首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >Effect of Acid, Alkali and Alkali-Acid Treatment on Physicochemical and Bioactive Properties of Hydroxyapatite Derived from Catla catla Fish Scales
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Effect of Acid, Alkali and Alkali-Acid Treatment on Physicochemical and Bioactive Properties of Hydroxyapatite Derived from Catla catla Fish Scales

机译:酸,碱和碱酸处理对霉菌磷达磷灰石物理化学和生物活性特性的影响

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摘要

In the present study, scales of Catla catla fish are treated using acid, alkali and alkali-acid followed by calcination at 1000 degrees C to produce hydroxyapatite (HAp). The aim of the work is to investigate the effect of the three pretreatment processes on the physicochemical and bioactive properties of the synthesized HAp. The confirmation tests for the formation of HAp in the calcined powders are conducted using FTIR and XRD analysis. TGA is carried out on the synthesized HAp to investigate the thermal stability and phase changes which indicates that the HAp is thermally stable at 800 degrees C with a maximum weight loss of 5.5%. Surface morphology of the synthesized powder is investigated by SEM analysis equipped with EDX to study its chemical composition. SEM-EDX analysis indicates highly porous morphology of HAp with fairly accurate Ca/P ratio to that of natural bone HAp. TEM analysis is performed to observe the morphology of the crystal and to determine the particle sizes of the synthesized HAp. The micrographs reveal formation of polycrystalline HAp particles having particle size in the range of 320-385 nm. Bioactivity test is performed on the extracted HAp which confirms the bioactive nature of all the pretreated HAp. The study reveals that acid-treated fish scale-derived HAp shows improved physicochemical and bioactive properties compared to the other two processes. The developed HAp may be a potential material in the field of biomedical engineering.
机译:在本研究中,使用酸,碱和碱酸,然后在1000℃下进行煅烧来处理Catla Catla鱼的鳞片以产生羟基磷灰石(Hap)。该工作的目的是探讨三种预处理过程对合成HAP的物理化学和生物活性性质的影响。使用FTIR和XRD分析进行煅烧粉末中形成HAP的确认试验。 TGA在合成的HAP上进行,以研究热稳定性和相变,表明HAP在800℃下热稳定,最大减肥为5.5%。通过SEM分析研究了合成粉末的表面形态,eDX研究其化学成分。 SEM-EDX分析表明了HAP的高度多孔形态,具有相当准确的CA / P比与天然骨HAP的比例。进行TEM分析以观察晶体的形态并确定合成HAP的粒径。显微照片揭示了在320-385nm的范围内具有粒度的多晶Hap颗粒的形成。对提取的HAP进行生物活性试验,其证实所有预处理的HAP的生物活性性质。该研究表明,与其他两种方法相比,酸处理的鱼鳞衍生的Hap显示出改善的物理化学和生物活性特性。开发的HAP可以是生物医学工程领域的潜在材料。

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