Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
72857 | Microporous and Mesoporous Materials | 2015 | 13 Pages |
•Boron-modified ZSM-5 was synthesized by hydrothermal method.•Acid sites density was improved by boron incorporation.•Light olefins selectivity was enhanced in the MTO reaction.•Long-term stability was improved over boron-modified zeolite.•Boron-modified ZSM-5 exhibited lower coke formation rate.
The effect of boron incorporation into H-ZSM-5 nanocatalyst on the stability, product distribution and hydrocarbons selectivity in methanol to olefins (MTO) reaction was investigated. The reference and boron-modified ZSM-5 nanocatalysts were prepared by hydrothermal method. The fresh and used nanocatalysts were characterized using TG–DTA, XRD, FE-SEM, BET, FT-IR, TPH, TPO and NH3-TPD techniques. The performance test runs of the two H-ZSM-5 and [B]-H-ZSM-5 samples were conducted in a fixed-bed reactor at T = 480 °C, P = 1 atm, methanol WHSV = 0.9 h−1 with methanol to water weight ratio of unity in the feed. The results revealed that propylene selectivity does not change significantly with the isomorphous substitution of B in H-ZSM-5 zeolite. However, the lifetime of the modified zeolite (1300 h) showed a significant increase compared to that of the reference sample (340 h). The considerable enhancement of the lifetime and catalytic stability could be attributed to reduction of strong/mild acid sites ratio as well as small crystal size of the [B]-H-ZSM-5 nanocatalyst. The characterization of the deactivated nanocatalysts showed that incorporation of boron decreased both rates of coke formation and coke-susceptibility of the ZSM-5 nanocatalyst.
Graphical abstractHigh-silica nano-ZSM-5 and its boron-modified form were prepared by conventional hydrothermal synthesis. The performance test results indicated that boron-modified H-ZSM-5 nanocatalyst is very efficient and highly stable in methanol to light olefins (MTO) process.Figure optionsDownload full-size imageDownload as PowerPoint slide