Control of N-(phosphonomethyl) iminodiacetic acid conversion in manufacture of glyphosate

This invention relates to the preparation of N-(phosphonomethyl)glycine ('glyphosate') from N-(phosphonomethyl)iminodiacetic acid ('PMIDA'), and more particularly to a method for control of the conversion of PMIDA, for the identification of reaction end points relating to PMIDA c...

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Hauptverfasser: STEPHEN D. PROSCH, MARK D. SCAIA, ERIC A. HAUPFEAR, JOHN WAGENKNECHT, ROBERT E. BYRD, ALFREDO OBA, CARL MUMFORD, OLIVER LERCH, DONALD D. SOLETA, EDUARDO A. CASANOVA, BART ROOSE, LEONARD AYNARDI, PETER E. ROGERS, JAMES P. COLEMAN, DAVID Z. BECHER, DAVID R. EATON, LOWELL R. SMITH, WALTER K. GAVLICK
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creator STEPHEN D. PROSCH
MARK D. SCAIA
ERIC A. HAUPFEAR
JOHN WAGENKNECHT
ROBERT E. BYRD
ALFREDO OBA
CARL MUMFORD
OLIVER LERCH
DONALD D. SOLETA
EDUARDO A. CASANOVA
BART ROOSE
LEONARD AYNARDI
PETER E. ROGERS
JAMES P. COLEMAN
DAVID Z. BECHER
DAVID R. EATON
LOWELL R. SMITH
WALTER K. GAVLICK
description This invention relates to the preparation of N-(phosphonomethyl)glycine ('glyphosate') from N-(phosphonomethyl)iminodiacetic acid ('PMIDA'), and more particularly to a method for control of the conversion of PMIDA, for the identification of reaction end points relating to PMIDA conversion and the preparation of glyphosate products having controlled PMIDA content whereby the generation of carbon dioxide in the reaction zone is monitored.
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subjects ACYCLIC, CARBOCYCLIC OR HETEROCYCLIC COMPOUNDS CONTAININGELEMENTS OTHER THAN CARBON, HYDROGEN, HALOGEN, OXYGEN, NITROGEN,SULFUR, SELENIUM OR TELLURIUM
CHEMISTRY
METALLURGY
ORGANIC CHEMISTRY
title Control of N-(phosphonomethyl) iminodiacetic acid conversion in manufacture of glyphosate
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