首页> 外文期刊>Journal of Colloid and Interface Science >Magnetic porous ferrospinel NiFe _2O _4: A novel ozonation catalyst with strong catalytic property for degradation of di-n-butyl phthalate and convenient separation from water
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Magnetic porous ferrospinel NiFe _2O _4: A novel ozonation catalyst with strong catalytic property for degradation of di-n-butyl phthalate and convenient separation from water

机译:磁性多孔亚铁氧松NiFe _2O _4:一种新型的臭氧化催化剂,具有强的催化性能,可降解邻苯二甲酸二正丁酯,且易于与水分离

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摘要

Magnetic porous ferrospinel NiFe _2O _4 prepared by a sol-gel method is introduced as a novel catalyst in the ozonation of refractory di-n-butyl phthalate (DBP), which is scarcely adsorbed on the catalyst surface under the investigated conditions in water. Such ferrospinel showed remarkable and stable catalytic ozonation acceleration on the degradation of DBP compared with the case of ozonation alone at pH 7.7. The catalytic ozonation process was pH dependent, and an uncharged surface was more active than a charged surface. The results revealed that NiFe _2O _4 catalytic ozonation followed a radical-type mechanism. The experiment related to the influence of phosphate and FTIR results showed that the surface hydroxyl groups acted as the main active sites in promoting hydroxyl radical (OH) generation. Concerning these finds and XPS results, we proposed that Ni ~(2+) transferred electron from the surface to induce ozone decomposition in the catalytic process, the oxidation of lattice oxygen played an essential role in enhancing the reversion of Ni ~(3+) to Ni ~(2+), and the promotion of OH reaction was a combined balance action of Ni ~(2+)/Ni ~(3+) and O ~(2-)/O _2.
机译:将溶胶-凝胶法制备的磁性多孔铁氧体铁镍铁NiFe _2O _4作为难降解邻苯二甲酸二正丁酯(DBP)的臭氧化反应中的新型催化剂,在研究的条件下,该难降解邻苯二甲酸二正丁酯几乎不吸附在催化剂表面。与仅在pH 7.7进行臭氧氧化的情况相比,此类铁氧松对DBP的降解表现出显着且稳定的催化臭氧氧化加速作用。催化臭氧化过程取决于pH,并且不带电的表面比带电的表面更具活性。结果表明,NiFe _2O _4催化臭氧化反应遵循自由基型机理。有关磷酸盐和FTIR结果影响的实验表明,表面羟基是促进羟基自由基( OH)生成的主要活性位。针对这些发现和XPS结果,我们提出Ni〜(2+)从表面转移电子,在催化过程中诱导臭氧分解,晶格氧的氧化在增强Ni〜(3+)的还原中起着重要作用。到Ni〜(2+),而 OH反应的促进是Ni〜(2 +)/ Ni〜(3+)和O〜(2-)/ O _2的平衡平衡作用。

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