Patent classifications
C07C269/00
NOVEL CONFIGURATION AND ITS USE IN PROCESS FOR SYNTHESIS OF ALKYL CARBAMATES FROM ALKYL ALCOHOL AND UREA IN A TUBULAR REACTOR
The present invention discloses an improved catalyst free process for synthesis of alkyl carbamates in an integrated system comprising a tubular reactor and a striper. The process comprises reacting urea and an alcohol in said tubular reactor under autogeneous pressure; wherein said process provides >90% selectivity towards alkyl carbamate. The mixture of urea and alcohol is N fed to the tubular reactor at a particular feed rate. The tubular reactor is heated externally under autogeneous pressure to carry out a synthesis reaction producing alkyl carbamate and ammonia. The ammonia is removed from the tubular reactor by the striper. The tubular reactor and the stripper are arranged in series to reduce the equilibrium limitations of the reaction and drive the reaction in forward direction.
NOVEL CONFIGURATION AND ITS USE IN PROCESS FOR SYNTHESIS OF ALKYL CARBAMATES FROM ALKYL ALCOHOL AND UREA IN A TUBULAR REACTOR
The present invention discloses an improved catalyst free process for synthesis of alkyl carbamates in an integrated system comprising a tubular reactor and a striper. The process comprises reacting urea and an alcohol in said tubular reactor under autogeneous pressure; wherein said process provides >90% selectivity towards alkyl carbamate. The mixture of urea and alcohol is N fed to the tubular reactor at a particular feed rate. The tubular reactor is heated externally under autogeneous pressure to carry out a synthesis reaction producing alkyl carbamate and ammonia. The ammonia is removed from the tubular reactor by the striper. The tubular reactor and the stripper are arranged in series to reduce the equilibrium limitations of the reaction and drive the reaction in forward direction.
Synthesis of methyl carbamate and dimethyl carbonate (DMC) in presence of stripping with inert gas or superheated vapours and a reactor for the same
The invention relates to synthesis of methyl carbamate (MC) and dimethyl carabonate (DMC) in presence of stripping inert gas or superheated methanol vapors using packed column reactor and bubble column reactor.
Synthesis of methyl carbamate and dimethyl carbonate (DMC) in presence of stripping with inert gas or superheated vapours and a reactor for the same
The invention relates to synthesis of methyl carbamate (MC) and dimethyl carabonate (DMC) in presence of stripping inert gas or superheated methanol vapors using packed column reactor and bubble column reactor.
Synthesis of methyl carbamate and dimethyl carbonate (DMC) in presence of stripping with inert gas or superheated vapours and a reactor for the same
The invention relates to synthesis of methyl carbamate (MC) and dimethyl carabonate (DMC) in presence of stripping inert gas or superheated methanol vapors using packed column reactor and bubble column reactor.
Nα, Nα, Nα-trialkyl histidine derivatives useful for the preparation of ergothioneine compounds
Provided herein are N.sup.,N.sup.,N.sup.-trialkyl histidine derivative compounds and methods of their preparation. Also provided are methods of their use for preparing useful compounds such as ergothioneine.
Nα, Nα, Nα-trialkyl histidine derivatives useful for the preparation of ergothioneine compounds
Provided herein are N.sup.,N.sup.,N.sup.-trialkyl histidine derivative compounds and methods of their preparation. Also provided are methods of their use for preparing useful compounds such as ergothioneine.
Nα, Nα, Nα-trialkyl histidine derivatives useful for the preparation of ergothioneine compounds
Provided herein are N.sup.,N.sup.,N.sup.-trialkyl histidine derivative compounds and methods of their preparation. Also provided are methods of their use for preparing useful compounds such as ergothioneine.
INTEGRATED PROCESS FOR CARBON CAPTURE AND ENERGY PRODUCTION
The present invention pertains to new methods for generating energy and useful nitrogen compounds from captured carbon dioxide. It involves employing an osmotic engine, draw solution, and feed solution. An osmotic gradient between the solutions assists in generating energy and a solution of ammonium carbonate, ammonium bicarbonate or mixture thereof. This solution may be decomposed to form ammonia, carbon dioxide, a precipitate, or a mixture thereof.
INTEGRATED PROCESS FOR CARBON CAPTURE AND ENERGY PRODUCTION
The present invention pertains to new methods for generating energy and useful nitrogen compounds from captured carbon dioxide. It involves employing an osmotic engine, draw solution, and feed solution. An osmotic gradient between the solutions assists in generating energy and a solution of ammonium carbonate, ammonium bicarbonate or mixture thereof. This solution may be decomposed to form ammonia, carbon dioxide, a precipitate, or a mixture thereof.