SYNERGETIC EFFECTS OF PALLADIUM(II) AND COPPER(II) COMPOUNDS FIXED ON MODIFIED PHLOGOPITE IN THE REACTION WITH SULFUR DIOXIDE

T. O. Kiose, A. P. Nazar, T. L. Rakyts’ka
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Abstract

Palladium(II) and cuprum(II) compounds are the basic components of the Wacker-type heterogeneous catalyst for the low-temperature oxidation of carbon monoxide with oxygen. Al2O3, activated carbon and carbon fiber materials are most commonly used as a carrier. In search of new potential natural media, layered aluminosilicate – phlogopite as part of natural phlogopite concentrate was investigated and it was proved that copper-palladium catalysts are formed on acid-modified samples of phlogopite, which provide a high degree of conversion of carbon monoxide, which meets the sanitary and chemical norm of CO in the working area, namely CKCO ≤ 20 mg/m3. Regardless of the nature of the carrier, it was found that the catalytic effect is achieved due to the synergism of palladium(II) and copper(II). A typical situation is when carbon monoxide and sulfur dioxide are simultaneously present in the waste gases of industrial enterprises. In this regard, research on the polyfunctionality of the Pd(II)-Cu(II)/S̅ nanocatalyst is relevant. The kinetics of the interaction of sulfur dioxide with mono- and bimetallic compositions based on compounds of palladium(II), copper(II) and acid-modified natural (Phl) and thermally swollen (TS-Phl) phlogopite were studied. It was established that monometallic compositions М(ІІ)-KBr/X̅Н-TC-Phl-1, М(ІІ) = Cu(ІІ), Pd(ІІ) fixed on acid-modified samples of swollen phlogopite, except for 6Н-TS-Phl-1, do not show protective properties against sulfur dioxide. It has been proven that the bimetallic compositions Pd(II)-Cu(II)-KBr/S̅ (S̅ = 6H-Phl-1; X̅H-TS-Phl-1, X̅ = 1, 2, 3, 6 M HNO3) in the reaction with SO2 reveal a synergistic effect with a coefficient of КS >> 1, which leads to an increase in the time of the protective action of the samples and the amount of absorbed sulfur dioxide. The synergism constant depends on the conditions of acid modification of the carrier and has a maximum value in the case of the bimetallic composition fixed on the carrier 2Н-ТS-Phl-1.
钯(ii)和铜(ii)固定在改性云母上与二氧化硫反应的协同效应
钯(II)和铜(II)化合物是用于一氧化碳低温氧化的瓦克型非均相催化剂的基本组分。最常用的是Al2O3、活性炭和碳纤维材料作为载体。为寻找新的潜在天然介质,对天然吸云母精矿中的层状硅酸铝-吸云母进行了研究,证明在吸云母酸改性样品上形成铜钯催化剂,一氧化碳转化率高,符合工作区域CO卫生化学标准,即CKCO≤20 mg/m3。无论载体的性质如何,都发现催化效果的实现是由于钯(II)和铜(II)的协同作用。一种典型的情况是工业企业的废气中同时存在一氧化碳和二氧化硫。在这方面,研究Pd(II)-Cu(II)/S′纳米催化剂的多功能性是有意义的。研究了二氧化硫与钯(II)、铜(II)、酸改性天然(Phl)和热膨胀(TS-Phl)绿云母化合物组成的单金属和双金属组分相互作用的动力学。结果表明,在膨胀的云母酸改性样品上固定的单金属成分М(ІІ)-KBr/X % Н-TC-Phl-1, М(ІІ) = Cu(ІІ), Pd(ІІ),除6Н-TS-Phl-1外,均不表现出对二氧化硫的保护作用。证明了双金属组成Pd(II)-Cu(II)-KBr/S′(S′= 6H-Phl-1;X′H-TS-Phl-1, X′= 1,2,3,6 M HNO3)在与SO2反应中表现出协同效应,系数为КS >>1、导致样品的保护作用时间和二氧化硫吸收量增加。协同常数取决于载体的酸改性条件,并且在固定在载体上的双金属组合物的情况下具有最大值2Н-ТS-Phl-1。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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