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首页> 外文期刊>Dental Materials Journal >Tri-calcium phosphate (?-TCP) can be artificially synthesized by recycling dihydrate gypsum hardened
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Tri-calcium phosphate (?-TCP) can be artificially synthesized by recycling dihydrate gypsum hardened

机译:磷酸三钙(α-TCP)可通过回收硬化的二水合石膏人工合成

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Calcium phosphate is known as a major component of biological hard tissues. This study aimed to produce calcium phosphate by recycling kneaded surplus gypsum. β-dihydrate gypsum was derived from commercial dental β-hemihydrate gypsum, which was mechanically powdered and mixed with the liquid component of a commercial zinc phosphate cement. This mixture was fired at 1,200°C and evaluated by XRD analysis, thermal analysis and scanning electron microscopy (SEM). An acceptable ratio of mixing was 4 g of β-dihydrate gypsum powder to 1.5 mL of phosphoric acid liquid. XRD peaks were monotonic below 800°C, but new ?-TCP was formed by firing at 900°C or more, although TG-DTA analysis of synthetic ?-TCP suggested that some residual dihydrate gypsum remained in the sample. SEM images indicated a fused-block bone-like structure covered with phosphorus and calcium. These results suggest that production of synthetic β-TCP is possible through ecological techniques using recycled materials.
机译:磷酸钙被称为生物硬组织的主要成分。这项研究旨在通过回收捏合的多余石膏来生产磷酸钙。 β-二水合石膏衍生自商业牙科β-半水合石膏,将其机械粉化并与商业磷酸锌水泥的液体组分混合。将该混合物在1200℃下烧成并通过XRD分析,热分析和扫描电子显微镜(SEM)进行评估。混合的可接受比例为4克β-二水合石膏粉与1.5毫升磷酸液。 XRD峰在800℃以下单调,但在900℃以上焙烧形成新的α-TCP,尽管合成α-TCP的TG-DTA分析表明样品中残留了一些二水合石膏。 SEM图像显示出融合有磷和钙的块状骨样结构。这些结果表明,通过使用回收材料的生态技术可以生产合成的β-TCP。

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