[미국특허]
Production of hexafluoropropylene oxide
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
C07D-301/03
C07D-301/08
C07D-303/08
출원번호
US-0385435
(2013-03-15)
등록번호
US-9073883
(2015-07-07)
우선권정보
ZA-2012/01951 (2012-03-15)
국제출원번호
PCT/IB2013/052077
(2013-03-15)
국제공개번호
WO2013/136307
(2013-09-19)
발명자
/ 주소
Lokhat, David
Starzak, Maciej
Ramjugernath, Deresh
출원인 / 주소
UNIVERSITY OF KWAZULU-NATAL
대리인 / 주소
Baker & Hostetler LLP
인용정보
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초록▼
A process for the production of HFPO includes introducing a feedstock comprising HFP and molecular oxygen into a heated reaction zone of a reactor. The reaction zone is at a reaction temperature Tr, where 180° C.≦Tr≦230° C. The feedstock is allowed to react, by epoxidation of the HFP, to produce HFP
A process for the production of HFPO includes introducing a feedstock comprising HFP and molecular oxygen into a heated reaction zone of a reactor. The reaction zone is at a reaction temperature Tr, where 180° C.≦Tr≦230° C. The feedstock is allowed to react, by epoxidation of the HFP, to produce HFPO. The HFPO is withdrawn from the reaction zone. The introduction of the feedstock into the reaction zone and the withdrawal of the product from the reaction zone is continuous.
대표청구항▼
1. A process for the production of hexafluoropropylene oxide, which process includes: pretreating a reactor by heating a reaction zone of the reactor to a pretreatment temperature Tp, where 180° C.≦Tp≦230° C., and thereafter passing a feedstock comprising gaseous hexafluoropropylene and molecular ox
1. A process for the production of hexafluoropropylene oxide, which process includes: pretreating a reactor by heating a reaction zone of the reactor to a pretreatment temperature Tp, where 180° C.≦Tp≦230° C., and thereafter passing a feedstock comprising gaseous hexafluoropropylene and molecular oxygen through the heated reaction zone at a first hexafluoropropylene:O2 molar ratio, x, which is about 1:1, for a period of time, while maintaining the pretreatment temperature Tp in the reaction zone;thereafter adjusting the hexafluoropropylene:O2 molar ratio to a second value, y, which is in the range of 0.25:1 to 1.81:1, and where y≠x, with the reaction zone being at a reaction temperature Tr, where 180° C.≦Tr≦230° C.;allowing the feedstock to react, by epoxidation of the hexafluoropropylene, to produce hexafluoropropylene oxide; andwithdrawing the hexafluoropropylene oxide from the reaction zone, with the introduction of the feedstock into the reaction zone and the withdrawal of the product from the reaction zone being continuous. 2. The process of claim 1, wherein the reactor comprises a copper-based cylindrical tube of constant cross-sectional area, with the tube being helically coiled and having a surface-to-volume ratio >2000m−1 such that there is laminar flow of the feedstock and the hexafluoropropylene oxide through the reaction zone. 3. The process according to claim 1, wherein the pretreatment temperature, Tp, is approximately 200° C. 4. The process according to claim 1, wherein the molar ratio, y, of hexafluoropropylene:O2 is in the range of 1.1:1 to 1.35:1. 5. The process according to claim 1, wherein the period of time that the reactor is pretreated is at least 60 hours. 6. The process according to claim 1, wherein the pressure in the reactor, during the pretreatment as well as subsequently, is 3 to 6.5 bar. 7. The process according to claim 1, wherein the gaseous residence time of the feedstock in the reaction zone during the pretreatment as well as subsequently, during the hexafluoropropylene conversion to hexafluoropropylene oxide, is in the range of 80 to 160 seconds. 8. A process for the production of hexafluoropropylene oxide, which includes pretreating a reactor by heating a reaction zone of the reactor to a pretreatment temperature Tp, where 180° C. ≦Tp≦230° C., and thereafter passing gaseous hexafluoropropylene and oxygen through the reaction zone at a first hexafluoropropylene:O2 molar ratio, x, of about 1:1, for a period of time, while maintaining the pretreatment temperature Tp in the reaction zone; and thereafter adjusting the hexafluoropropylene:O2 molar ratio to a second value, y, which is in the range of 0.25:1 to 1.81:1, and where y ≠x, with the hexafluoropropylene being converted by means of epoxidation to hexafluoropropvlene oxide.
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