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首页> 外文期刊>Fuel >Phosphomolybdic acid/graphene oxide as novel green catalyst using for biodiesel production from waste cooking oil via electrolysis method: Optimization using with response surface methodology (RSM)
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Phosphomolybdic acid/graphene oxide as novel green catalyst using for biodiesel production from waste cooking oil via electrolysis method: Optimization using with response surface methodology (RSM)

机译:磷钼酸/石墨烯作为新型绿色催化剂,用于通过电解方法从废物烹饪油生产的生物柴油生产:用响应表面方法进行优化(RSM)

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摘要

In this study, biodiesel (FAME) was prepared using a novel heterogeneous catalyst of phosphomolybdic acid (H3PMo12O40, HPMo)/support graphene oxide (GO). The characterization of the catalyst was evaluated by SEM, EDX, Map analysis, TEM, FT-IR, and Raman analyses. The production of biodiesel from waste cooking oil (WCO) was carried out by the electrolysis method. The process of the trans-esterification reaction was optimized by applying the response surface methodology (RSM) based on the central composite design (CCD) approach. The effects of four independent variables of methanol to oil molar ratio (6-12 mol:mol), catalyst weight (0.5-1.5 wt %), time (8-24 h), and voltage (30-70 V) were examined. The highest biodiesel yield was 90.39% at optimum conditions of room temperature, the catalyst weight of 0.85 wt%, the voltage of 60 V, time of 15 h, methanol to oil, and THF to methanol molar ratios of 6:1 and 0.5:1, respectively. Based on the obtained results, all studied variables had significant impacts on the FAME yield. The catalyst was used four times in the trans-esterification reaction without any significant reduction in the yield. The quality of biodiesel was confirmed by H-NMR and FTIR analyses, and its physicochemical properties were in agreement with the ASTM standard.
机译:在该研究中,使用磷钼酸(H3PMO12O40,HPMO)/载体氧化物(GO)的新型异质催化剂制备生物柴油(FAME)。通过SEM,EDX,MAP分析,TEM,FT-IR和拉曼分析评估催化剂的表征。通过电解方法进行废物烹饪油(WCO)的生物柴油的生产。通过基于中央复合设计(CCD)方法施加响应面方法(RSM)来优化反式酯化反应的方法。研究了四个独立变量的甲醇与油摩尔比(6-12mol:mol),催化剂重量(0.5-1.5wt%),时间(8-24小时)和电压(30-70V)的影响。室温的最佳条件下最高的生物柴油产率为90.39%,催化剂重量为0.85wt%,60V,甲醇的电压为60V,甲醇,THF至甲醇摩尔比为6:1和0.5:分别为1。基于所获得的结果,所有研究的变量对名称产量产生重大影响。在反式酯化反应中使用4次催化剂,而不会产生任何显着降低的产率。通过H-NMR和FTIR分析证实了生物柴油的质量,其物理化学性质与ASTM标准一致。

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