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Comparison of vanadium oxide catalysts for synthesis of benzene: Benzene purity, yields and reconditioning methods

机译:用于合成苯的钒氧化物催化剂的比较:苯的纯度,收率和重整方法

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This study compares vanadium oxide catalysts from three different sources: Noakes (N), Harshaw Chemical (H) and Kh. Arslanov at the St. Petersburg State University, Russia(R). The catalysts are used to convert acetylene to benzene in the last step of benzene synthesis. The organic purity of benzene in all three catalysts is high; 99.91-99.93% for (N) and (H) and 99.87% for (R). The benzene yields range from 90.0 to 94.3%. (N) averaged 92.6%, (H) averaged 91.1% and (R) averaged 92.0%. A conversion residue in the catalysts was analyzed for delta(13)C and found to be isotopically lighter relative to acetylene by -2.2 parts per thousand for (N) and (H) and -3.9 parts per thousand for (R). Benzene yields were studied on different reconditioning methods applied to all catalysts: heating to 400 degrees C in air averaged 92.3%; the same temperature with a half and half mixture of O-2 and Ar averaged 91.9%, adding a half and half mixture of H-2 and Ar at 200 degrees C to the end of this treatment averaged 91.8%. Based on this research, the obvious difference seen between the catalysts is in their trace by-products. [References: 6]
机译:这项研究比较了三种不同来源的钒氧化物催化剂:Noakes(N),Harshaw Chemical(H)和Kh。俄罗斯圣彼得堡国立大学的Arslanov。在苯合成的最后一步中,使用催化剂将乙炔转化为苯。三种催化剂中苯的有机纯度都很高。 (N)和(H)为99.91-99.93%,(R)为99.87%。苯产率为90.0%至94.3%。 (N)平均为92.6%,(H)平均为91.1%,(R)平均为92.0%。分析了催化剂中的转化残余物的δ(13)C值,发现其同位素相对于乙炔而言较轻(N)和(H)分别为-2.2千分和(R)为-3.9千分。在适用于所有催化剂的不同重整方法下,研究了苯的收率:在空气中平均加热至400摄氏度(92.3%);在相同温度下,O-2和Ar的一半和一半的混合物的平均温度为91.9%,在此温度下,在200摄氏度下,H-2和Ar的一半和一半的混合物的平均温度为91.8%。根据这项研究,发现催化剂之间的明显区别在于它们的痕量副产物。 [参考:6]

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