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Catalytic cracking of polyethylene over all-silica MCM-41 molecular sieve

机译:全硅MCM-41分子筛上聚乙烯的催化裂化

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The catalytic cracking of high-density polyethylene has been demonstrated over all-silica MCM-441 catalysts.The cracking activity increases with the degree of crystallinity of the catalyst.The pore diameter of the samples has an effect on the level of the catalytic activity,with catalysts having small pore diameters giving higher activity.A carbenium ion-mediated mechanism is proposed for the cracking reaction,as high levels of isobutene and isobutane and low levels of C_1 and C_2 were produced.The product distribution was compared with those obtained from thermal cracking tests.The surface acidity of the all-silica MCM-41 is attributed to the presence of silianol groups.It is proposed that the formation and stabilization of carbeniumm ions in the pores of the catalyst are due to the adsorptiion interctiion between the polyethylinic fragments with the surface of the channels.
机译:在全硅MCM-441催化剂上已经证明了高密度聚乙烯的催化裂化,其裂化活性随催化剂的结晶度而增加,样品的孔径对催化活性水平有影响,提出了碳正离子介导的裂解反应机理,该方法制备了高含量的异丁烯和异丁烷,以及低含量的C_1和C_2。全硅胶MCM-41的表面酸度归因于硅烷醇基的存在。建议在催化剂的孔中形成和稳定碳正离子是由于聚乙炔片段之间的吸附相互作用与通道的表面。

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