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首页> 外文期刊>Research on Chemical Intermediates >Catalytic cracking of C5 raffinate to light olefins over NaOH-treated ZSM-5
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Catalytic cracking of C5 raffinate to light olefins over NaOH-treated ZSM-5

机译:NaOH处理的ZSM-5上的C 5 萃余液催化裂化为轻质烯烃

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A series of ZSM-5 catalysts (ZSM-5 (X)) treated with different NaOH concentration (X = 0, 0.05, 0.1, and 0.2 M) were prepared for use in the production of light olefins (ethylene and propylene) through catalytic cracking of C5 raffinate. The effect of NaOH concentration on their physicochemical properties and catalytic activity was investigated. It was found that textural and physicochemical properties of ZSM-5 (X) catalysts were strongly influenced by the NaOH concentration. Mesopore volume of ZSM-5 (X) catalysts increased with increasing NaOH concentration, while acidity of the catalysts decreased with increasing NaOH concentration. Conversion of C5 raffinate and yield for light olefins (ethylene and propylene) showed the volcano-shaped curves with respect to NaOH concentration (X). This implies that NaOH treatment of ZSM-5 was an efficient method to produce light olefins through catalytic cracking C5 raffinate, and that optimal NaOH concentration was required for maximum production of light olefins. Among the catalysts tested, ZSM-5 (0.05) catalyst showed the best catalytic performance due to its favorable porosity and acidity.
机译:制备了一系列用不同的NaOH浓度(X = 0、0.05、0.1和0.2 M)处理过的ZSM-5催化剂(ZSM-5(X)),用于通过催化生产轻质烯烃(乙烯和丙烯) C 5 萃余液的裂解。研究了NaOH浓度对其理化性质和催化活性的影响。发现ZSM-5(X)催化剂的质构和物理化学性质受到NaOH浓度的强烈影响。 ZSM-5(X)催化剂的中孔体积随NaOH浓度的增加而增加,而催化剂的酸度随NaOH浓度的增加而降低。 C 5 萃余液的转化率和轻质烯烃(乙烯和丙烯)的收率显示了相对于NaOH浓度(X)的火山形曲线。这表明ZSM-5的NaOH处理是通过催化裂化C 5 萃余液生产轻质烯烃的有效方法,并且最大的轻质烯烃生产需要最佳的NaOH浓度。在测试的催化剂中,ZSM-5(0.05)催化剂具有良好的孔隙率和酸性,因此表现出最佳的催化性能。

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