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首页> 外文期刊>Frontiers in Chemistry >Lactic Acid Conversion to Acrylic Acid Over Fluoride-Substituted Hydroxyapatites
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Lactic Acid Conversion to Acrylic Acid Over Fluoride-Substituted Hydroxyapatites

机译:氟酸转化为氟化物取代的羟基磷灰石上的丙烯酸转化

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摘要

One of the most interesting intermediates for the chemical industry is acrylic acid, which can be derived from lactic acid by catalytic dehydration in the gas phase. The realization of this reaction is complex due to a strong thermal activation leading to the formation of undesired by-products (acetaldehyde, propanoic acid…) as well as polymerization. We studied this reaction over hydroxyapatites modified by substitution of the hydroxyl groups by fluoride. This notably enabled increasing the selectivity to acrylic acid while reducing the formation of the undesired acetaldehyde. Introduction of fluoride induced a modification of the phosphate (PO43-) groups. In the presence of water, fluoride prevented the formation of hydrogenophosphate species (HPO42-), which are well-known acid sites responsible for the formation of acetaldehyde by decarboxylation / decarbonylation. Further, we evidenced an important impact of fluoride substitution on crystallinity, specific surface area and on the surface Ca/P ratio. This latter is known to be a key parameter to control the acidity and the basicity of the hydroxyapatites. Using FT-IR spectroscopy with propyne as a probe molecule, we could show that lactic acid was concertedly adsorbed on basic and acid sites, which might be at the origin of the observed superior performances.
机译:化学工业中最有趣的中间体之一是丙烯酸,其可以通过气相中的催化脱水衍生自乳酸。由于强热活化,该反应的实现是复杂的,导致形成不希望的副产物(乙醛,丙酸......)以及聚合。通过通过氟化物取代羟基的羟基磷灰石对羟基磷灰石的这种反应进行了研究。这显着的是使能量增加对丙烯酸的选择性,同时减少不需要的乙醛的形成。氟化物引入诱导磷酸盐(PO43-)组的改性。在水的存在下,氟化物阻止了氢磷酸盐物质(HPO 42)的形成,其是通过脱羧/脱碳剂形成乙醛的众所周知的酸部位。此外,我们证明了氟化物取代对结晶度,比表面积和表面Ca / P比的重要影响。已知后者是控制酸度和羟基磷灰石的碱度的关键参数。使用FT-IR光谱用proPyne作为探针分子,我们可以表明乳酸齐齐于碱性和酸位点,这可能是观察到的优异性能的起源。

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