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Dive into the research topics where Erik Sjöberg is active.

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Featured researches published by Erik Sjöberg.


Journal of Materials Chemistry | 2015

Efficient ceramic zeolite membranes for CO2/H2 separation

Danil Korelskiy; Pengcheng Ye; Shahpar Fouladvand; Somayeh Karimi; Erik Sjöberg; Jonas Hedlund

Membranes are considered one of the most promising technologies for CO2 separation from industrially important gas mixtures like synthesis gas or natural gas. In order for the membrane separation process to be efficient, membranes, in addition to being cost-effective, should be durable and possess high flux and sufficient selectivity. Current CO2-selective membranes are low flux polymeric membranes with limited chemical and thermal stability. In the present work, robust and high flux ceramic MFI zeolite membranes were prepared and evaluated for separation of CO2 from H2, a process of great importance to synthesis gas processing, in a broad temperature range of 235–310 K and at an industrially relevant feed pressure of 9 bar. The observed membrane separation performance in terms of both selectivity and flux was superior to that previously reported for the state-of-the-art CO2-selective zeolite and polymeric membranes. Our initial cost estimate of the membrane modules showed that the present membranes were economically viable. We also showed that the ceramic zeolite membrane separation system would be much more compact than a system relying on polymeric membranes. Our findings therefore suggest that the developed high flux ceramic zeolite membranes have great potential for selective, cost-effective and sustainable removal of CO2 from synthesis gas.


Journal of Membrane Science | 2011

Very high flux MFI membrane for CO2 separation

Linda Sandström; Erik Sjöberg; Jonas Hedlund


Fuel and Energy Abstracts | 2011

Very high flux MFI membrane for CO 2 separation

Linda Sandström; Erik Sjöberg; Jonas Hedlund


Microporous and Mesoporous Materials | 2014

Ultrathin hydrophobic MFI membranes

Han Zhou; Danil Korelskiy; Erik Sjöberg; Jonas Hedlund


Journal of Membrane Science | 2013

Separation of CO2 from black liquor derived syngas using an MFI membrane

Erik Sjöberg; Linda Sandström; Olov Öhrman; Jonas Hedlund


Journal of Membrane Science | 2015

MFI membranes for separation of carbon dioxide from synthesis gas at high pressures

Erik Sjöberg; Simon Barnes; Danil Korelskiy; Jonas Hedlund


Catalysis Today | 2010

Membrane Processes for Effective Methanol Synthesis in the Forest Based Biorefinery

Erik Sjöberg; Linda Sandström; Jonas Hedlund


Journal of Membrane Science | 2015

Preparation of graded silicalite-1 substrates for all-zeolite membranes with excellent CO2/H2 separation performance

Farid Akhtar; Erik Sjöberg; Danil Korelskiy; Mark Rayson; Jonas Hedlund; Lennart Bergström


Microporous and Mesoporous Materials | 2014

Air Separation at Cryogenic Temperature Using MFI membranes

Pengcheng Ye; Erik Sjöberg; Jonas Hedlund


Microporous and Mesoporous Materials | 2014

Corrigendum to “Air separation at cryogenic temperature using MFI membranes” [Micropor. Mesopor. Mater. 192 (2014) 14–17]

Pengcheng Ye; Erik Sjöberg; Jonas Hedlund

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Jonas Hedlund

Luleå University of Technology

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Danil Korelskiy

Luleå University of Technology

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Linda Sandström

Luleå University of Technology

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Pengcheng Ye

Luleå University of Technology

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Farid Akhtar

Luleå University of Technology

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Han Zhou

Luleå University of Technology

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Jonas Lindmark

Luleå University of Technology

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Olov Öhrman

Luleå University of Technology

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Shahpar Fouladvand

Luleå University of Technology

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