Separation of oil vapour by polyether block amide composite membrane modified with porous materials

Author:

Yan Jiangyi1ORCID,Cai Yuting1ORCID,Xu Rong2,Wang Beifu1,Nie Lihong1

Affiliation:

1. College of Petrochemical Engineering and Environment, Zhejiang Ocean University, No.1 Haida South Road, Lincheng Street, Dinghai District, Zhoushan, Zhejiang 316000, People's Republic of China

2. College of Naval Architecture and Maritime, Zhejiang Ocean University, No.1 Haida South Road, Lincheng Street, Dinghai District, Zhoushan, Zhejiang 316000, People's Republic of China

Abstract

The ability of membranes to separate oil vapour is affected by their permeance and selectivity. This study modifies polyether block amide (PEBA) composite membranes with a microporous zeolite, Silicalite-1, or a mesoporous zeolite, MCM-41. The results show that when PEBA composite membranes are modified with these zeolites, the selective layer of the composite membrane is coated more thinly, resulting in a higher flux of organic gas. Silicalite-1 increases the hydrophobicity of the membrane, which facilitates the adsorption of organic vapour on the membrane surface, thus improving the membrane selectivity. In the separation of oil vapour, both modified membranes can effectively increase the gas permeabilities and selectivities. The main mechanism governing gas transport in the MCM-41-modified membrane is Knudsen diffusion, so the selectivity for small molecules is improved more significantly. By contrast, the dissolution–diffusion mechanism is dominant in the Silicalite-1-modified membranes, which considerably increases the selectivity for large molecules.

Funder

Basic Public Welfare Research Plan of Zhejiang Province

Publisher

The Royal Society

Subject

Multidisciplinary

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