首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Influence of Zr on the performance of Mg-Al catalysts via hydrotalcite-like precursors for the synthesis of glycerol carbonate from urea and glycerol
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Influence of Zr on the performance of Mg-Al catalysts via hydrotalcite-like precursors for the synthesis of glycerol carbonate from urea and glycerol

机译:Zr对尿溶胶碳酸盐碳酸甘油碳酸盐的影响Zr对Mg-Al催化剂的性能的影响

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摘要

A series of Zr-containing Mg-Al hydrotalcite-like (HTI) precursors were prepared using co-precipitation method with Zr4+: (Al3++ Zr4+) from 0 to 0.7. It was demonstrated by X-ray diffraction that the yield of the HTl phase declined on increasing of Zr content. Then, Mg-Al-Zr mixed oxide (CHT-Zr) catalysts were obtained by calcining of the corresponding HTl precursors and they all exhibited mesoporous structure after heat treatment. Based on systemic characterization, it was observed that the amount of Zr additive showed a great effect on the structure and acidic-basic property of CHT-Zr samples. Meanwhile, such CHT-Zr catalysts were effective catalysts for the glycerol carbonate (GLC) synthesis from glycerol and urea. Afterwards, the function of acidic and basic sites in each reaction path identified in this research was elucidated based on the reactant conversion and product selectivity. It proved that the acidic sites were inclined to promote the reaction towards GLC synthesis, while all the paths towards the by-products were significantly catalyzed by the basic sites. However, the catalysts with extra strong acidity did not facilitate the GLC production due to poisoning of surface active sites by urea adsorption. So, a well-balanced acidic-basic property was important to obtain high GLC yield with good selectivity. Among all the catalytic samples, the catalysts with Zr4+: (Al3+ + Zr4+) = 0.3 showed the best catalytic performance with 87.8% yield of GLC. Moreover, different reaction parameters such as reaction temperature, reaction time, catalyst amount and vacuum degree were investigated and optimum conditions were established. Additionally, this catalyst could be readily recycled and reused for at least four times without any activation treatment, while still possessing high activity.
机译:使用Zr4 +:(Al3 ++ Zr4 +)的共沉淀法制备含有Zr4 +:(Al3 ++ Zr4 +)的共沉淀法制备一系列含Zr的Mg-Al水滑石状(HTI)前体。通过X射线衍射证明,HT1相的产率下降在增加Zr含量上。然后,通过煅烧相应的HTL前体获得Mg-Al-Zr混合氧化物(CHT-Zr)催化剂,并在热处理后表现出介孔结构。基于全身表征,观察到ZR添加剂的量对CHT-ZR样品的结构和酸性基本性质显示出很大的影响。同时,这种CHT-ZR催化剂是用于甘油和尿素的甘油碳酸酯(GLC)合成的有效催化剂。然后,基于反应性转化和产品选择性,阐明了该研究中鉴定的每种反应路径中酸性和碱性位点的功能。事实证明,酸性位点倾向于促进对GLC合成的反应,而副产物的所有路径都被碱性基本显着催化。然而,由于通过尿素吸附,具有超强酸度的催化剂并不促进Glc产生的Glc产量。因此,平衡良好的酸性基本性质是具有良好选择性的高GLC产量很重要。在所有催化样品中,用Zr4 +:(Al3 + + + Zr4 +)= 0.3的催化剂显示最佳催化性能,GLC的87.8%。此外,研究了不同的反应参数,例如反应温度,反应时间,催化剂量和真空度,并建立了最佳条件。另外,该催化剂可以容易地再循环并重复使用至少四次,而不存在任何活化处理,同时仍具有高活性。

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