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Feasibility Study of Carbon Dioxide Methanation: Assessment of Various Supported Nickel Catalyst

机译:二氧化碳甲烷化的可行性研究:各种负载镍催化剂的评估

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Carbon dioxide (CO2) management is vital for ensuring the economic and environment viability for monetization of high CO2 gas field. Apart from the great technical challenge in separating high concentration of CO2 in gas field economically, the management of separated CO2 is a fine balance between the sink-in value by sequestration and creation of value via conversion to product, constrained by the thermodynamic challenge in breaking the stable CO2 molecule. Conversion to methane is one the exploratory idea due to ease of integration to current product line-up of PETRONAS. Catalytic conversion of CO2 to methane are reported here over various supported nickel base catalyst, namely ZrO2, La2O3, and Al2O3 at temperature ranging from 300 to 400°C under atmospheric pressure. The catalysts with fixed Ni loadings were prepared by wet impregnation technique, characterized and their performances were evaluated in a parallel reactor under Sabatier-based CO2 conversion. Reaction temperature and GHSV were taken into account as two important parameters with fixed H2/CO2 molar ratio. Experimental results indicate that among all catalysts, Ni/Al2O3 give the highest CO2 conversion of 74% and high CH4 selectivity of 99% at temperature of 380°C and GHSV 10000 h-1. This asserted Ni supported on Al2O3 as a potential catalyst for CO2 conversion and promising methanation performance over a low cost catalyst.
机译:二氧化碳(二氧化碳)管理对于确保高二氧化碳气田的经济和环境活力至关重要。除了在经济上分离出气田的高浓度二氧化碳的技术挑战之外,分离的CO2的管理是通过转换为产品通过转换和创建价值的沉没价值之间的精细平衡,受到突破的热力学挑战的限制稳定的二氧化碳分子。转换为甲烷是由于易于融入百分之耳环的产品阵容,这是一个探索性想法。这里在各种负载的镍基催化剂,即ZrO2,La2O3和Al 2 O 3在大气压下在300至400℃的温度下报告CO 2对甲烷的催化转化。通过湿浸渍技术制备具有固定NI载荷的催化剂,其特征在于,在基于截止岭的CO 2转化下,在平行反应器中评价其性能。作为固定H2 / CO2摩尔比的两个重要参数考虑反应温度和GHSV。实验结果表明,在所有催化剂中,Ni / Al 2 O 3在380℃和GHSV 10000H-1的温度下给出74%的最高CO 2转化率为74%和高CH 4选择性99%。该伴随Al 2 O 3的鼻窦作为CO 2转化率的潜在催化剂,并且在低成本催化剂上具有通用甲烷化性能。

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