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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Dehydration of lactic acid to acrylic acid over lanthanum phosphate catalysts: the role of Lewis acid sites
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Dehydration of lactic acid to acrylic acid over lanthanum phosphate catalysts: the role of Lewis acid sites

机译:磷酸镧催化剂将乳酸脱水成丙烯酸:路易斯酸位的作用

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摘要

Lanthanum phosphate (LaP) nano-rods were synthesized using n-butylamine as a shape-directing agent (SDA). The resulting catalysts were applied in the dehydration of lactic acid to acrylic acid. Aiming to understand the nature of the active sites, the chemical and physical properties of LaP materials were studied using a variety of characterization techniques. This study showed that the SDA not only affected the porosity of the LaP materials but also modified the acid-base properties. Clearly, the modification of the acid-base properties played a more critical role in determining the catalytic performance than porosity. An optimized catalytic performance was obtained on the LaP catalyst with a higher concentration of Lewis acid sites. Basic sites showed negative effects on the stability of the catalysts. Good stability was achieved when the catalyst was prepared using the appropriate SDA/La ratio.
机译:以正丁胺为定型剂(SDA)合成了磷酸镧(LaP)纳米棒。将得到的催化剂用于乳酸脱水成丙烯酸。为了了解活性位点的性质,使用了多种表征技术对LaP材料的化学和物理性质进行了研究。这项研究表明,SDA不仅影响LaP材料的孔隙率,而且还改变了酸碱性质。显然,酸度性质的改变在决定催化性能方面比孔隙度起着更为关键的作用。在具有较高路易斯酸中心浓度的LaP催化剂上获得了优化的催化性能。碱性部位对催化剂的稳定性显示出负面影响。当使用适当的SDA / La比率制备催化剂时,获得了良好的稳定性。

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