Invention Grant
US09586923B2 Spray oxidation process for producing 2,5-furandicarboxylic acid from hydroxymethylfurfural
有权
用于从羟甲基糠醛制备2,5-呋喃二羧酸的喷雾氧化法
- Patent Title: Spray oxidation process for producing 2,5-furandicarboxylic acid from hydroxymethylfurfural
- Patent Title (中): 用于从羟甲基糠醛制备2,5-呋喃二羧酸的喷雾氧化法
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Application No.: US14239819Application Date: 2012-08-28
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Publication No.: US09586923B2Publication Date: 2017-03-07
- Inventor: Bala Subramaniam , Xiaobin Zuo , Daryle H. Busch , Padmesh Venkitasubramanian
- Applicant: Bala Subramaniam , Xiaobin Zuo , Daryle H. Busch , Padmesh Venkitasubramanian
- Applicant Address: US KS Lawrence US IL Decatur
- Assignee: University of Kansas,Archer Daniels Midland Company
- Current Assignee: University of Kansas,Archer Daniels Midland Company
- Current Assignee Address: US KS Lawrence US IL Decatur
- Agent William B. Miller
- International Application: PCT/US2012/052600 WO 20120828
- International Announcement: WO2013/033058 WO 20130307
- Main IPC: C07D307/68
- IPC: C07D307/68 ; B01J2/02 ; B01J27/128 ; B01J19/10 ; B01J19/24 ; B01J4/00 ; C07D307/46 ; B01J31/04

Abstract:
A process is provided for carrying out an oxidation on a sprayable feed including a furanic substrate to be oxidized and a catalytically effective combination of cobalt, manganese, and bromide components for catalyzing the oxidation of the furanic substrate, which process comprises spraying the feed into a reactor vessel as a mist, supplying an oxidant, reacting the furanic substrate and the oxidant, and managing the exothermic temperature rise due to the reaction through a selection and control of the operating pressure within the reactor vessel. A crude dehydration product from the dehydration of fructose, glucose or both, including 5-hydroxymethylfurfural, can be directly oxidized by the process to produce 2,5-furandicarboxylic acid in surprisingly increased yields.
Public/Granted literature
- US20150183755A1 SPRAY OXIDATION PROCESS FOR PRODUCING 2,5-FURANDICARBOXYLIC ACID FROM HYDROXYMETHYLFURFURAL Public/Granted day:2015-07-02
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