Synthesis of glyphosate from glycine using zeolites as catalysts
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Title Synthesis of glyphosate from glycine using zeolites as catalysts
Creator Pichate Hublee
Contributor Amorn Petsom, Chanya Chaicharoenpong
Publisher Chulalongkorn University
Publication Year 2550
Keyword Glyphosate, Glycine, Zeolites, ไกลโฟเสท, ยากำจัดวัชพืช, ซีโอไลต์, ตัวเร่งปฏิกิริยา
Abstract Glyphosate (N-phosphonomethylglycine) is the most frequently used herbicide in the world. It is used to control a wide variety of annual and perennial weeds. Glyphosate is used worldwide in the form of an aqueous solution of isopropylamine salt and this organic phosphorous herbicide is considered as a non-toxic herbicide for mammals when used normally. At present, preparation of glyphosate in the industry comprises of two steps; (1) preparation of N-phosphonomethyliminodiacetic acid from iminodiacetic acid and (2) oxidation of N-phosphonomethyliminodiacetic to glyphosate using cobalt(II)chloride as a catalyst. In this research, we synthesized glyphosate from formaldehyde, glycine and phosphorous acid as one-pot reaction. Two optimum conditions were found: (1) The use of 2:1:1 formaldehyde:glycine: phosphorous acid mole ratio at 70 C for 2 hours giving 35% yield; (2) The use of 2:1:0.5 formaldehyde:glycine:phosphorous acid mole ratio with the catalysis of acid activated molecular sieve 3A (137 meq/100 g; 4 g per 1 mole glycine) at the same temperature and reaction time, leading to 39% yield. However, using hydrochloric acid as a catalyst gave higher yield of glyphosate than using sulfuric acid as a catalyst. The resulting product mixtures were monitored and quantitatively determined by proton nuclear magnetic resonance spectroscopy using sodium acetate as an internal standard.
URL Website cuir.car.chula.ac.th
Chulalongkorn University

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