Method for producing glycine
Provided is a method for producing glycine, in which on synthesizing glycine from glycinonitrile, glycine can be obtained in a higher yield than that in the conventional method. The present invention relates to a method for producing glycine, including allowing glycinonitrile and water to react with each other in the presence of a cerium compound, optionally adding ammonia thereto, to obtain glycine.
1. A method for producing glycine, comprising allowing glycinonitrile and water to react with each other in the presence of a cerium compound, to obtain glycine,
wherein the cerium compound is a cerium-containing oxide which is a supported type metal oxide in which a component containing at least one metal element selected from the group consisting of lithium, iron, cobalt, nickel, copper, strontium, yttrium, indium, barium, lanthanum, praseodymium, neodymium, europium, lead, and hafnium is supported on a cerium oxide or a complex metal oxide of cerium and at least one other metal element, and
wherein the method further comprises adding ammonia into the reaction system where glycinonitrile and water are allowed to react with each other in the presence of the cerium compound.
2. The method for producing glycine according to claim 1 , wherein the other metal element in the complex metal oxide contains zirconium.
3. The method for producing glycine according to claim 1 ,
wherein the metal element is selected from the group consisting of lithium, lanthanum, neodymium, yttrium, europium, and barium.
4. The method for producing glycine according to claim 1 ,
wherein the metal element is lithium.