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Catalyst used for preparation of bromomethane and CO through methane bromination-oxidation, and preparation method and application thereof

A methane bromide oxidation and catalyst technology, applied in the direction of catalyst activation/preparation, chemical instruments and methods, physical/chemical process catalysts, etc., can solve the problems of precious metal Rh loss, activity reduction, high reaction temperature, etc., and achieve excellent anti-carbon deposition performance , good stability performance, the effect of good performance

Inactive Publication Date: 2014-12-17
DALIAN INST OF CHEM PHYSICS CHINESE ACAD OF SCI +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

FePO 4 / SiO 2 Carbon deposits occur in the catalyst after a period of reaction, and the activity is reduced (R.H.Lin, Y.J.Ding, L.F.Gong, W.D.Dong, W.M.Chen, Y.Lu, Cat.Today, 2011, 164, 34-39)
There are also reports in the literature that Rh / SiO 2 Catalysts used in methane bromination oxidation reaction (Z.Liu, L.Huang, W.S.Li, F.Yang, C.T.Au and X.P.Zhou, J.Mol.Catal.A:Chem., 2007, 273, 14-20), the The catalyst has higher catalytic activity than the ruthenium-based catalyst, but the catalyst has a higher loading of Rh and a higher reaction temperature (660°C)
Synthesis of Rh / SiO by sol-gel method by Liu et al. 2 Catalyst and its performance in catalytic methane bromination oxidation reaction was investigated, even though the catalyst can obtain close to 40% methane conversion and 90% CH at a reaction temperature of 660 3 Br selectivity, but there is a significant loss of noble metal Rh after nearly 700 hours of reaction (Z.Liu, W.S.Li, X.P.Zhou, J.Nat.Gas.Chem., 2010, 19, 522-529)

Method used

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  • Catalyst used for preparation of bromomethane and CO through methane bromination-oxidation, and preparation method and application thereof
  • Catalyst used for preparation of bromomethane and CO through methane bromination-oxidation, and preparation method and application thereof
  • Catalyst used for preparation of bromomethane and CO through methane bromination-oxidation, and preparation method and application thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0035] Example 1: FePO 4 Preparation of dipping solution

[0036] Use deionized water as a solvent to prepare 1mol / L ferric nitrate solution and 1mol / L ammonium dihydrogen phosphate solution; then slowly add an equal volume of ammonium dihydrogen phosphate solution to nitric acid In the iron solution, the mixed solution was stirred for 12 hours to obtain pink FePO 4 The impregnating solution is put into a volumetric flask for later use.

Embodiment 2

[0037] Embodiment 2: the preparation of non-precalcined catalyst CAT-1

[0038] Weigh 8.0 grams of TiC-SiC carrier (Ti weight content is about 10%), add 11.8mL of FePO prepared in Example 1 4 The impregnated solution was soaked for 6 hours, then dried in an oven at 90°C for 12 hours, and then transferred to a muffle furnace for 10 hours in an air atmosphere at 400°C. The prepared catalyst was designated as CAT-1. Wherein, the weight content of the main active component is 10% according to the calculation of feeding. Its specific surface area is 500m2 measured on the American Kangta Autosorb-1 physical adsorption instrument. 2 / g.

Embodiment 3~4

[0039] Embodiment 3~4: the preparation of catalyst CAT-2 and CAT-3 without precalcining

[0040] Same as the procedure of Example 2, just change the roasting temperature to 600 DEG C and 800 DEG C respectively, thus make catalyst CAT-2 and CAT-3, record its specific surface area on the U.S. Quanta Autosorb-1 physical adsorption instrument 350m respectively 2 / g and 130m 2 / g. Wherein, the weight content of the main active component is 10% according to the calculation of feeding.

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Abstract

The invention provides a catalyst used for the preparation of bromomethane and CO through methane bromination-oxidation. The catalyst contains a main active component and a carrier, wherein the main active component is one or more selected from FePO4, Fe3P2O7 and Fe3(P2O7)2, the carrier is one or more of TiC-SiC and TiO2-SiC, and the content of the main active component in the catalyst is 1.0-50.0wt%. The catalyst is prepared through the steps of supporting an impregnation liquid containing the main active component onto the carrier through an impregnation technology, drying and roasting, and the catalyst can catalyze a mixture comprising methane, oxygen and an aqueous solution of HBr converted into bromomethane and CO in a high activity and high selectivity manner under reaction conditions comprising normal pressure and a temperature of 400-800DEG C. The catalyst has the advantages of good performances, on obvious inactivation in a continuous reaction process carried out for above 1400h, and no carbon deposition on the catalyst.

Description

technical field [0001] The invention relates to a catalyst, more particularly to a catalyst for preparing methyl bromide and CO by oxidation of methane bromide, a preparation method and application thereof. Background technique [0002] Natural gas has a large stock, wide distribution, and high H / C ratio in its composition. It has always been considered as the cleanest fossil energy. Especially with the increasing energy consumption for human survival and the depletion of oil resources, how to convert natural gas into other Chemicals to reduce dependence on petroleum are of great interest. At present, the main industrial utilization of natural gas is the conversion of natural gas to chemicals through steam reforming and subsequent Fischer-Tropsch synthesis. However, this process has its own defects of high energy consumption and complicated process. The main component of natural gas is methane, and the key to realize the activation of methane is to develop an efficient cat...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B01J27/185B01J37/02B01J37/08C07C19/075C07C17/154C01B31/18C01B32/40
Inventor 林荣和丁云杰王润琴
Owner DALIAN INST OF CHEM PHYSICS CHINESE ACAD OF SCI
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