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Study on a New Synthesis Approach of Glyphosate

机译:草甘膦合成新方法的研究

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On the basis of glycine-dimethyl phosphite synthesis of glyphosate, a new synthesis approach of glyphosate, without using triethylamine and the establishment of triethylamine recovery equipment, was designed in the laboratory. The environmental pollutants were reduced. The influences of reactant amount (mol), reaction temperature (°C), and reaction time (min) on the glyphosate yield and purity were investigated. The results showed that the glyphosate yield and purity could be 80.12 and 86.31 wt %, respectively, under the optimum scheme for glyphosate yield (glycine consumption, 0.1 mol; dimethyl phosphite consumption, 0.12 mol; condensation reaction temperature, 50 °C; hydrochloric acid consumption in hydrolysis reaction, 0.35 mol; temperature of acidification with hydrochloric acid, 10 °C; adjusting hydrolysis product pH value, 1.0; time of dropping esterifying liquid into hydrochloric acid in hydrolysis reaction, 80 min; hydrolysis reaction temperature, 120 °C; and vacuum distillation time, 90 min), and the glyphosate yield and purity could be 77.92 and 94.94 wt %, respectively, under the optimum scheme for glyphosate purity (glycine consumption, 0.1 mol; dimethyl phosphite consumption, 0.1 mol; condensation reaction temperature, 50 °C; hydrochloric acid consumption in hydrolysis reaction, 0.35 mol; temperature of acidification with hydrochloric acid, 10 °C; adjusting hydrolysis product pH value, 1.5; time of dropping esterifying liquid into hydrochloric acid in hydrolysis reaction, 60 min; hydrolysis reaction temperature, 110 °C; and vacuum distillation time, 90 min). The product structures under the two schemes were confirmed by means of FTIR (Fourier transform infrared spectroscopy) and 'H NMR (~1H nuclear magnetic resonance spectroscopy).
机译:在实验室设计的基础上,以甘氨酸-亚磷酸二甲酯合成草甘膦为基础,设计了一种不使用三乙胺的新草甘膦合成方法,并建立了三乙胺回收设备。减少了环境污染物。研究了反应物量(mol),反应温度(℃)和反应时间(min)对草甘膦收率和纯度的影响。结果表明,在草甘膦收率最佳方案(甘氨酸消耗量为0.1 mol;亚磷酸二甲酯消耗量为0.12 mol;缩合反应温度为50°C;盐酸)下,草甘膦收率和纯度分别为80.12 wt%和86.31 wt%。水解反应的消耗量为0.35mol;用盐酸酸化的温度为10℃;将水解产物的pH值调节为1.0;在水解反应中将酯化液滴加到盐酸中的时间为80分钟;水解反应温度为120℃。在最佳的草甘膦纯度方案(甘氨酸消耗量为0.1 mol;亚磷酸二甲酯消耗量为0.1 mol;缩合反应温度: 50℃;水解反应中的盐酸消耗量为0.35mol;用盐酸酸化的温度为10℃;调节水解产物的pH v 1.5;水解反应中将酯化液滴加到盐酸中的时间为60分钟。水解反应温度为110℃;真空蒸馏时间为90分钟)。通过FTIR(傅里叶变换红外光谱法)和1 H NMR(〜1H核磁共振光谱法)证实了两种方案下的产物结构。

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