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Inhibition effect of Na+ form in ZSM-5 zeolite on hydrogen transfer reaction via 1-butene cracking

机译:ZSM-5沸石中Na +形式对氢转移反应的抑制作用通过1-丁烯裂化

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The Na+ and H+ of ZSM-5 having three Si/Al molar ratios (20, 35, and 50) were synthesized to investigate and illustrate 1-butene cracking mechanism. The physical and chemical properties of ZSM-5 were described by XRD, SEM-EDX, N-2 physicsorption, FT-IR, pyridine-IR, H-1 MAS NMR, TPO, and NH3-TPD techniques. For the characterization, the Na-ZSM-5 consisted of two main types of acid sites (weak and medium acid sites), whereas strong, medium, and weak acid sites were detected on H-ZSM-5. For H-ZSM-5, the Si-(OH)-Al site (strong BrOnsted site) was an active site for 1-butene cracking reaction, while the active site of Na-ZSM-5 in the reaction was silanol nest (moderate BrOnsted site). The 1-butene cracking reaction on H-ZSM-5 and Na-ZSM-5 was studied under the operating condition of temperature =500 degrees C, pressure =1 atm, and WHSV =3 h(-1). The oligomerization, cracking, and hydrogen transfer were three main reactions in the 1-butene cracking mechanism. The alkenes excluding propylene occurred on weak acid site, while the formation of propylene underwent on medium acid site of ZSM-5 catalyst. The presence of strong acid site on ZSM-5 catalyst promoted the hydrogen transfer reaction, which provoked the alkane formation. The hydrogen transfer index in 1-butene reaction of NaZSM-5 was less than H-ZSM-5 in all Si/Al molar ratios because of the absence of strong acid. The Na-ZSM-5 (Si/Al molar ratio = 20) reached the highest propylene selectivity at 31.73 C-wt.% and the Na+ ion could block the strong acid site. At low Si/Al molar ratio, the stability of Na-ZSM-5 was higher than H-ZSM-5 because of the lower coke formation. Therefore, the Na-ZSM-5 was more suitable catalyst than H-ZSM-5 for propylene formation in 1-butene cracking reaction.
机译:合成了三种硅铝摩尔比(20、35和50)的ZSM-5的Na+和H+以研究和说明1-丁烯裂解机理。通过XRD、SEM-EDX、N-2物理吸附、FT-IR、吡啶IR、H-1 MAS NMR、TPO和NH3-TPD技术对ZSM-5的物理和化学性质进行了描述。就表征而言,Na-ZSM-5由两种主要类型的酸位(弱酸位和中酸位)组成,而在H-ZSM-5上检测到强酸位、中酸位和弱酸位。对于H-ZSM-5,Si-(OH)-Al位(强布朗斯特位)是1-丁烯裂解反应的活性位,而Na-ZSM-5在反应中的活性位是硅醇巢(中等布朗斯特位)。在温度=500℃、压力=1atm、空速=3h(-1)的操作条件下,研究了H-ZSM-5和Na-ZSM-5上的1-丁烯裂解反应。齐聚、裂解和氢转移是1-丁烯裂解机理中的三个主要反应。在ZSM-5催化剂上,除丙烯外的烯烃发生在弱酸位,而丙烯的生成发生在中酸位。ZSM-5催化剂上强酸中心的存在促进了氢转移反应,引发了烷烃的生成。由于没有强酸,在所有硅铝摩尔比下,NaZSM-5的1-丁烯反应的氢转移指数都小于H-ZSM-5。Na-ZSM-5(Si/Al摩尔比=20)在31.73 C-wt%时达到最高的丙烯选择性,并且Na+离子可以阻断强酸中心。在较低的硅铝摩尔比下,Na-ZSM-5的稳定性高于H-ZSM-5,因为其结焦率较低。因此,Na-ZSM-5比H-ZSM-5更适合于1-丁烯裂解反应中生成丙烯的催化剂。

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