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Dehydration of 1,5-Pentanediol over ZrO2-ZnO Mixed Oxides

机译:Zro2-Zno混合氧化物的1,5-戊二醇的脱水

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Zn addition was found to affect both activity and selectivity of ZrO2 for dehydration of 1,5-pentanediol.ZrO2 tends to produce more or less equimolar mixture of tetrahydropyran(THP)derivatives and 4-penten-1-ol from 1,5-pentanediol.The conversion of 1,5-pentanediol on ZrO2 increases with increasing Zn content up to 30–50 mole percent;however,catalyst containing Zn beyond 50 mole percent had an adverse effect on both conversion of diol and the selectivity for unsaturated alcohol(i.e.,4-penten-1-ol).XRD and Raman analysis infer that the presence of tetragonal ZrO2,the amorphous phase(ZrO2,ZrZnOx,ZnO),and hexagonal wurtzite structure of ZnO in the catalysts.The interplanar spacing of ZrO2(111)and ZnO(100)planes for catalysts indicate that Zn incorporates into ZrO2 lattice and vice-versa.Basicity assessed from CO2-TPD and acidity from FTIR-pyridine adsorption techniques indicate that both basicity and Lewis acid sites density increases with increasing Zn proportion on ZrO2 up to 50:50 molar ratios of Zn to Zr.An optimum Zn:Zr mole ratio is required to achieve higher density of oxygen vacant metal sites(i.e.,Lewis acidity)and balanced acid-base strength which improves the diol conversion.
机译:发现Zn添加会影响ZRO2对1,5-戊二二醇的脱水的活性和选择性。ZRO2倾向于产生或多或少产生四氢吡喃(THP)衍生物的等摩尔混合物或从1,5-戊二醇中产生的4-五氢丙烷(THP)衍生物。 。ZRO2上1,5-戊二醇的转化随着锌含量的增加高达30-50摩尔的增加;但是,含有锌超过50摩尔百分比的催化剂对二醇的转化和不饱和酒精的选择性都有不利影响(即。 ,4-五元1-ol).xrd和拉曼分析,推断四角ZRO2的存在,无定形相(Zro2,Zrznox,Zno)和Zno中Zno中的六角晶状体结构。 )和ZnO(100)催化剂的平面表明,Zn掺入ZRO2晶格中,反之亦然。从CO2-TPD中评估的基础性和FTIR-Pyridine吸附技术的酸度表明,碱性和Lewis酸位点的密度随着Zn的增加而增加ZRO2最多50:50 mola Zn与ZR的R比率是最佳的Zn:ZR摩尔比以实现更高的氧气空位位点密度(即路易斯酸度)和平衡的酸碱强度,从而改善了DIOL转化率。

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