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首页> 外文期刊>Fuel >Sustainable hydrocarbon fuels via 'one-pot' catalytic deoxygenation of waste cooking oil using inexpensive, unsupported metal oxide catalysts
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Sustainable hydrocarbon fuels via 'one-pot' catalytic deoxygenation of waste cooking oil using inexpensive, unsupported metal oxide catalysts

机译:通过使用廉价的无载体金属氧化物催化剂对废食用油进行“一锅式”催化脱氧,获得可持续的烃类燃料

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摘要

The present work explores the potential to upgrade waste cooking oil (WCO) via deoxygenation using inexpensive, unsupported metal oxide catalysts (CaO, TiO2, Mn(IV)O, and ZnO) in the absence of a hydrogen feedstock. WCO was mixed with 5 wt% catalyst material in a stainless steel reactor and heated to 300 degrees C for 60 min. The relative concentration of fatty acids increased upon heating in the absence of any catalyst, from similar to 15% of the total identifiable compounds for WCO to 64% for the Organic Liquid Products as a result of the nearly complete conversion of aldehyde and ester groups to organic acids, alkanes and aromatics. The inorganic catalysts shifted the product distributions significantly. CaO and ZnO slightly increased the concentration of acidic groups (versus WCO) but produced less acids than OLP alone, while Mn(IV)O and TiO2 resulted in overall decreases of free fatty acids. Mn(IV)O showed a slight preference for alkene formation, whereas TiO2 was selective toward alkanes. All catalysts - and uncatalyzed heating - showed significant deoxygenation in terms of ridding the WCO of C-O groups. Thermal treatment of WCO (with and without catalysts) resulted in a 25% increase in higher heating values, in line with those of commercial jet fuels. While the "one-pot" catalytic upgrading of WCO would not result in a direct substitute for aviation fuel, this work demonstrated the potential to significantly upgrade WCO using an inexpensive catalyst without relying on copious amounts of hydrogen gas to affect a hydrodeoxygenation reaction.
机译:本工作探讨了在不使用氢原料的情况下,使用廉价的,无载体的金属氧化物催化剂(CaO,TiO2,Mn(IV)O和ZnO)通过脱氧来提高废食用油(WCO)的潜力。在不锈钢反应器中将WCO与5 wt%的催化剂材料混合,并加热到300摄氏度保持60分钟。在不使用任何催化剂的情况下加热时,脂肪酸的相对浓度增加,由于醛和酯基几乎完全转化为有机化合物,其相对于WCO的总可识别化合物的约15%增至有机液体产品的64%。有机酸,烷烃和芳烃。无机催化剂明显改变了产物分布。 CaO和ZnO略微增加了酸性基团的浓度(相对于WCO),但比单独的OLP产生更少的酸,而Mn(IV)O和TiO2导致游离脂肪酸的总体减少。 Mn(IV)O对烯烃的形成略有偏爱,而TiO2对烷烃具有选择性。就消除C-O基团的WCO而言,所有催化剂(以及未催化的加热)都表现出明显的脱氧作用。与商用喷气燃料的热处理一样,对WCO(使用和不使用催化剂)进行热处理后,其较高的发热量增加了25%。虽然WCO的“一锅法”催化升级不会直接替代航空燃料,但这项工作证明了使用廉价的催化剂显着升级WCO的潜力,而无需依赖大量的氢气来影响加氢脱氧反应。

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