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Use of a supplemental promoter in conjunction with a carbon-supported, noble metal containing catalyst in liquid phase oxidation reactions

机译:辅助促进剂与碳负载的含贵金属催化剂一起在液相氧化反应中的使用

摘要

This invention relates to the use of a supplemental promoter in conjunction with a noble-metal-containing catalyst comprising a carbon support in catalyzing liquid phase oxidation reactions, a process for making of an improved catalyst comprising such a supplemental promoter, and an improved catalyst comprising such a supplemental promoter.;In a particularly preferred embodiment, a supplemental promoter (most preferably bismuth or tellurium) is used in conjunction with a noble-metal-containing catalyst comprising a carbon support in a liquid phase oxidation process wherein N-(phosphonomethyl)iminodiacetic acid (i.e., "PMIDA") or a salt thereof is oxidized to form N-(phosphonomethyl)glycine (i.e., "glyphosate") or a salt thereof. The benefits of such a process include increased oxidation of the formaldehyde and formic acid by-products, and, consequently, decreased final concentrations of those by-products as well as other undesirable by-products, most notably N-methyl-N-(phosphonomethyl)glycine (i.e., "NMG").
机译:本发明涉及补充促进剂与包含碳载体的含贵金属的催化剂在催化液相氧化反应中的用途,包含该补充促进剂的改进的催化剂的制备方法,以及包含在一个特别优选的实施方案中,在N-(膦酰基甲基)的液相氧化过程中,将辅助促进剂(最优选为铋或碲)与包含碳载体的含贵金属的催化剂一起使用。亚氨基二乙酸(,“ PMIDA”)或其盐被氧化形成N-(膦酰基甲基)甘氨酸(,“草甘膦”)或其盐。这种方法的好处包括增加甲醛和甲酸副产物的氧化,并因此降低那些副产物以及其他不良副产物,尤其是N-甲基-N-(膦酰基甲基)的最终浓度。 )甘氨酸( ie ,“ NMG”)。

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