Cyclic process for producing taurine
There is disclosed a process for producing taurine from ammonium isethionate by the ammonolysis of alkali isethionate in the presence of alkali ditaurinate or alkali tritaurinate, or their mixture, to inhibit the formation of byproducts and to continuously convert the byproducts of the ammonolysis reaction to alkali taurinate. Alkali taurinate is reacted with ammonium isethionate to obtain taurine and to regenerate alkali isethionate. The production yield is increased to from 90% to nearly quantitative. The ammonolysis reaction is catalyzed by alkali salts of hydroxide, sulfate, sulfite, phosphate, or carbonate.
1. A process for producing taurine from alkali taurinate or a mixture of alkali taurinate, alkali ditaurinate, and alkali tritaurinate, comprising:
(a) adding ammonium isethionate to a solution of alkali taurinate or a mixture of alkali taurinate, alkali ditaurinate, and alkali tritaurinate to yield alkali isethionate and ammonium taurinate;
(b) decomposing ammonium taurinate by heating and removing ammonia to yield taurine;
(c) separating taurine by means of solid-liquid separation.
2. The process according to claim 1 , wherein a mixture of alkali taurinate, alkali ditaurinate, and alkali tritaurinate is produced by an ammonolysis reaction of alkali isethionate.
3. The process according to claim 1 , wherein the alkali metals are lithium, sodium, or potassium.