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Iron Oxide/Phosphatic Materials Composites with Potential Applications in Environmental Protection

机译:氧化铁/磷酸盐材料复合材料具有潜在的环保应用

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摘要

Currently, hydroxyapatite is probably the most researched material, due to its multiple applications in medical, environmental, or cultural heritage, when the classical structure is modified and calcium is displaced partially or totally with different metals. By changing the classical structure of the hydroxyapatite, new morphologies can be obtained, thus allowing final applications different from those of the initial hydroxyapatite material. However, their properties should be tuned for the desired application. In this context, the present paper describes the synthesis and characterization (through energy-dispersive X-ray fluorescence, X-ray diffraction, FTIR, thermal analysis, and transmission electron microscopy) of iron oxide/manganese-containing phosphatic phase composite materials, developed in order to obtain the enhancement of final environmental applications (photodegradation of dyes, adsorption of organic compounds). The composite material was tested for photocatalytic properties, after embedding in hydrosoluble film-forming materials. Photocatalytic coatings show different activity during the photodecomposition of Methylene Blue, used as a model of a contaminant. The photocatalytic activities of the materials were discussed in relationship with both the phosphatic materials and the magnetic components. Finally, other environmental applications were studied for the developed materials (adsorption of non-steroidal anti-inflammatory drugs—paracetamol and ibuprofen), revealing an enhancement of the adsorption capacity of the phosphatic material upon addition of the magnetic phase.
机译:目前,羟基磷灰石可能是最多研究的材料,因为它在医学,环境或文化遗产中的多种应用,当经典结构被修改并且钙部分或完全具有不同的金属。通过改变羟基磷灰石的经典结构,可以获得新的形态,从而允许初始羟基磷灰石材料的最终应用。但是,应为所需的应用调整它们的属性。在这种情况下,本文描述了开发的氧化铁/锰磷酸相复合材料的合成和表征(通过能量分散X射线荧光,X射线衍射,FTIR,热分析和透射电子显微镜)为了获得最终环境应用的增强(染料的光降解,有机化合物的吸附)。在嵌入水溶性成膜材料后,测试复合材料以进行光催化性质。光催化涂层在亚甲蓝的光分解过程中显示出不同的活性,用作污染物的模型。材料的光催化活性与磷酸盐材料和磁性部件的关系讨论。最后,研究了发达材料的其他环境应用(非甾体抗炎药 - 扑热氨基酚和布芬醇和布洛芬的吸附),揭示了加入磁相时磷酸盐材料的吸附能力的提高。

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