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SELECTIVE O-ALKYLATION OF PHENOL WITH METHANOL OVER SULPHATES SUPPORTED ON GAMMA-AL2O3

机译:在γ-氧化铝上支撑的硫酸盐上的苯酚与甲醇的选择性O-烷基化

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The reaction of phenol with methanol was studied in a fixed-bed reactor system as a potential source for the production of methyl aryl ethers. For this reason, the performance of alumina-supported catalysts impregnated with sulphate salts of metals of the groups VIIB and IIB was studied. The effects of reaction temperature, reaction time, type of metal, metal content, and potassium content on the selectivity of methyl aryl ethers (MAE), as well as the phenol conversion and the yield of MAE, were established. The reaction temperature and the potassium content were found mainly to affect the selectivity of the catalyst, the phenol conversion, and the yield of MAE. Empirical equations were derived which proved to be useful for predicting the performance of a catalyst over a broad range of reaction conditions. A catalyst (K-3(S)) containing only potassium (3 wt%) in the form of potassium sulphate supported on gamma-alumina was found to have the most promising performance compared to those reported in the literature in terms of MAE selectivity and phenol conversion at atmospheric pressure (selectivity of MAE = 98%, phenol conversion = 65 wt%). The catalyst remains stable over a broad range of temperatures (290-330 degrees C). Ks is an inexpensive catalyst, showing major selectivity advantages and product composition (anisole, 92 wt%; o-cresol, 8 wt%) and a low coke production (7 wt%). The presence of potassium sulphate in the catalyst proved to be the controlling factor for the production of MAE and it was found to be the active phase of the catalyst. The MAE selectivity of potassium sulphate catalysts is determined by the potassium content of the catalyst, while its optimum value is achieved, when acid sites of medium strength (+ 1.5 < H-0 less than or equal to + 4.8) with low acidity values (22 x 10(-4) mmol/m(2)) exist on their surface. (C) 1995 Academic Press, Inc. [References: 35]
机译:在固定床反应器系统中研究了苯酚与甲醇的反应,作为生产甲基芳基醚的潜在来源。因此,研究了用VIIB和IIB族金属的硫酸盐浸渍的氧化铝负载的催化剂的性能。建立了反应温度,反应时间,金属类型,金属含量和钾含量对甲基芳基醚(MAE)的选择性以及苯酚转化率和MAE收率的影响。发现反应温度和钾含量主要影响催化剂的选择性,苯酚转化率和MAE的产率。推导了经验方程,该经验方程被证明对于预测催化剂在宽范围的反应条件下的性能是有用的。与MAE选择性和MAE相比,发现与文献中报道的催化剂相比,仅包含以硫酸钾形式负载的硫酸钾形式的钾(3 wt%)的催化剂(K-3(S))具有最有希望的性能。在大气压下苯酚转化率(MAE的选择性= 98%,苯酚转化率= 65 wt%)。催化剂在很宽的温度范围内(290-330摄氏度)保持稳定。 Ks是一种廉价的催化剂,显示出主要的选择性优势和产物组成(苯甲醚,92重量%;邻甲酚,8重量%)和低焦炭产量(7重量%)。催化剂中硫酸钾的存在被证明是生产MAE的控制因素,并且被发现是催化剂的活性相。硫酸钾催化剂的MAE选择性取决于催化剂的钾含量,而当中等强度(+ 1.5

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