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Homogeneously Dispersed Zerovalent Iron Nanoparticles Supported on Hydrochar-Derived Porous Carbon: Simple, in Situ Synthesis and Use for Dechlorination of PCBs

机译:烃类衍生的多孔碳上负载的均相分散的零价铁纳米粒子:简单,原位合成和用于PCB的脱氯

摘要

Herein, we have developed a simple and effective strategy for in situ preparation of nanoscale zerovalent iron (NZVI) supported on porous carbon (PC) using renewable hydrochar as the carbon precursor. Physicochemical properties of the resultant NZVI/PC composites were characterized by XRD, SEM-EDS, TEM, and BET, and the effectiveness of these composites was evaluated for the remediation of PCB-contaminated water. Results showed that the iron ions were uniformly dispersed within the hydrochar matrix and serve as an activation agent for the hydrochar during a subsequent pyrolysis process. The iron is reduced in situ to NZVI with diameters of 8.5-10 nm, without requiring an additional reducing agent. At temperatures of 600-800 degrees C, the well-dispersed NZVI catalyzes the transformation from amorphous carbon to graphitic carbon. The NZVI/PC composite prepared at 800 degrees C exhibited high efficiency for adsorption and dechlorination of PCBs in aqueous solution. This is attributed to the composites' high surface area, uniformly dispersed nanoscale iron, high degrees of graphitic porous carbon, and substantial amount of mesopores. The present study offers a simple and sustainable approach for the preparation of prospective NZVI/PC with high stability and reactivity from renewable resources.
机译:在这里,我们已经开发了一种简单有效的策略,以可再生水碳为碳前体,原位制备多孔碳(PC)上负载的纳米级零价铁(NZVI)。通过XRD,SEM-EDS,TEM和BET对所得NZVI / PC复合材料的理化性质进行了表征,并评估了这些复合材料对PCB污染水的修复效果。结果表明,铁离子均匀地分散在烃的基质中,并在随后的热解过程中充当了烃的活化剂。将铁原位还原成直径为8.5-10 nm的NZVI,而无需其他还原剂。在600-800摄氏度的温度下,分散良好的NZVI催化从无定形碳到石墨碳的转变。在800摄氏度下制备的NZVI / PC复合材料对水溶液中PCBs的吸附和脱氯表现出很高的效率。这归因于复合材料的高表面积,均匀分散的纳米级铁,高程度的石墨多孔碳和大量的中孔。本研究为制备具有高稳定性和可再生资源反应性的预期NZVI / PC提供了一种简单而可持续的方法。

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