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Size effect in reactivity of copper nanoparticles to carbon tetrachloride degradation

机译:铜纳米颗粒对四氯化碳降解反应性的尺寸效应

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Surface area-normalized rate constants (k_(SA)) of reaction between metallic nanoparticles and reducible contaminants, such as chlorinated hydrocarbons, heavy metals, and nitrate, have been reported to be dramatically increased as compared to that of commercial metallic powder. However, k_(SA) for individual pollutants in previously published data vary by as much as 1-2 orders of magnitude and much of this variability is due to the effect of various sizes. The size dependence of the reactivity of nanoparticles is not yet fully understood; however, yielding nanoparticles with uniform size and without agglomeration during the period of reaction would demonstrate the effect of varying particle size. In this study, resin-supported zerovalent copper with average particle size of 7, 10, 18, 26, and 29, respectively, were successfully synthesized and evidenced no agglomeration during the reaction period of 10 h. The k_(SA) of copper nanoparticles (k_(n, SA)) was 110-120 times higher than that of powdered copper particles (k_(p, SA)) when the copper particle size was about 10 nm. However, for diameters of 18-29 nm, the ratio of k_(n, SA)/k_(p, SA) was around 10-20, indicating that the reactivity of small copper nanoparticles (~10nm) varies discontinu-ously. Thus, most variability in previous k_(SA) is attributed to the presence of small nanoparticles.
机译:据报道,与商业金属粉末相比,金属纳米颗粒与可还原污染物(如氯化烃,重金属和硝酸盐)之间的表面积归一化速率常数(k_(SA))显着增加。但是,先前发布的数据中单个污染物的k_(SA)相差高达1-2个数量级,并且这种可变性很大程度上是由于各种尺寸的影响所致。纳米颗粒反应性的大小依赖性尚不完全清楚。然而,在反应期间产生具有均一尺寸且无团聚的纳米颗粒将证明改变粒径的效果。在这项研究中,成功​​地合成了平均粒径分别为7、10、18、26和29的树脂负载的零价铜,并且在10 h的反应时间内没有结块。当铜粒度为约10nm时,铜纳米颗粒(k_(n,SA))的k_(SA)比粉末状铜颗粒(k_(p,SA))的k_(SA)高110-120倍。然而,对于直径为18-29 nm的k_(n,SA)/ k_(p,SA)之比约为10-20,这表明小的铜纳米颗粒(〜10nm)的反应性不连续地变化。因此,先前k_(SA)的最大可变性归因于小纳米粒子的存在。

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