2017
DOI: 10.1021/acs.energyfuels.6b02568
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Warm Cleanup of Coal-Derived Syngas: Multicontaminant Removal Process Demonstration

Abstract: Warm (250–450 °C) cleanup of coal- or biomass-derived syngas requires sorbents and catalysts to protect downstream conversions. We report first a sequential ZnO bed operation in which the capacity is optimized for bulk desulfurization at 450 °C, while subsequent removal of sulfur to parts-per-billion levels can be accomplished at a lower temperature of approximately 300 °C. At this temperature, gaseous sulfur (H2S and COS) could be adsorbed equally well using ZnO, both with and without the presence of H2O in t… Show more

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Cited by 12 publications
(2 citation statements)
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“…Researchers have recently developed methods to remove impurities from syngas. Spies et al (Spies et al, 2017) used a warm (e.g., 250-450 C) cleanup technique to purify the coal-derived syngas for downstream conversions such as methanol synthesis. The coal-derived syngas mainly contained H 2 , CO, CO 2 , N 2 , CH 4 , and C 2 H 4 .…”
Section: Syngas Applicationmentioning
confidence: 99%
See 1 more Smart Citation
“…Researchers have recently developed methods to remove impurities from syngas. Spies et al (Spies et al, 2017) used a warm (e.g., 250-450 C) cleanup technique to purify the coal-derived syngas for downstream conversions such as methanol synthesis. The coal-derived syngas mainly contained H 2 , CO, CO 2 , N 2 , CH 4 , and C 2 H 4 .…”
Section: Syngas Applicationmentioning
confidence: 99%
“…More than 99% of sulfur in the syngas can be removed using this method. The ZnO sorbents were proven desulfurization materials with fast kinetics and substantial capacity (Spies et al, 2017). Hernandez and Martin (Hernandez and Martin, 2018) purified the syngas (mainly containing H 2 , CO, CO 2 , N 2 , H 2 O, and hydrocarbons) derived from biogas tri-reforming by using a flash separator to remove water first.…”
Section: Syngas Applicationmentioning
confidence: 99%