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在4-氯苯酚氧化反应中使用含铁粘土提高零价铝/氧的反应活性。

Enhanced reactivity of zero-valent aluminum/O by using Fe-bearing clays in 4-chlorophenol oxidation.

作者信息

Yang Ran, Cai Jun, Yang Hu

机构信息

State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Nanjing 210023, PR China.

State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Nanjing 210023, PR China.

出版信息

Sci Total Environ. 2021 Jun 15;773:145661. doi: 10.1016/j.scitotenv.2021.145661. Epub 2021 Feb 6.

Abstract

Zero-valent aluminum (ZVAl) is a promising reductant because of its relatively low redox potential, which can efficiently activate molecular oxygen to generate reactive oxygen species. However, its long-term performance is limited by the intrinsic dense oxide layer and the passivation effect of the accumulative Al-(hydr)oxide on its surface during the reaction. In this study, four clay minerals with different compositions were mixed with ZVAl by ball milling to obtain four composites of ZVAl and clay (ZVAl-Clay), which were used to degrade a high concentration of 4-chlorophenol (4-CP) under ambient conditions. The oxidation efficiencies of different ZVAl-Clays were strongly relevant to Fe contained in the clay minerals. The Fe-free ZVAl-Clay presented poor oxidation performance, whereas the reaction efficiencies of those ZVAl composites with Fe-bearing clays exhibited varying degrees of improvement. In comparison with the original ZVAl, the highest oxidation rate increased by 23 times, the maximum increased OH production was approximately 8 times, and the corresponding mineralization efficiency improved by 38.7%. However, the levels of improved oxidation performance of various ZVAl-Clays were not positively correlated with their actual total Fe contents, and their degradation efficiencies might also be affected by other physical and/or chemical properties of different clays. The synergistic mechanism revealed by various characterizations was that electron transfer might occur from ZVAl to the structural Fe(III) of the clay through the basal plane or edge of clays triggered by ball milling. Thus, the partially produced Fe(II) on the clay surface promoted the Fenton-like reaction to decompose HO into OH for efficient oxidation of 4-CP. In short, the ZVAl composites with Fe-bearing clays deserved further exploration as potential materials for efficient degradation of organic matters in wastewater samples.

摘要

零价铝(ZVAl)是一种很有前景的还原剂,因为其氧化还原电位相对较低,能够有效激活分子氧以产生活性氧物种。然而,其长期性能受到本征致密氧化层以及反应过程中其表面累积的铝(氢)氧化物的钝化作用的限制。在本研究中,通过球磨将四种不同成分的粘土矿物与ZVAl混合,得到四种ZVAl与粘土的复合材料(ZVAl-粘土),用于在环境条件下降解高浓度的4-氯苯酚(4-CP)。不同ZVAl-粘土的氧化效率与粘土矿物中所含的铁密切相关。不含铁的ZVAl-粘土表现出较差的氧化性能,而那些与含铁粘土的ZVAl复合材料的反应效率则有不同程度的提高。与原始ZVAl相比,最高氧化速率提高了23倍,最大羟基产量增加了约8倍,相应的矿化效率提高了38.7%。然而,各种ZVAl-粘土氧化性能的提高程度与其实际总铁含量并非正相关,其降解效率也可能受到不同粘土的其他物理和/或化学性质的影响。各种表征揭示的协同机制是,通过球磨引发,电子可能从ZVAl通过粘土的基面或边缘转移到粘土的结构铁(III)上。因此,粘土表面部分生成的Fe(II)促进了类芬顿反应,将HO分解为OH以有效氧化4-CP。简而言之,含铁粘土的ZVAl复合材料作为废水样品中有机物高效降解的潜在材料值得进一步探索。

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