首页> 外文期刊>Frontiers in Chemistry >Physico-Chemical Properties of MgGa Mixed Oxides and Reconstructed Layered Double Hydroxides and Their Performance in Aldol Condensation of Furfural and Acetone
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Physico-Chemical Properties of MgGa Mixed Oxides and Reconstructed Layered Double Hydroxides and Their Performance in Aldol Condensation of Furfural and Acetone

机译:MgGa混合氧化物和重构层状双氢氧化物的理化性质及其在糠醛和丙酮的醛醇缩合中的性能

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MgGa layered double hydroxides (Mg/Ga=2-4) were synthesized and used for the preparation of MgGa mixed oxides and reconstructed hydrotalcites. The properties of the prepared materials were examined by physico-chemical methods (XRD, TGA, NH3-TPD, CO2-TPD, SEM and DRIFT) and tested in aldol condensation of furfural and acetone. The as-prepared phase-pure MgGa samples possessed hydrotalcite structure, and their calcination resulted in mixed oxides with MgO structure with a small admixture phase characterized by a reflection at 2θ ≈ 36.0°. The interaction of MgGa mixed oxides with pure water resulted in reconstruction of the HTC structure already after 15 s of the rehydration with maximum crystallinity achieved after 60 s. TGA-MS experiments proved a substantial decrease in carbonates in all rehydrated samples compared with their as-prepared counterparts. This allowed suggesting presence of interlayer hydroxyls in the samples. Acido-basic properties of MgGa mixed oxides determined by TPD technique did not correlate with Mg/Ga ratio which was explained by the specific distribution of Ga atoms on the external surface of the samples. CO2-TPD method was also used to evaluate the basic properties of the reconstructed MgGa samples. In these experiments, an intensive peak at T=450 °C on CO2-TPD curve was attributed to the decomposition of carbonates newly formed by CO2 interaction with interlayer carbonates rather than to CO2 desorption from basic sites. Accordingly, CO2-TPD method quantitatively characterized the interlayer hydroxyls only indirectly. Furfural conversion on reconstructed MgGa materials was much larger compared with MgGa mixed oxides confirming that Br?nsted basic sites in MgGa catalysts, like MgAl catalysts, were active in the reaction. Mg/Ga ratio in mixed oxides influenced product selectivity which was explained by the difference in textural properties of the samples. In contrast, Mg/Ga ratio in reconstructed catalysts had practically no effect on the composition of reaction products suggesting that the basic sites in these catalysts acted similarly in aldol condensation of acetone with furfural. It was concluded that the properties of MgGa samples resembled in a great extent those of MgAl hydrotalcite-based materials and demonstrated their potential as catalysts for base-catalyzed reactions.
机译:合成了MgGa层状双氢氧化物(Mg / Ga = 2-4),并用于制备MgGa混合氧化物和重构的水滑石。通过物理化学方法(XRD,TGA,NH3-TPD,CO2-TPD,SEM和DRIFT)检查了所制备材料的性能,并在糠醛和丙酮的醛醇缩合中进行了测试。所制备的纯相MgGa样品具有水滑石结构,煅烧后生成的MgO结构混合氧化物具有较小的混合相,其特征是在2θ≈36.0°处有反射。 MgGa混合氧化物与纯净水的相互作用导致HTC结构在水合15 s后即已重建,而在60 s后达到最大结晶度。 TGA-MS实验证明,与重新制备的同类产品相比,所有再水化样品中的碳酸盐含量均大幅降低。这表明样品中存在层间羟基。用TPD技术测定的MgGa混合氧化物的酸碱性与Mg / Ga的比例不相关,这可以通过样品外表面Ga原子的特定分布来解释。 CO2-TPD方法还用于评估重建的MgGa样品的基本性能。在这些实验中,CO2-TPD曲线上T = 450°C处的密集峰归因于CO2与层间碳酸盐相互作用而新形成的碳酸盐分解,而不是归因于CO2从碱性位点解吸。因此,CO2-TPD法仅间接地定量表征了层间羟基。与MgGa混合氧化物相比,在重构的MgGa材料上的糠醛转化率要大得多,这证实了MgGa催化剂(如MgAl催化剂)中的布朗斯台德碱性位点在反应中具有活性。混合氧化物中的Mg / Ga比影响产物的选择性,这可以通过样品的织构特性差异来解释。相反,重构催化剂中的Mg / Ga比对反应产物的组成几乎没有影响,表明这些催化剂中的碱性位点在丙酮与糠醛的醛醇缩合中的作用相似。结论是,MgGa样品的性质在很大程度上类似于MgAl水滑石基材料的性质,并证明了其作为碱催化反应的催化剂的潜力。

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