Transformation of Dilute Ethylene at High Temperature on Micro- and Nano-Sized H-ZSM-5 Zeolites

Author:

Beuque AntoineORCID,Barreau MatthiasORCID,Berrier EliseORCID,Paul Jean-François,Batalha Nuno,Sachse AlexanderORCID,Pinard Ludovic

Abstract

Ethylene dehydroaromatisation (EDA) was investigated at 700 °C under 1 bar of ethylene (5 mol% in N2) over a micro-(M) and a nano-sized (N) H-ZSM-5. On the M zeolite an induction period followed by deactivation was observed, which could be related to the presence of long diffusion path lengths in this sample, leading to mass transfer resistance. During the induction step, the aromatics yield increases, despite a significant loss of the acid site concentration as a result of coking. This induction period corresponds to the formation of an active hydrocarbon pool (HCP) composed of units of 2 to 5 aromatic rings with a molecular weight ranging from 130 to 220 g mol−1 (light coke). A kinetic study revealed that the developing HCP species is two times more active than Brønsted acid sites in the fresh zeolite. Diffusion limitations yet impact the product desorption by promoting coke growth and, therefore the deactivation of the HCP and hence of the catalyst. From MA-LDI/LDI-TOF MS (Matrix Assisted Laser Desorption Ionization—Time of Flight Mass Spectroscopy) characterisation was deduced that even after complete catalyst deactivation, the as-deposited coke continues growing at the external surface of the zeolite by condensation reactions, thus leading to heavy coke composed of more than 100 carbon atoms and a molar mass exceeding 1300 g mol−1. Unlike the micro-sized zeolite, the nano-scaled zeolite features a short diffusion path length and promotes fast formation of the active HCP. As a result, higher activity and selectivity into benzene were observed, whilst catalyst deactivation was significantly mitigated.

Publisher

MDPI AG

Subject

Physical and Theoretical Chemistry,Catalysis

Reference28 articles.

1. The Future of Petrochemicals: Growth Surrounded by Uncertaintyhttps://www2.deloitte.com/content/dam/Deloitte/us/Documents/energy-resources/the-future-of-petrochemicals.pdf

2. The conversion of ethene and propene to higher hydrocarbons over ZSM-5

3. Aromatization of Ethylene – Main Intermediate for MDA?

4. Mechanisms of aromatization of dilute ethylene on HZSM-5 and on Zn/HZSM-5 catalysts

5. Aromatization of ethylene over zeolite-based catalysts

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