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Spent groundnut oil for biodiesel production using supported heteropolyacids

机译:用支持的杂多酸生产生物柴油的废花生油

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Continuous use of petroleum sourced fuels is now widely recognized as unsustainable because of depleting supplies and contribution of these fuels to the accumulation of carbon dioxide in the environment. Renewable, carbon neutral, transport fuels are necessary for environmental and economic sustainability. Raw and spent vegetable oils have attracted attention as a potential renewable resource for the production of an alternative for petroleum-based diesel fuel. Supported heteropolyacids mainly Cesium Tungstophosphoric acid catalysts are an excellent alternate to the existing homogeneous catalysts for transesterification reaction in biodiesel production. CsTPA was supported externally and as a composite (internal and external) onto the support SBA15 and the parameters were optimized. It was found that the composite loaded catalyst system gave a maximum yield of 90.5% for 0.3% catalyst concentration, 6.6:1 methanol:oil molar ratio for 1 hour and 60°C. The methyl esters obtained from WCO were found to meet the ASTM standards for bio diesel. Performance characteristics of bio diesel with diesel were studied on a four stroke diesel engine under loaded conditions. Mechanical (67.79%), Brake and Indicated thermal efficiencies are better for biodiesel obtained from WCO than diesel (64.3%) thus making it a promising candidate as an alternate fuel.
机译:由于消耗的燃料以及这些燃料对环境中二氧化碳的累积的贡献,目前广泛认为持续使用石油来源的燃料是不可持续的。可再生,碳中和的运输燃料对于环境和经济的可持续发展是必不可少的。生和废植物油作为生产石油基柴油替代品的潜在可再生资源已引起人们的关注。负载的杂多酸主要是钨磷酸铯催化剂,是生物柴油生产中酯交换反应的现有均相催化剂的绝佳替代品。外部支持了CsTPA,并以复合(内部和外部)的形式支持了SBA15,并优化了参数。发现在0.3%催化剂浓度,6.6∶1甲醇:油摩尔比1小时和60℃下,负载有复合材料的催化剂体系的最大产率为90.5%。发现从WCO获得的甲酯符合生物柴油的ASTM标准。研究了四冲程柴油机在负载条件下含柴油的生物柴油的性能特征。从WCO获得的生物柴油的机械效率(67.79%),制动和指示的热效率优于柴油(64.3%),因此使其成为替代燃料的有希望的候选者。

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