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Ring-shift isomerization of sym-octahydrophenanthrene into sym-octahydroanthracene. Effects of zeolite catalysts and equilibrium compositions

机译:辛八氢菲的环转移异构化为辛八氢蒽。沸石催化剂和平衡组成的影响

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The effects of zeolite catalysts and reaction conditions on the ring-shift isomerization of sym-OHP into sym-OHA were studied through experiments at 200-300℃ under an initial pressure of 0.79 MPa N_2 or H_2. Eight catalysts were examined, including three hydrogen mordenites, two noble metal loaded mordenites, and three Y-zeolites. Among the three mordenites, the catalyst with lower acidity (HML8) displayed the best selectivity to sym-OHA but the lowest activity. Among the three Y-zeolites, best selectivity to sym-OHA was achieved with NiHY, which has lower acidity and lower content of stronger acid sites. The activity for sym-OHP conversion is: Pd/HM30A > Pt/HM30A > HY ≈ LaHY > HM20A > HM30A > HML8 > NiHY. The selectivity to sym-OHA decreases almost linearly with increasing conversion beyond the pseudo-equilibrium stage (about 50% conversion). The desirable condition over HML8 is 250℃ for 0.5 h. The other catalysts with higher acidity (HM20A, HM30A, and HY) are promising catalysts at 200℃. Molecular mechanics calculations were performed to establish the upper limit of the catalytic conversion. The calculations and experimental results indicate that reaction temperature has a moderate effect on the equilibrium yield of sym-OHA, whose formation is favored at lower temperature. However, the experimentally determined equilibrium ratios of sym-OHA to sym-OHP (close to 1.3) are lower than the calculated values (2-2.6). The occurrence of simultaneous side reactions probably contributes to the shift of the equilibrium state of sym-OHA and sym-OHP.
机译:在初始压力​​为0.79 MPa N_2或H_2的条件下,通过200-300℃的实验研究了沸石催化剂和反应条件对sym-OHP向sym-OHA的环转移异构的影响。检查了八种催化剂,包括三种氢丝光沸石,两种负载贵金属的丝光沸石和三种Y沸石。在这三种丝光沸石中,酸度较低的催化剂(HML8)对sym-OHA的选择性最高,但活性最低。在这三种Y型沸石中,使用NiHY可获得对sym-OHA的最佳选择性,NiHY具有较低的酸度和较低的强酸位含量。 sym-OHP转换的活性为:Pd / HM30A> Pt / HM30A> HY≈LaHY> HM20A> HM30A> HML8> NiHY。随着转化率增加到伪平衡阶段之外,对sym-OHA的选择性几乎呈线性下降(约50%的转化率)。在HML8上的理想条件是250℃持续0.5 h。其他具有较高酸度的催化剂(HM20A,HM30A和HY)在200℃时也是很有希望的催化剂。进行分子力学计算以建立催化转化的上限。计算和实验结果表明,反应温度对sym-OHA的平衡收率有中等程度的影响,在较低温度下有利于形成。但是,实验确定的sym-OHA与sym-OHP的平衡比(接近1.3)低于计算值(2-2.6)。同时发生的副反应可能有助于sym-OHA和sym-OHP平衡状态的转变。

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