首页> 外文OA文献 >Syreavspjälkning från fettsyror med tanke på framställning av bränslekomponenter och kemikalier
【2h】

Syreavspjälkning från fettsyror med tanke på framställning av bränslekomponenter och kemikalier

机译:考虑到燃料成分和化学物质的产生,从脂肪酸中进行酸消化

摘要

The decreasing fossil fuel resources combined with an increasing world energy demand has raised an interest in renewable energy sources. The alternatives can be solar, wind and geothermal energies, but only biomass can be a substitute for the carbon–based feedstock, which is suitable for the production of transportation fuels and chemicals. However, a high oxygen content of the biomass creates challenges for the future chemical industry, forcing the development of new processes which allow a complete or selective oxygen removal without any significant carbon loss. Therefore, understanding and optimization of biomass deoxygenation processes are crucial for the future bio–based chemical industry. In this work, deoxygenation of fatty acids and their derivatives was studied over Pd/C and TiO2 supported noble metal catalysts (Pt, Pt–Re, Re and Ru) to obtain future fuel components.The 5 % Pd/C catalyst was investigated in semibatch and fixed bed reactors at 300 °C and 1.7–2 MPa of inert and hydrogen–containing atmospheres. Based on extensive kinetic studies, plausible reaction mechanisms and pathways were proposed.The influence of the unsaturation in the deoxygenation of model compounds and industrial feedstock – tall oil fatty acids – over a Pd/C catalyst was demonstrated. The optimization of the reaction conditions suppressed the formation of by–products, hence high yields and selectivities towards linear hydrocarbons and catalyst stability were achieved.Experiments in a fixed bed reactor filled with a 2 % Pd/C catalyst were performed with stearic acid as a model compound at different hydrogen–containing gas atmospheres to understand the catalyst stability under various conditions. Moreover, prolonged experiments were carried out with concentrated model compounds to reveal the catalyst deactivation.New materials were proposed for the selective deoxygenation process at lower temperatures (~200 °C) with a tunable selectivity to hydrodeoxygenation by using 4 % Pt/TiO2 or decarboxylation/decarbonylation over 4 % Ru/TiO2 catalysts. A new method for selective hydrogenation of fatty acids to fatty alcohols was demonstrated with a 4 % Re/TiO2 catalyst. A reaction pathway and mechanism for TiO2 supported metal catalysts was proposed and an optimization of the process conditions led to an increase in the formation of the desired products.
机译:化石燃料资源的减少,加上世界能源需求的增加,引起了人们对可再生能源的兴趣。替代品可以是太阳能,风能和地热能,但只有生物质可以替代碳基原料,该碳基原料适用于生产运输燃料和化学物质。然而,生物质中高的氧含量对未来的化学工业提出了挑战,迫使开发新的方法,该方法允许完全或选择性地除去氧而没有任何明显的碳损失。因此,对生物质脱氧工艺的理解和优化对于未来基于生物的化学工业至关重要。在这项工作中,研究了脂肪酸及其衍生物在Pd / C和TiO2负载的贵金属催化剂(Pt,Pt-Re,Re和Ru)上的脱氧以获得未来的燃料成分。半间歇式和固定床反应器,温度为300°C,惰性和含氢气氛为1.7–2 MPa。基于广泛的动力学研究,提出了合理的反应机理和途径。证明了不饱和键对模型化合物和工业原料妥尔油脂肪酸脱氧对Pd / C催化剂的影响。反应条件的优化抑制了副产物的形成,因此实现了高收率和对直链烃的选择性以及催化剂的稳定性。在填充有2%Pd / C催化剂的固定床反应器中,以硬脂酸为原料进行了实验。在不同的含氢气体气氛中模拟化合物,以了解催化剂在各种条件下的稳定性。此外,对浓缩的模型化合物进行了长时间的实验以揭示催化剂的失活情况。提出了新的材料用于较低温度(〜200°C)的选择性脱氧过程,并且可以通过使用4%Pt / TiO2或脱羧来调节加氢脱氧的选择性。在4%Ru / TiO 2催化剂上进行脱羰。用4%Re / TiO2催化剂证明了一种将脂肪酸选择性氢化为脂肪醇的新方法。提出了TiO 2负载金属催化剂的反应途径和机理,工艺条件的优化导致所需产物的形成增加。

著录项

  • 作者

    Rozmyslowicz Bartosz;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号