2015•Applied Petrochemical ResearchOpen access

Effect of reaction variables on CO methanation process over NiO–La2O3–MgO/Al2O3 catalyst for coal to synthetic natural gas

Zhong He, Xiaolong Wang, Shiwang Gao, Tiancun Xiao

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Abstract

Reaction variables for methanation process were investigated using self-independently developed NiO–La 2 O 3 –MgO/Al 2 O 3 catalyst in a big lab scale reactor. The effects of reaction parameters, such as temperature, pressure, H 2 /CO flow ratio and space velocity on the activity of methanation catalyst were studied. 100 % CO conversion and 95 % of selectivity of methane can be achieved at 400 °C and 3 MPa with the feed ratio of H 2 /CO as 3.25:1 and space velocity of 12,000 h −1 .The optimization reaction parameters were suggested on the basis of this work for the further development and commercialization of methanation catalyst.

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Reaction variables for methanation process were investigated using self-independently developed NiO–La 2 O 3 –MgO/Al 2 O 3 catalyst in a big lab scale reactor. The effects of reaction parameters, such as temperature, pressure, H 2 /CO flow ratio and space velocity on the activity of methanation catalyst were studied. 100 % CO conversion and 95 % of selectivity of methane can be achieved at 400 °C and 3 MPa with the feed ratio of H 2 /CO as 3.25:1 and space velocity of 12,000 h −1 .The optimization reaction parameters were suggested on the basis of this work for the further development and commercialization of methanation catalyst.

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Available abstract

Reaction variables for methanation process were investigated using self-independently developed NiO–La 2 O 3 –MgO/Al 2 O 3 catalyst in a big lab scale reactor. The effects of reaction parameters, such as temperature, pressure, H 2 /CO flow ratio and space velocity on the activity of methanation catalyst were studied. 100 % CO conversion and 95 % of selectivity of methane can be achieved at 400 °C and 3 MPa with the feed ratio of H 2 /CO as 3.25:1 and space velocity of 12,000 h −1 .The optimization reaction parameters were suggested on the basis of this work for the further development and commercialization of methanation catalyst.

Key concepts: Methanation, Substitute natural gas, Space velocity, Catalysis, Non-blocking I/O, Methane, Chemical engineering, Materials science

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