JOURNAL ARTICLE

Acetylene hydrochlorination over bimetallic Ru-based catalysts

Jinli ZhangSheng WeiCuili GuoWei Li

Year: 2013 Journal:   RSC Advances Vol: 3 (43)Pages: 21062-21062   Publisher: Royal Society of Chemistry

Abstract

Ruthenium-based catalysts including monometallic Ru, bimetallic Ru–Cu and Ru–Co were prepared using spheric active carbon (SAC) as the support, and their catalytic performance was assessed for the acetylene hydrochlorination reaction, characterized by BET, TG, TEM, TPR and XPS. It is suggested that using cobalt as the additive can significantly enhance the catalytic activity of the Ru/SAC catalyst for the acetylene hydrochlorination reaction. Over the 1%Ru1Co3/SAC catalyst the acetylene conversion is maintained above 95% with 48 h on stream under reaction conditions of 170 °C, C2H2 hourly space velocity = 180 h−1 and the feed HCl/C2H2 volume ratio = 1.1; while the addition of copper results in a lower acetylene conversion. It is illustrated that the cobalt additive can greatly influence the amount of ruthenium species involved in RuO2, Ru0, RuOx and RuCl3 in the catalyst, which results in good catalytic activity and capability to inhibit coking of the 1%Ru1Co3/SAC catalyst. The optimal 1%Ru1Co3/SAC catalyst is a promising non-mercuric catalyst for PVC manufacture, with the advantages of both good stability and low cost.

Keywords:
Bimetallic strip Catalysis Acetylene Ruthenium Chemistry Cobalt Space velocity Copper X-ray photoelectron spectroscopy Inorganic chemistry Nuclear chemistry Chemical engineering Organic chemistry Selectivity

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23
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0.94
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Citation History

Topics

Catalytic Processes in Materials Science
Physical Sciences →  Materials Science →  Materials Chemistry
Catalysis and Oxidation Reactions
Physical Sciences →  Chemical Engineering →  Catalysis
Layered Double Hydroxides Synthesis and Applications
Physical Sciences →  Materials Science →  Materials Chemistry

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