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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Formaldehyde production from methanol and methyl mercaptan over titania and vanadia based catalysts
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Formaldehyde production from methanol and methyl mercaptan over titania and vanadia based catalysts

机译:二氧化钛和钒基催化剂由甲醇和甲硫醇生产甲醛

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摘要

The results of selective oxidation of CH3OH and CH3SH to produce formaldehyde are presented and the effect of the reaction conditions on the CH2O yield is evaluated. The yield of formaldehyde was evaluated by thermodynamic calculations by using the HSC Chemistry~R and Aspen Plus~R simulation programmes. Oxidation of CH3OH and CH3SH was investigated by calculating the system equilibrium composition. Based on the modelling results, the yield of formaldehyde was almost zero with all the reactants present, i.e. the CH3OH, CH3SH and CH3OH + CH3SH mixture, which was also supported by the experiments. Catalytic experiments were performed over TiO2, V2O5/SiO2 and V2O5/(SiO2 + 10%TiO2) catalysts to evaluate the effect of feed concentration, reaction temperature and catalyst loading on the formaldehyde yield. Both CH3OH and CH3SH were oxidized separately and as mixtures. The V2O5/(SiO2 +10% TiO2) catalyst was the most active catalyst in formaldehyde production. At optimal reaction conditions, 88% yield of CH2O was achieved at 413 °C in a feed mixture of 1000 ppm of CH3OH + CH3SH with the space velocity of 94,000 h~(-1). The catalysts showed no activity loss when tested for 6 h.
机译:给出了CH3OH和CH3SH选择性氧化生成甲醛的结果,并评估了反应条件对CH2O收率的影响。使用HSC Chemistry〜R和Aspen Plus〜R模拟程序通过热力学计算来评估甲醛的收率。通过计算系统平衡组成来研究CH3OH和CH3SH的氧化。根据建模结果,在所有存在的反应物(即CH3OH,CH3SH和CH3OH + CH3SH混合物)下,甲醛的收率几乎为零,这也得到了实验的支持。在TiO2,V2O5 / SiO2和V2O5 /(SiO2 + 10%TiO2)催化剂上进行了催化实验,以评估进料浓度,反应温度和催化剂负载量对甲醛收率的影响。 CH3OH和CH3SH均被单独和混合氧化。 V2O5 /(SiO2 + 10%TiO2)催化剂是甲醛生产中活性最高的催化剂。在最佳反应条件下,在413°C下,在1000 ppm CH3OH + CH3SH的进料混合物中,空速为94,000 h〜(-1)时,CH2O的产率达到88%。当测试6小时时,催化剂没有显示出活性损失。

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