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Atomically dispersed Ru catalysts for polychlorinated aromatic hydrocarbon oxidation

机译:自动分散的俄文的催化剂多氯芳烃氧化

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The development of cost-efficient catalysts with good catalytic activity is an urgent task for polychlorinated aromatic hydrocarbon (PCAH) oxidation. Herein, atomically dispersed Ru catalysts (denoted as Ru ADCs) proved by aberration corrected high-angle annular dark-field scanning transmission electron microscopy and X-ray absorption spectroscopy were synthesized for PCAH oxidation. The oxidation results showed that 0.2 Ru ADCs exhibited enhanced catalytic activity (T-50% 300 degrees C on 0.2 Ru nanoparticles (NPs). Besides, 0.2 Ru ADCs demonstrated high CO2 yield with >60% CO2 ratio, along with good stability (>80% conversion for 800 mins). The better performance of 0.2 Ru ADCs was verified by kinetic experiments, in which, the apparent activation energy associated with 0.2 Ru ADCs (50.8 kJ mol(-1)) was significantly lower compared with that with 0.2 Ru NPs (80.0 kJ mol(-1)). The superior oxidation activity of 0.2 Ru ADCs was also applied to toluene oxidation. H-2 temperature-programmed reduction ensured the stronger interaction of Ru species with the supports in Ru ADCs than that in Ru NPs, thus inhibiting Ru species aggregation and favoring their higher dispersion ensured by CO temperature-programmed desorption. The present work provides a potential strategy to maximize the usage of noble metal catalysts for PCAH oxidation.
机译:的发展的催化剂良好的催化活性是一个重要而紧迫的任务多氯芳烃(PCAH)氧化。催化剂(表示为俄文adc)证明畸变校正高纬度环形暗视野扫描透射电子显微镜和x光吸收光谱PCAH氧化合成。结果表明,0.2俄文adc展出提高催化活性(t - 250度 300度在0.2俄文纳米颗粒(NPs)。此外,高0.2俄文adc证明二氧化碳产量与二氧化碳比例> 60%,稳定性好(> 80%转换为800分钟)。0.2俄文adc的性能验证动力学实验,其中,明显活化能与0.2俄文adc(50.8 kJ摩尔(1))显著降低相比之下,0.2俄文NPs (80.0 kJ摩尔(1))。俄文adc也应用于甲苯氧化。2程序升温还原了更强的交互的俄文物种支持比俄文NPs在俄文adc,如此抑制俄文物种聚合和支持他们的高色散保证有限公司程序升温解吸。工作提供了一个潜在的策略来最大化PCAH贵金属催化剂的使用氧化。

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