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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Dehydration of fructose over thiol- and sulfonic- modified alumina in a continuous reactor for 5-HMF production: Study of catalyst stability by NMR
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Dehydration of fructose over thiol- and sulfonic- modified alumina in a continuous reactor for 5-HMF production: Study of catalyst stability by NMR

机译:在连续反应器中脱氧果糖对硫醇和磺胺改性氧化铝的脱水,用于5-HMF生产:NMR的催化剂稳定性研究

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摘要

In the present study, the synthesis of an organic group-modified alumina by the sol-gel method is proposed. This material has shown to have an enhanced catalytic performance with grafted organic groups and showed an improved stability. The prepared material has shown to have several O-H groups and an enhanced surface acidity. The alumina acidity was improved by incorporating thiol groups by grafting method, which promotes the tautomerization of fructose to its furanose form. Furthermore, the grafting of sulfonic groups catalyzes its dehydration. The modified alumina was thermally treated up to 200 degrees C to improve the functional groups stability. After, this modified material was packed into a continuous reactor system, designed and built by this group, to obtain 5-hydroxymethylfurfural (5-HMF) from fructose dissolved in a single-phase solution of tetrahydrofuran (THF) and H2O (4:1 w/w). The catalytic activity of this material was evaluated by the reaction of fructose dehydration at different reaction temperatures (60, 70, 80 and 90 degrees C). Fructose conversion and selectivity towards 5-HMF were determined by high performance liquid chromatography (HPLC), obtaining 95% and 73% respectively for the highest temperature. The catalyst showed an efficient stability after 24 h in continuous flow at 70 degrees C. The loss of sulfur content was 15%, but the fructose conversion yield and the selectivity to 5-HMF after 24 h of continuous reaction did not undergo significant changes (less than 5%). The nuclear magnetic resonance (NMR) tests confirmed the presence of the thiol and sulfonic groups before and after 24 h of reaction, as well as the conservation of the same structure, demonstrating the efficient catalytic performance of the material. The catalysts were characterized by nitrogen adsorption/desorption, X-ray diffraction and infrared (IR) spectroscopy. Also, before and after use by utilizing elemental analysis and H-1-C-13 cross-polarization magic-angle spinning (CPMAS) and dynamic-nuclear polarization (DNP)-enhanced H-1-C-13 and H-1-Si-29 CPMAS as well as directly excited Si-29 magic-angle spinning (MAS) NMR methods in solid-state.
机译:在本研究中,提出了通过溶胶 - 凝胶法合成有机基团改性氧化铝。该材料显示出具有嫁接有机基团的增强催化性能,并显示出改善的稳定性。制备的材料已显示有几个O-H组和增强的表面酸度。通过嫁接方法掺入硫醇基质来改善氧化铝酸度,这促进了果糖的跳跃到其呋喃糖形式。此外,磺酸基团的接枝催化其脱水。将改性氧化铝热处理到200℃,以改善官能团稳定性。之后,将该改性材料填充到由该组设计和构建的连续反应器系统中,得到5-羟甲基糠醛(5-HMF),从溶解在四氢呋喃(THF)和H 2 O的单相溶液中的果糖(4:1 w / w)。通过果糖脱水在不同反应温度(60,70,80和90℃)的反应来评价该材料的催化活性。通过高效液相色谱(HPLC)测定果糖转化和选择性为5-HMF,分别获得95%和73%的最高温度。催化剂在24小时后在70摄氏度下连续流动后显示出高效的稳定性。硫含量的损失为15%,但在连续反应24小时后,果糖转化率和5-HMF的选择性不会发生重大变化(小于5%)。核磁共振(NMR)试验证实了在24小时后和后24小时后和硫磺基团的存在,以及保护相同的结构,展示了材料的有效催化性能。通过氮吸附/解吸,X射线衍射和红外(IR)光谱表征催化剂。另外,通过利用元素分析和H-1-C-13交叉偏振魔角旋转(CPMAS)和动态核偏振(DNP)-NONACACE H-1-C-13和H-1 - SI-29 CPMAS以及直接激发的SI-29魔法角旋转(MAS)NMR方法在固态中。

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