Cardiff Catalysis Institute, School of Chemistry, Cardiff University, Main Building, Park Place, Cardiff, CF103 AT, UK.
Department of Materials, University of Oxford, Oxford, OX1 3PH, UK.
Small. 2021 Apr;17(16):e2007221. doi: 10.1002/smll.202007221. Epub 2021 Feb 25.
The formation of highly active and stable acetylene hydrochlorination catalysts is of great industrial importance. The successful replacement of the highly toxic mercuric chloride catalyst with gold has led to a flurry of research in this area. One key aspect, which led to the commercialization of the gold catalyst is the use of thiosulphate as a stabilizing ligand. This study investigates the use of a range of sulfur containing compounds as promoters for production of highly active Au/C catalysts. Promotion is observed across a range of metal sulfates, non-metal sulfates, and sulfuric acid treatments. This observed enhancement can be optimized by careful consideration of either pre- or post-treatments, concentration of dopants used, and modification of washing steps. Pre-treatment of the carbon support with sulfuric acid (0.76 m) resulted in the most active Au/C in this series with an acetylene conversion of ≈70% at 200 °C.
高效稳定的乙炔氯化催化剂的制备具有重要的工业意义。成功用金取代剧毒的氯化汞催化剂,引发了该领域的大量研究。使金催化剂实现商业化的一个关键因素是使用硫代硫酸盐作为稳定配体。本研究考察了一系列含硫化合物作为促进剂在制备高效 Au/C 催化剂中的应用。在一系列金属硫酸盐、非金属硫酸盐和硫酸处理中都观察到了促进作用。通过仔细考虑预处理或后处理、掺杂剂的浓度以及洗涤步骤的修改,可以优化这种观察到的增强效果。用硫酸(0.76 m)对碳载体进行预处理,在此系列中得到了最活跃的 Au/C,在 200°C 时乙炔转化率约为 70%。