Data for: Joint-use of Activated Carbon and Carbon Black to Enhance Catalytic Stability during Chemical Looping Methane Decomposition Process

Published: 26 April 2021| Version 1 | DOI: 10.17632/b356cjfvb4.1
Contributor:
Fang Liu

Description

These data are for research paper "Joint-use of Activated Carbon and Carbon Black to Enhance Catalytic Stability during Chemical Looping Methane Decomposition Process", which Include Fig. 2(a) Methane conversion at 800 ℃, 850 ℃ and 900 ℃ based on activated carbon (AC) catalyst and thermal decomposition (TD) without AC; Fig. 2(b) Methane conversion at 800 ℃, 850 ℃ and 900 ℃ based on carbon black (CB) catalyst and thermal decomposition (TD) without CB; Fig. 3 Evolution on methane conversion rates using AC and CB catalysts at 800 ℃, 850 ℃ and 900 ℃; Fig. 4 Methane conversion rates using AC-CB mixture at different volume ratios at 900 ℃; Fig. 5 Changes on catalytic performance of AC-CB mixture based on different reaction stage and inactivation time at 900 ℃; Fig. 7 EDS data and elements mass fraction of fresh AC; Fig. 8(b) EDS data of NAC-B; and, Fig. 10 XRD patterns of AC, CB and AC0.5CB0.5 before and after reaction testing.

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Chemical Looping, Hydrogen Production

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