wt% of CO{sub}3{sup}(2-) ion. FT-IR spectrum showed the absorption peaks around 1450 and 1410cm{sup}(-1) in the specimen converted into apatite and confirmed the formation of B-type carbonate apatite in which CO{sub}3{sup}(2-) ion substitutes for PO{sub}4{sup}(3-) ion. It was concluded that the hydrothermal treatment of a set gypsum containing calcite in Na{sub}3PO{sub}4 gave carbonate apatite monolith, although calcite remained in part.
机译:由于其在硬组织的组成中,预期碳酸盐磷灰石预期为具有优异的可再吸收性的骨代替。在该研究中,将各种比率的含石膏在磷酸锶溶液中在100℃下处理1天。进行径向拉伸试验,X射线衍射,红外吸收光谱和扫描电子显微镜观察,以表征形成的碳酸盐磷灰石。套装试样的DTS在治疗前从7.3MPa降至0.6MPa,方便含量高达90%。另一方面,根据方解石含量,治疗后的DTS在1.3MPa和3.9MPa之间。 DTS在较低的方解石含量下治疗后表现出降低,并且在更高的方解石含量下增加。 X射线衍射分析结果显示石膏消失,方解石在两种溶液中治疗后总是保持依赖。用0.5mol / L Na {sub} 3po {sub} 4溶液,主要产物是较低的方解石含量(<40%)和磷灰石的磷灰石含量标本中的II-CASO {Sub} 4。用1mol / l Na {sub} 3po {sub} 4解决方案,无论方解石含量如何都是磷灰石。六角形磷灰石晶体中的A轴减少(9.314和9.329A),C轴增加(6.908和6.917A)。从晶格参数的值,估计合成的碳酸盐磷灰石含有约15-20wt%的CO {sub} 3 {sup}(2-)离子。 FT-IR光谱显示在试样中的1450和1410cm {sup}( - 1)中的吸收峰,并在转化为磷灰石中并确认了B型碳酸磷酸酯的形成,其中Co {sub} 3 {sup}(2-)离子替换PO {sub} 4 {sup}(3-)离子。结论是,在Na {亚} 3PO {} 4中含有方解石的含有石膏的水热处理,虽然方解石保持部分。

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