4.7 Article

Effect of biofuel- and lube oil-originated sulfur and phosphorus on the performance of Cu-SSZ-13 and V2O5-WO3/TiO2 SCR catalysts

期刊

CATALYSIS TODAY
卷 360, 期 -, 页码 326-339

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ELSEVIER
DOI: 10.1016/j.cattod.2020.02.018

关键词

Cu-SSZ-13; V2O5-WO3/TiO2; NH3-SCR; phosphorus; sulfur; biodiesel exhaust

资金

  1. FFI project [37178-1]

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Two different SCR catalysts showed varying performance in capturing phosphorus and sulfur from biodiesel exhausts, with sulfur mainly affecting the Cu-SSZ-13 catalyst at lower temperatures. The use of an oxidation catalyst upstream can protect the SCR catalysts from phosphorus poisoning.
Two different SCR catalysts, V2O5-WO3/TiO2 and Cu-SSZ-13, were exposed to biodiesel exhausts generated by a diesel burner. The effect of phosphorus and sulfur on the SCR performance of these catalysts was investigated by doping the fuel with P-, S-, or P + S-containing compounds. Elemental analyses showed that both catalysts captured phosphorus while only Cu-SSZ-13 captured sulfur. High molar P/V ratios, up to almost 3, were observed for V2O5-WO3/TiO2, while the highest P/Cu ratios observed were slightly above 1 for the Cu-SSZ-13 catalyst. Although the V2O5-WO3/TiO2 catalyst captured more P than did the Cu-SSZ-13 catalyst, a higher degree of deactivation was observed for the latter, especially at low temperatures. For both catalysts, phosphorus exposure resulted in suppression of the SCR performance over the entire temperature range. Sulfur exposure, on the other hand, resulted in deactivation of the Cu-SSZ-13 catalyst mainly at temperatures below 300-350 degrees C. The use of an oxidation catalyst upstream of the SCR catalyst during the exhaust-exposure protects the SCR catalyst from phosphorus poisoning by capturing phosphorus. The results in this work will improve the understanding of chemical deactivation of SCR catalysts and aid in developing durable aftertreatment systems.

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