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Boron nitride nanoplates supported zero-valent iron nanocomposites for enhanced decolorization of methyl orange with the assistance of ultrasonic irradiation

机译:氮化硼纳米板负载零价铁纳米复合材料,可借助超声辐射增强甲基橙的脱色

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In this work, boron nitride nanoplates (BNNPs) supported nanoscale zero-valent iron (nZVI) was prepared through facile liquid-phase chemical reduction of ferric ion by borohydride under ambient conditions in the presence of BNNPs. The nZVI@BNNPs hybrids were characterized by scanning electron microscopy, X-ray diffraction and magnetic properties measurement. The hybrid material was evaluated for decolorization of a common azo dye, methyl orange (MO), with the assistance of ultrasonic irradiation. Results exhibited that a complete decolorization of 100 mg/L MO was achieved within 6 min using nZVI@BNNPs as the active material. Compared with bare nZVI and BNNPs, nZVI@BNNPs provided a faster reaction process for MO decolorization. The kinetic rate constants of MO decolorization reached 0.8175 min(-1) under ultrasound-assisted condition due to the synergistic effect of ultrasonic irradiation. Fluorescence spectrum experiment confirmed that hydroxyl radicals could be generated in the system combined nZVI with ultrasonic irradiation, and as a result, hydroxyl radicals would contribute to the decolorization process of MO.
机译:在这项工作中,通过在环境条件下,在存在硼氢化萘的条件下,通过硼氢化物的液相液相化学还原三价铁离子,制备了负载有纳米级零价铁(nZVI)的氮化硼纳米板(BNNP)。通过扫描电子显微镜,X射线衍射和磁性能测量来表征nZVI @ BNNPs杂化物。在超声辐射的辅助下,评估了杂化材料对普通偶氮染料甲基橙(MO)的脱色。结果表明,使用nZVI @ BNNPs作为活性物质,在6分钟内可实现100 mg / L MO的完全脱色。与裸nZVI和BNNP相比,nZVI @ BNNP提供了更快的MO脱色反应过程。由于超声辐射的协同作用,在超声辅助条件下,MO脱色的动力学速率常数达到0.8175 min(-1)。荧光光谱实验证实,nZVI与超声辐照结合后的体系中会产生羟基自由基,因此羟基自由基可促进MO的脱色过程。

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