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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Influence of Aluminum Substitution on the Reactivity of Magnetite Nanoparticles
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Influence of Aluminum Substitution on the Reactivity of Magnetite Nanoparticles

机译:铝取代对磁铁矿纳米颗粒反应性的影响

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Magnetite is an iron oxide that commonly forms in soils under reducing conditions. It is an important material in natural and engineered remediation systems because it can affect the reductive degradation of environmental toxins such as halogenated hydrocarbons. To examine the influence of redox-inactive dopants and particle size on the reactivity of magnetite nanoparticles, samples with varying size and amounts of aluminum cation substitution (0-8.07 mol %) were synthesized. These materials were characterized, and their reactivity was examined using the organic molecules benzoquinone and carbon tetrachloride. Activation energies and frequency factors for the reaction of magnetite with benzoquinone were determined from a series of variable temperature kinetic studies. The ratio of products formed during the degradation of carbon tetrachloride was also studied to assess the influence of aluminum doping on the mechanism of reaction. The activation energy and frequency factor both initially decreased with increasing aluminum substitution, then increased as the aluminum content increased from 2.14% to 8.07%. Overall, the reactivity of magnetite nanoparticles decreased as a function of aluminum substitution in both systems, while the ratio of products resulting from the reaction with carbon tetrachloride seemed to be unaffected.
机译:磁铁矿是一种氧化铁,通常在还原条件下在土壤中形成。它是天然和工程修复系统中的重要材料,因为它会影响环境毒素(如卤代烃)的还原降解。为了检验氧化还原惰性掺杂剂和粒径对磁铁矿纳米颗粒反应性的影响,合成了尺寸和铝阳离子取代量(0-8.07 mol%)不同的样品。对这些材料进行了表征,并使用有机分子苯醌和四氯化碳检查了它们的反应性。从一系列可变温度动力学研究中确定了磁铁矿与苯醌反应的活化能和频率因子。还研究了四氯化碳降解过程中形成的产物的比例,以评估铝掺杂对反应机理的影响。活化能和频率因数都开始随着铝取代量的增加而降低,然后随着铝含量从2.14%增加到8.07%而增加。总体而言,在两个系统中,磁铁矿纳米颗粒的反应性均随着铝取代的作用而降低,而与四氯化碳反应生成的产物的比例似乎并未受到影响。

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