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首页> 外文期刊>RSC Advances >Aldol condensation of acetic acid with formaldehyde to acrylic acid over Cs(Ce, Nd) VPO/SiO2 catalyst
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Aldol condensation of acetic acid with formaldehyde to acrylic acid over Cs(Ce, Nd) VPO/SiO2 catalyst

机译:在Cs(Ce,Nd)VPO / SiO 2 催化剂上乙酸与甲醛的醛醇缩合生成丙烯酸

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摘要

Cs, Ce, and Nd cation-modified VPO/SiO2 catalysts were prepared by a deposition method. The VPO/SiO2 catalyst was composed of VOPO4 and (VO)2P2O7 phases. When Cs, Ce, and Nd cations were added in the VPO/SiO2 catalyst, Cs4P2O7, CePO4, and NdPO4 were formed and V5+/V4+ ratio increased, respectively. The basicities of the metallic cation-modified catalysts increased while their acidities exhibited maximum values with the increase in the ratios of metallic cation to vanadium. The metallic cation-modified VPO/SiO2 catalysts exhibited higher catalytic activities for the aldol condensation reaction of acetic acid with formaldehyde to acrylic acid than the VPO/SiO2 catalyst. The high acidity and basicity of the metallic cation-modified VPO/SiO2 catalysts favored the formation of acrylic acid.
机译:采用沉积法制备了Cs,Ce和Nd阳离子改性的VPO / SiO 2 催化剂。 VPO / SiO 2 催化剂由VOPO 4 和(VO) 2组成 P 2 O 7 相。在VPO / SiO 2 催化剂中添加Cs,Ce和Nd阳离子时,Cs 4 P < small> 2 O 7 ,CePO 4 和NdPO形成了 4 ,并且V 5 + / V 4 + < / small>比率分别增加。随着金属阳离子与钒的比例的增加,金属阳离子改性催化剂的碱度增加,而其酸度显示出最大值。金属离子改性的VPO / SiO 2 催化剂对乙酸与甲醛的醛醇缩合反应生成丙烯酸的催化活性高于VPO / SiO < sub> 2 催化剂。金属阳离子改性的VPO / SiO 2 催化剂的高酸性和高碱性有利于丙烯酸的形成。

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