Catalytic Oxidative Coupling of Methane Over Li/MgO Using N2O as an Oxidant

Catalytic Oxidative Coupling of Methane Over Li/MgO Using N2O as an Oxidant PDF Author: Hiroshi Yamamoto
Publisher:
ISBN:
Category : Methane
Languages : en
Pages : 222

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Catalytic Oxidative Coupling of Methane Over Li/MgO Using N2O as an Oxidant

Catalytic Oxidative Coupling of Methane Over Li/MgO Using N2O as an Oxidant PDF Author: Hiroshi Yamamoto
Publisher:
ISBN:
Category : Methane
Languages : en
Pages : 222

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Mechanistic Studies on the Oxidative Coupling of Methane

Mechanistic Studies on the Oxidative Coupling of Methane PDF Author: Chunlei Shi
Publisher:
ISBN:
Category :
Languages : en
Pages : 324

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Methane Conversion by Oxidative Processes

Methane Conversion by Oxidative Processes PDF Author: Wolf
Publisher: Springer Science & Business Media
ISBN: 9401574499
Category : Technology & Engineering
Languages : en
Pages : 556

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A reasonable case could be made that the scientific interest in catalytic oxidation was the basis for the recognition of the phenomenon of catalysis. Davy, in his attempt in 1817 to understand the science associated with the safety lamp he had invented a few years earlier, undertook a series of studies that led him to make the observation that a jet of gas, primarily methane, would cause a platinum wire to continue to glow even though the flame was extinguished and there was no visible flame. Dobereiner reported in 1823 the results of a similar investigation and observed that spongy platina would cause the ignition of a stream of hydrogen in air. Based on this observation Dobereiner invented the first lighter. His lighter employed hydrogen (generated from zinc and sulfuric acid) which passed over finely divided platinum and which ignited the gas. Thousands of these lighters were used over a number of years. Dobereiner refused to file a patent for his lighter, commenting that "I love science more than money." Davy thought the action of platinum was the result of heat while Dobereiner believed the ~ffect ~as a manifestation of electricity. Faraday became interested in the subject and published a paper on it in 1834; he concluded that the cause for this reaction was similar to other reactions.

Oxidative Coupling of Methane Over Li/MgO Catalyst

Oxidative Coupling of Methane Over Li/MgO Catalyst PDF Author: Saeed M. S. Al-Zahrani
Publisher:
ISBN:
Category : Catalysts
Languages : en
Pages : 554

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Methane Conversion by Oxidative Processes

Methane Conversion by Oxidative Processes PDF Author: Eduardo E. Wolf
Publisher: Springer
ISBN:
Category : Science
Languages : en
Pages : 566

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Book Description
A reasonable case could be made that the scientific interest in catalytic oxidation was the basis for the recognition of the phenomenon of catalysis. Davy, in his attempt in 1817 to understand the science associated with the safety lamp he had invented a few years earlier, undertook a series of studies that led him to make the observation that a jet of gas, primarily methane, would cause a platinum wire to continue to glow even though the flame was extinguished and there was no visible flame. Dobereiner reported in 1823 the results of a similar investigation and observed that spongy platina would cause the ignition of a stream of hydrogen in air. Based on this observation Dobereiner invented the first lighter. His lighter employed hydrogen (generated from zinc and sulfuric acid) which passed over finely divided platinum and which ignited the gas. Thousands of these lighters were used over a number of years. Dobereiner refused to file a patent for his lighter, commenting that "I love science more than money." Davy thought the action of platinum was the result of heat while Dobereiner believed the ~ffect ~as a manifestation of electricity. Faraday became interested in the subject and published a paper on it in 1834; he concluded that the cause for this reaction was similar to other reactions.

The Oxidative Coupling of Methane Over Doped Li/MgO Catalysts

The Oxidative Coupling of Methane Over Doped Li/MgO Catalysts PDF Author: Gerrie Christine Hoogendam
Publisher:
ISBN: 9789090092676
Category :
Languages : en
Pages : 126

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Oxidative Coupling of Methane Over MgO-supported Perovskite Catalysts

Oxidative Coupling of Methane Over MgO-supported Perovskite Catalysts PDF Author: Dan Li (M.S.)
Publisher:
ISBN:
Category : Catalysts
Languages : en
Pages : 198

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Collection and Analysis of Data on Oxidative Coupling of Methane

Collection and Analysis of Data on Oxidative Coupling of Methane PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 34

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The utilization of Canada's abundant natural gas is of great importance for self-sufficiency in the future. Among the processes under investigation, the direct conversion of methane into higher hydrocarbons without going through syngas is particularly attractive, although there are difficulties mainly due to the high stability of the methane molecule and the thermodynamic disadvantages. This report analyzes published reports on the catalytic oxidative condensation of methane, including the results of oxidative coupling with oxygen and other oxidants supplying oxygen, such as nitrous oxide, and those of other oxidative condensation reactions. Excluded from the review are those papers dealing with the partial oxidation of methane which produce mainly oxygenated compounds. The report covers a total of 110 papers and patents including most of those published in 1988. Surveyed but not cited in the report are papers presented at conferences without a full report in the preprint or proceedings. Recommendations are included.

Optimization of Ethylene Yield in Oxidative Coupling of Methane Over Li/MgO Catalyst

Optimization of Ethylene Yield in Oxidative Coupling of Methane Over Li/MgO Catalyst PDF Author: Soon Ee Pheng
Publisher:
ISBN:
Category :
Languages : en
Pages :

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A Study of CO2 Effects on Oxidative Methane Coupling Reactions Over Li/MgO Catalyst

A Study of CO2 Effects on Oxidative Methane Coupling Reactions Over Li/MgO Catalyst PDF Author: Qi Song
Publisher:
ISBN:
Category : Catalysts
Languages : en
Pages : 308

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