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Activated Carbon-Fly Ash-Nanometal Oxide Composite Materials: Preparation, Characterization, and Tributyltin Removal Efficiency

机译:活性炭 - 飞氨基氧化氨基氧化物复合材料:制备,表征和Tributyltin去除效率

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摘要

The physicochemical properties, nature, and morphology of composite materials involving activated carbon, fly ash, nFe3O4, nSiO2, and nZnO were investigated and compared. Nature and morphology characterizations were carried out by means of scanning electron and transmission electron microscopy, X-ray diffraction, and Fourier transform infrared spectroscopy. Other physicochemical characterizations undertaken were CNH analysis, ash content, pH, point of zero charge, and surface area and porosity determination by BET. Experimental results obtained revealed that activated carbon, nSiO2, activated carbon-fly ash, activated carbon-fly ash-nFe3O4, activated carbon-fly ash-nSiO2, and activated carbon-fly ash-nZnO composite materials exhibited net negative charge on their surfaces while fly ash, nFe3O4, and nZnO possessed net positive charge on their surfaces. Relatively higher removal efficiency (>99%) of TBT was obtained for all the composite materials compared to their respective precursors except for activated carbon. These composite materials therefore offer great potential for the remediation of TBT in wastewaters.
机译:研究了涉及活性炭,飞灰,NFE3O4,NSIO2和NZNO的复合材料的物理化学性质,性质和形态。通过扫描电子和透射电子显微镜,X射线衍射和傅里叶变换红外光谱进行性质和形貌表征。所进行的其他物理化学特性是CNH分析,灰分含量,pH,零充电点,表面区域和孔隙率测定。获得的实验结果显示,活性炭,NSIO2,活性炭 - 粉煤灰,活性炭 - 飞灰-NFE3O4,活性炭 - 飞灰-NIO2和活性炭 - 飞灰-NZNO复合材料在其表面上表现出净负电荷飞灰,NFE3O4和NZNO在其表面上具有净正电荷。除了活性炭之外,对于所有复合材料,可以获得相对较高的去除效率(> 99%)TBT,除了活性炭外。因此,这些复合材料为废水器中的TBT修复提供了极大的潜力。

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