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Photocatalytic oxidation of ethanol and isopropanol vapors on cadmium sulfide

机译:硫化镉对乙醇和异丙醇蒸气的光催化氧化

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CdS-based catalysts preparation has been investigated, and the obtained photocatalysts were characterized and tested in photocatalytic oxidation of ethanol and isopropanol vapors under visible light irradiation (λ > 420 nm) with oxygen of air. The catalysts were prepared with a two-step method: (1) reaction between CdCl _2 and NaOH and (2) exchange of hydroxide ions of Cd(OH) _2 intermediate with S ~(2-) to form CdS. Influence of the reagents addition rate, stirring rate, temperature of the reaction mixture and the reagents' ratio on the oxidation rate of alcohols on solids was investigated. It was found that the rate of photooxidation increases with the increase in the stirring rate and with the decrease in the reagents addition rate during the synthesis. The photocatalytic activity as a function of sulfur content reaches the highest value for the stoichiometric CdS, which is obtained at ≥2:1 S ~(2-) to Cd ~(2+) molar ratio in precursors. Kinetic features of the isopropanol photocatalytic oxidation were studied. The Langmuir-Hinshelwood model describes satisfactorily the rate vs. concentration curve. The increase in the air relative humidity results in higher isopropanol oxidation rate. Partial deactivation of CdS catalyst was observed and described with exponential decay. Deactivation was less pronounced at high relative humidity. CdS deactivation took place due to the surface sulfur ions oxidation with formation of SO42- groups. The results show a potential of CdS photocatalysis for solar light-driven green oxidation processes of organic compounds.
机译:对CdS基催化剂的制备进行了研究,并对所得的光催化剂进行了表征,并在可见光照射下(λ> 420 nm)用空气氧对乙醇和异丙醇蒸气进行光催化氧化。通过两步法制备催化剂:(1)CdCl _2与NaOH之间的反应和(2)Cd(OH)_2中间体的氢氧根离子与S〜(2-)交换形成CdS。研究了试剂的添加速率,搅拌速率,反应混合物的温度和试剂的比例对醇在固体上的氧化速率的影响。发现在合成过程中,光氧化速率随着搅拌速率的增加和试剂添加速率的降低而增加。对于化学计量的CdS,作为硫含量的函数的光催化活性达到最高值,这是在前体中≥2:1 S〜(2-)与Cd〜(2+)摩尔比获得的。研究了异丙醇光催化氧化的动力学特征。 Langmuir-Hinshelwood模型令人满意地描述了速率与浓度的关系曲线。空气相对湿度的增加导致较高的异丙醇氧化速率。观察到CdS催化剂的部分失活,并以指数衰减的方式描述。在高相对湿度下失活不太明显。 CdS失活是由于表面硫离子氧化并形成SO42-基团而发生的。结果表明,CdS光催化在有机化合物的太阳光驱动的绿色氧化过程中具有潜力。

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