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Bio-ethanol valorization towards C4s including 1-butanol over metal modified alumina and zeolite catalysts

机译:在金属改性的氧化铝和沸石催化剂上对包括1-丁醇在内的C4进行生物乙醇增值

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摘要

Bio-ethanol has been used as a fuel additive in modern society aimed at reducing CO2-emissions and dependence on oil. However, ethanol is unsuitable as fuel supplement in higher proportions due to its physico-chemical properties. One option to counteract the negative effects is to upgrade ethanol in a continuous fixed bed reactor to more valuable C4 products such as 1-butanol providing chemical similarity with traditional gasoline components. Bio-ethanol based valorization products also have other end-uses than just fuel additives. E.g. 1-butanol and ethyl acetate are well characterised industrial solvents and platform chemicals providing greener alternatives.The modern approach is to apply heterogeneous catalysts in the investigated reactions. The research was concentrated on aluminium oxide (Al2O3) and zeolites that were used as catalysts and catalyst supports. The metals supported (Cu, Ni, Co) gave very different product profiles and, thus, a profound view of different catalyst preparation methods and characterisation techniques was necessary.Additionally, acidity and basicity of the catalyst surface have an important role in determining the product profile. It was observed that ordinary determination of acid strength was not enough to explain all the phenomena e.g. the reaction mechanism. One of the main findings of the thesis is based on the catalytically active site which originates from crystallite structure. As a consequence, the overall evaluation of different by-products and intermediates was carried out by combining the information. Further kinetic analysis was carried out on metal (Cu, Ni, Co) supported self-prepared alumina catalysts. The thesis gives information for further catalyst developments aimed to scale-up towards industrially feasible operations.
机译:在现代社会中,生物乙醇已被用作燃料添加剂,旨在减少二氧化碳的排放和对石油的依赖。然而,由于乙醇的物理化学性质,它不适合用作较高比例的燃料补充剂。抵消负面影响的一种选择是将连续固定床反应器中的乙醇升级为更有价值的C4产品,例如1-丁醇,提供与传统汽油成分的化学相似性。基于生物乙醇的增值产品不仅具有燃料添加剂,还具有其他最终用途。例如。 1-丁醇和乙酸乙酯是表征良好的工业溶剂和平台化学品,提供了更绿色的替代品。现代方法是在研究的反应中应用多相催化剂。该研究集中在用作催化剂和催化剂载体的氧化铝(Al2O3)和沸石上。负载的金属(铜,镍,钴)给出的产品轮廓非常不同,因此必须深入了解不同的催化剂制备方法和表征技术。此外,催化剂表面的酸度和碱度对确定产物具有重要作用。轮廓。观察到,常规的酸强度测定不足以解释所有现象,例如酸碱度。反应机理。论文的主要发现之一是基于源自微晶结构的催化活性位。结果,通过结合信息对不同的副产物和中间体进行了总体评估。对金属(铜,镍,钴)负载的自行制备的氧化铝催化剂进行了进一步的动力学分析。本文为进一步催化剂开发提供了信息,这些催化剂旨在扩大规模以实现工业上可行的操作。

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    Riittonen Toni;

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  • 年度 2013
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