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首页> 外文期刊>Journal of Materials Science >Conversion of waste animal bones into porous hydroxyapatite by alkaline treatment: effect of the impregnation ratio and investigation of the activation mechanism
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Conversion of waste animal bones into porous hydroxyapatite by alkaline treatment: effect of the impregnation ratio and investigation of the activation mechanism

机译:碱处理将动物废骨转化为多孔羟基磷灰石:浸渍率的影响和活化机理的研究

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摘要

Microporous biochars, mainly composed by hydroxyapatite (HAp), were prepared from animal waste bones. In this study, a three-step procedure including pre-pyrolysis, chemical treatment with NaOH, KOH and K2CO3, and pyrolysis was investigated. The effects of the activation agent and its concentration were analysed by N2 adsorption–desorption, SEM, EDX, FTIR, and XRD techniques. The activation mechanism was investigated by TG-MS. FTIR and XRD data confirm that the obtained biochars were mainly composed of HAp. K2CO3 was the most effective with porosity being increased by 30 % (up to 234 m2/g) compared to non-alkali-treated sample. New pores were generated mainly in the microporous range. Analysis of the pyrolysis gases by MS revealed that the main effect of the alkali treatment is the incorporation of OH− ions, which then react with bone matrix to generate porosity. Other gas-phase reactions, such as reverse WGS and methanation reactions, promoted by K2CO3, may be involved in the activation process. In contrast, KOH caused little modification of the HAp structure. Statistical analysis supported the relationship among the release of certain compounds during pyrolysis and the textural properties of the final material.
机译:从动物废骨中制备主要由羟基磷灰石(HAp)组成的微孔生物炭。在这项研究中,研究了三步过程,包括预热解,用NaOH,KOH和K2CO3进行化学处理以及热解。通过N2吸附-解吸,SEM,EDX,FTIR和XRD技术分析了活化剂及其浓度的影响。通过TG-MS研究其活化机理。 FTIR和XRD数据证实所获得的生物炭主要由HAp组成。与未经碱处理的样品相比,碳酸钾最有效,孔隙率增加了30%(最高234平方米/克)。新的孔主要在微孔范围内产生。 MS对热解气体的分析表明,碱处理的主要作用是掺入OH-离子,然后OH-离子与骨基质反应产生孔隙。由K2CO3促进的其他气相反应,例如反向WGS和甲烷化反应,可能与活化过程有关。相反,KOH几乎不会引起HAp结构的修饰。统计分析支持某些化合物在热解过程中的释放与最终材料的质地特性之间的关系。

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  • 来源
    《Journal of Materials Science》 |2015年第23期|7568-7582|共15页
  • 作者单位

    Department of Chemical Engineering Faculty of Pharmacy University of the Basque Country UPV/EHU">(1);

    Department of Chemical Engineering Faculty of Pharmacy University of the Basque Country UPV/EHU">(1);

    Department of Chemical Engineering Faculty of Pharmacy University of the Basque Country UPV/EHU">(1);

    Department of Chemical Engineering Faculty of Science and Technology University of the Basque Country UPV/EHU">(2);

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