IP Library Granted Patent US 9,193,593
Granted Patent B2
US 9,193,593 · App. 13/775,245 · Granted Nov 24, 2015

Hydrogenation of formic acid to formaldehyde

Inventors: Richard I. Masel (Champaign, IL); Zheng Richard Ni (Champaign, IL); Qingmei Chen (Savoy, IL); Brian A. Rosen (Champaign, IL)
Assignee: Dioxide Materials, Inc.
C01B31/18C01B3/22C07C1/22C07C45/41C07C51/15C07H1/00
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Quick Facts
Patent No.
US 9,193,593
App. No.
13/775,245
Granted
Nov 24, 2015
Kind
B2
Abstract

An environmentally beneficial process for the production of fuels and chemicals employs carbon dioxide from a natural source or from an artificial chemical source that would otherwise be discharged into the environment. The carbon dioxide is converted to formic acid and the formic acid is then non-biologically converted to fuels and/or chemicals without the intermediate process of hydrogenating the formic acid to methanol or reacting the formic acid with ammonia to form formamide. In the present process, formic acid is converted to one of seven primary feedstocks: formaldehyde, acrylic acid, methane, ethylene, propylene, syngas, and C5-C7 carbohydrates. The formaldehyde, acrylic acid, methane, ethylene, propylene, syngas and/or short chain carbohydrates can either be used directly, or can be converted into a wealth of other products.

Claims (5)

1. A catalytic process for the production of formaldehyde comprising hydrogenating an amount of formic acid to form a product comprising formaldehyde, wherein said formaldehyde is formed without hydrogenating more than 10% of said amount of formic acid to methanol, wherein the process is catalyzed by a catalyst comprising at least one of Ce (IV) oxide and Te (IV) oxide.

2. The catalytic process of claim 1 , further comprising initially converting an amount of carbon dioxide obtained from a natural source or from an artificial chemical source to produce said amount of formic acid, thereby reducing said amount of carbon dioxide present in nature or diverting said amount of carbon dioxide from being discharged into the environment by said artificial chemical source.

3. The catalytic process of claim 1 , wherein reaction temperature is between 8° C. and 350° C.

4. The catalytic process of claim 3 , wherein said reaction temperature is between 40° C. and 200° C.

5. The catalytic process of claim 4 , wherein said reaction temperature is between 60° C. and 100° C.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 22, 2013
From: MASEL, RICHARD; ZHENG, NI; CHEN, QINGMEI; ROSEN, BRIAN A.
To: DIOXIDE MATERIALS, INC.
Reel/Frame 030066/0492 →
Continuity (1)
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