A method for preparing haloethanol and ethylene oxide
A technology of ethylene oxide and haloethanol, which is applied in the field of preparation of ethylene oxide, preparation of haloethanol, and the preparation of ethylene oxide by the new haloalcohol method, which can solve severe corrosion, waste of raw materials, and generation of dichloroethane, etc. problems, to achieve the effect of reducing biological oxygen content, lightening load, and less steam consumption
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Embodiment 1
[0086] 1) Haloalcoholization: Add 70wt% concentration of hydrogen peroxide H 2 o 2 , HCl solution (hydrochloric acid) and ethene of 35wt% concentration, carry out chloroalcoholization reaction at the temperature of 45 ℃, wherein the hydrogen peroxide H of 70wt% concentration 2 o 2 , 35wt% concentration of HCl solution and ethylene flow should make H 2 The molar ratio of O to HCl to ethylene is about 1.2:1.2:1. This gives the halohydrin, a mixture of 2-chloroethan-1-ol and 1-chloroethan-2-ol.
Embodiment 2
[0090] 1) Haloalcoholization: add TS-1 molecular sieve, 35wt% concentration of hydrogen peroxide H in the tower reactor 2 o 2 , HCl solution (hydrochloric acid) and ethylene of 20wt% concentration, carry out chlorohydrinization reaction at the temperature of 35 ℃, wherein the molar ratio of TS-1 molecular sieve and ethylene is 0.05:1, the hydrogen peroxide H of 35wt% concentration 2 o 2 , 20wt% concentration of HCl solution and ethylene should be added in such a way that H 2 o 2 The mass ratio of HCl to ethylene is about 1.5:1.1:1. This gives the halohydrin, a mixture of 2-chloroethan-1-ol and 1-chloroethan-2-ol. Wherein, the synthesis method of TS-1 refers to Example 1 of CN201410812216.8.
Embodiment 3
[0098] 1) Haloalcoholization: Add 70wt% concentration of hydrogen peroxide H 2 o 2 , HCl solution (hydrochloric acid) and ethene of 35wt% concentration, carry out chloroalcoholization reaction at the temperature of 45 ℃, wherein the hydrogen peroxide H of 70wt% concentration 2 o 2 , 35wt% concentration of HCl solution and ethylene flow should make H 2 o 2 The molar ratio of HCl to ethylene is about 1.2:1.2:1. This gives the halohydrin, a mixture of 2-chloroethan-1-ol and 1-chloroethan-2-ol.
[0099] 2) Saponification: performing saponification reaction with the halohydrin obtained in step 1) and sodium hydroxide, and separating to obtain an ethylene oxide organic phase and a sodium chloride solution. The saponification reaction is carried out in a steel tower reactor, and the upper part is designed as a sieve tray tower. Steam enters from the bottom of the tower to blow out the crude ethylene oxide generated from the top of the tower. The saponification temperature is c...
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