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Finely-dispersed Ni/Cu catalysts supported on mesoporous silica for the hydrodechlorination of chlorinated hydrocarbons

机译:用于氯化烃的水解的精细分散的Ni / Cu催化剂,用于氯化烃的水解

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Ni/Cu and Ni catalysts supported on the mesoporous silica were prepared via grafting, metal adsorption and calcination steps. The prepared catalyst was characterized using XRD, TEM, N_2 sorption, and SAXS. Pore structure of the support was maintained throughout the preparation procedures. In addition, no specific metal particle image was appeared in XRD, because the metal particles are highly dispersed in the support as a very small size. Hydrodechlorination of TCEa (Trichloroethane) was selected as a model system to test the catalytic activity and selectivity to VCM. The activity of Ni/Cu-E-SBA is higher than that of Ni-E-SBA. The decrease in activity of Ni/Cu-E-SBA was much slow, because copper was added in the Ni catalyst. Cu may plays an important role to retard the deactivation by, such as coking. Further research is on progress. 97% selectivity to VCM was achieved after about 600min on Ni/Cu-E-SBA catalyst.
机译:通过嫁接,金属吸附和煅烧步骤制备介孔二氧化硅上负载的Ni / Cu和Ni催化剂。使用XRD,TEM,N_2吸附和撒脲表征制备的催化剂。在整个制备程序中保持载体的孔结构。另外,在XRD中没有出现特定的金属颗粒图像,因为金属颗粒在载体中高度分散在载体中作为非常小的尺寸。选择TCEA(三氯乙烷)的水多化作为模型系统,以测试催化活性和对VCM的选择性。 Ni / Cu-E-SBA的活性高于Ni-E-SBA的活性。 Ni / Cu-E-SBA活性的降低速度得多,因为在Ni催化剂中加入铜。 CU可能发挥重要作用以延迟停用,例如焦化。进一步的研究正在进行中。在Ni / Cu-E-SBA催化剂上约600米后,在约600米后实现对VCM的97%的选择性。

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