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首页> 外文期刊>Boletin de la Sociedad Espanola de Ceramica y Vidrio >Study of the sintering process of zeolites ZSM-5 with other bioceramic compounds. Conformation through the freeze casting process for bone tissue regeneration samples
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Study of the sintering process of zeolites ZSM-5 with other bioceramic compounds. Conformation through the freeze casting process for bone tissue regeneration samples

机译:沸石ZSM-5与其他生物陶瓷化合物的烧结过程研究。 通过冷冻铸造方法构造骨组织再生样品

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摘要

Zeolites are aluminosilicates widely known at a scientific and industrial level because of the great specific surface area they present. Thus, zeolites can be used to storage inside of them different compounds. In this way, zeolites could be a sustained deliver biomaterial of drugs or other molecules that could promote the tissue regeneration as, for example, bone tissue. Although, as any other ceramic compound, zeolites need to be sintered to be conformed as a solid material. This thermal process provokes changes in their inner structure and also modifies their specific surface area. In order to be able to conform this material as a solid sample and, at the same time, keep its high values of specific surface area, this study proposes to mix zeolites with other bioceramic compounds that also present bone tissue regeneration properties as bioactive glass 1393 (BG 1393) and biphasic calcium phosphates, formed by 60% of hydroxyapatite and 40% of beta tricalcium phosphate (60%/40% HA/13-TCP). (C) 2018 SECV. Published by Elsevier Espana, S.L.U.
机译:沸石是铝硅酸盐,在科学和工业水平上广为人知,因为它们存在的巨大表面积。因此,沸石可用于储存它们的不同化合物。以这种方式,沸石可以是可持续递送药物或其他可以促进组织再生的分子的生物材料,例如骨组织。尽管作为任何其他陶瓷化合物,但需要烧结沸石以符合固体材料。该热过程引起其内部结构的变化,并改变其特定的表面积。为了能够以固体样品符合该材料,同时保持其高度的特异性表面积,该研究提出将沸石与其他生物化合物混合,该化合物还将骨组织再生性能作为生物活性玻璃1393呈现骨组织再生性能(BG1393)和双相磷酸钙,由60%的羟基磷灰石形成,40%的β-磷酸钙(60%/ 40%HA / 13-TCP)。 (c)2018 SECV。 elsevier espana发布,s.l.u。

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