METHODS OF PREPARING GLUFOSINATE
专利「METHODS OF PREPARING GLUFOSINATE」由 Ningxia YongNong BioScience CO., LTD YongNong BioSciences CO., LTD. 持有,当前状态为已申请,申请号 P/922。LaoBiz 老商通提供老挝知识产权信息检索与企业关联查询。
Patent “METHODS OF PREPARING GLUFOSINATE” is held by Ningxia YongNong BioScience CO., LTD YongNong BioSciences CO., LTD.; status: 已申请. Search Laos IP records on LaoBiz.
P/922
图样
基础信息
- 类型
- 专利
- 申请号
P/922- 状态
- 已申请
- 申请人
- Ningxia YongNong BioScience CO., LTD YongNong BioSciences CO., LTD.
- 代理机构
- CONCETTI-LAO CO., LTD
- 申请日期
- 2023-09-18
- 公开/公告日
- 2026-03-27
- 国际分类
- C07F 9/6584 · C07F 9/30 · C07F 9/48
- 商品 / 服务
- —
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摘要
Disclosed is a method of preparing glufosinate, and specifically a method of preparing glufosinate represented by formula (l) or its salt or enantiomer, or a mixture of its enantiomers in any ratio, comprising a step of hydrolyzing a compound of tbrmula (lll) to generate a compound of formula (l). Due to a distinctive reaction mechanism adopted in the method of the present disclosure, a halogenated hydrocarbon by-product in the Michaelis-Arbuzov reaction can be avoided and thus the destructive impact of the halogenated hydrocarbon by-product on ozone in the aerosphere can be prevented. Accordingly, the equipment and engineering investments required for the separation, purification, and collection of the foregoing by-product are eliminated, and the potential environmental and safety hazards brought by the foregoing by-product are also avoided.
Disclosed is a method of preparing glufosinate, and specifically a method of preparing glufosinate represented by formula (l) or its salt or enantiomer, or a mixture of its enantiomers in any ratio, comprising a step of hydrolyzing a compound of tbrmula (lll) to generate a compound of formula (l). Due to a distinctive reaction mechanism adopted in the method of the present disclosure, a halogenated hydrocarbon by-product in the Michaelis-Arbuzov reaction can be avoided and thus the destructive impact of the halogenated hydrocarbon by-product on ozone in the aerosphere can be prevented. Accordingly, the equipment and engineering investments required for the separation, purification, and collection of the foregoing by-product are eliminated, and the potential environmental and safety hazards brought by the foregoing by-product are also avoided.