膨润土酸改性时间对一氧化碳氧化反应中pd (ii) -cu (ii)催化组合物活性的影响

G. Dzhyga
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引用次数: 0

摘要

研究了膨润土酸改性时间对其理化参数和结构参数的影响,以及对膨润土锚定钯铜配合物在低温一氧化碳氧化与空气氧反应中的催化性能的影响。对于所有酸改性膨润土样品,h - bent -τ (τ = 0.5, 1.0, 3.0, 4.0和6.0 h),与天然膨润土N-Bent相比,蒙脱土样品的膨润土相组成和x射线光谱参数都有一定的变化规律,无论接触时间如何,τ,蒙脱土的晶体结构都没有改变,但其铝硅酸盐层在膨润土酸改性样品和Pd(II)-Cu(II)/ h - bent -τ组成中都收缩。酸处理后,表征Mont相Al-Al-OH、Al-Fe 3+ -OH、Si-O-Si和Si-O-Al结构基团的IR波段数量和位置没有变化,但除Si-O-Si外,它们的强度降低,表明Al 3+和Fe 3+阳离子丢失。钯铜配合物不仅可以锚定在Mont结构基团上,还可以锚定在石英、非晶二氧化硅和方解石的表面。研究发现,膨润土样品的物理化学和结构参数的变化导致Pd(II)- cu (II)/S -组分(S -为N-Bent或1H-Bent-τ)在一氧化碳氧化与空气氧反应中的催化活性发生变化。以1Н-Бент-0.5水溶液悬浮液的最小pH值为表征的组分表现出最大的催化活性:CO转化率为78%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EFFECT OF DURATION OF THE BENTONITE ACID MODIFICATION ON THE ACTIVITY OF PD(II)-CU(II) CATALYTIC COMPOSITIONS IN THE REACTION OF CARBON MONOXIDE OXIDATION
The effect of duration of the bentonite acid modification on its physicochemical and structural parameters and also on the catalytic properties of bentonite anchored palladium-copper complexes in the reaction of low-temperature carbon monoxide oxidation with air oxygen has been studied. For all acid modified bentonite samples, 1H-Bent-τ (τ = 0.5, 1.0, 3.0, 4.0, and 6.0 h), some regularities of changes as compared with natural bentonite, N-Bent, in the bentonite phase composition and X-ray spectral parameters of montmorillonite that is a samples, regardless a contact time, τ, the montmorillonite crystalline structure does not change however its aluminosilicate layers constrict for both bentonite acid modified samples and Pd(II)-Cu(II)/1H-Bent-τ compositions. After acid treatment, the number and positions of IR bands characterizing structural groups Al-Al-OH, Al-Fe 3+ -OH, Si-O-Si, and Si-O-Al of Mont phase do not change however their intensities, except for Si-O-Si, decrease pointing to the loss of Al 3+ and Fe 3+ cations. Palladium-copper complexes can be anchored not only on Mont structural groups but also on surfaces of quarts, amorphous SiO 2 , and calcite if any. It has been found that the changes in physicochemical and structural parameters of the bentonite samples result in alterations in the catalytic activity of Pd(II)-Cu(II)/S— compositions (S— is N-Bent or 1H-Bent-τ) in the reaction of carbon monoxide oxidation with air oxygen. The composition based on 1Н-Бент-0.5 characterizing by the minimum pH value of its aqueous suspension shows the maximum catalytic activity: CO conversion is 78 %.
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