Coal liquefaction using semi-continuous solvent flow two-stage reactor system: Optimizing using response surface methodology (RSM)

Muhammad Taqi-uddeen Safian, Z. A. Ghani, K. Ismail, M. Ishak
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引用次数: 1

Abstract

Response surface methodology (RSM) was applied to optimize the condition for liquefaction process of Mukah Balingian (MB) low-rank Malaysian coal by using semi-continuous solvent flow two-stage reactor system. The reaction was performed by using tetralin as the solvent. A central composite rotatable design (CCRD) was employed to optimize the effect of three important reaction variables, i.e. flow-rate (ml/min), reaction time (min) and Ni loading (wt.%). A total of 20 experiments were conducted. It was concluded that the liquefaction should be carried out under solvent flow-rate of 1.12 ml/min, reaction time of 60 min and 5 wt.% of NiSiO2 loading. Under the optimum conditions, the corresponding response value for oil+gas yield was 71.25 %.
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半连续溶剂流两级反应器系统煤液化:响应面法优化
采用响应面法(RSM)对马来西亚Mukah Balingian (MB)低阶煤半连续溶剂流两级反应器系统液化工艺条件进行了优化。以四氢化萘为溶剂进行反应。采用中心复合旋转设计(CCRD)对流速(ml/min)、反应时间(min)和Ni负载(wt.%)三个重要反应变量的影响进行优化。共进行了20次实验。结果表明,在溶剂流量为1.12 ml/min,反应时间为60 min, NiSiO2加量为5 wt.%的条件下进行液化。在最优条件下,相应的油气产量响应值为71.25%。
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