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首页> 外文期刊>Waste Management >Response surface methodology assisted biodiesel production from waste cooking oil using encapsulated mixed enzyme
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Response surface methodology assisted biodiesel production from waste cooking oil using encapsulated mixed enzyme

机译:响应面法使用胶囊化混合酶辅助从废食用油中生产生物柴油

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摘要

In the recent scenario, consumption of petroleum fuels has increased to greater height which has led to deforestation and decline in fossil fuels. In order to tackle the perilous situation, alternative fuel has to be generated. Biofuels play a vital role in substituting the diesel fuels as they are renewable and ecofriendly. Biodiesel, often referred to as green fuel, could be a potential replacement as it could be synthesized from varied substrates, advantageous being the microalgae in several ways. The present investigation was dealt with the interesterification of waste cooking oil using immobilised lipase from mixed cultures for biodiesel production. In order to standardize the production for a scale up process, the parameters necessary for interesterification had been optimized using the statistical tool, Central Composite Design - Response Surface Methodology. The optimal conditions required to generate biodiesel were 2 g enzyme load, 1:12 oil to methyl acetate ratio, 60 h reaction time and 35 ℃ temperature, yielding a maximum of 93.61% biodiesel. The immobilised lipase beads remain stable without any changes in their function and structure.even after 20 cycles which made this study, less cost intensive. In conclusion, the study revealed that the cooking oil, a residue of many dining centers, left as waste product, can be used as a potential raw material for the production of ecofriendly and cost effective biofuel, the biodiesel.
机译:在最近的情况下,石油燃料的消费已增加到更高的高度,这导致了森林砍伐和化石燃料的下降。为了解决危险的情况,必须产生替代燃料。生物燃料在替代柴油中起着至关重要的作用,因为它们具有可再生性和生态友好性。生物柴油,通常被称为绿色燃料,可能是一种潜在的替代品,因为它可以从各种基质中合成出来,有利于以多种方式产生微藻。本研究涉及使用混合培养物中的固定化脂肪酶生产生物柴油来对废食用油进行酯交换。为了使扩大规模的生产标准化,使用统计工具“中央复合设计-响应面方法”优化了酯交换所需的参数。产生生物柴油所需的最佳条件是2 g酶负荷,1:12的油与乙酸甲酯的比例,60 h反应时间和35℃的温度,最多可产生93.61%的生物柴油。固定化的脂肪酶珠粒保持稳定,其功能和结构没有任何变化。即使经过20个循环后,这项研究的成本仍然较低。总之,研究表明,作为许多餐饮中心残留物的食用油可以作为废品使用,可以用作生产环保,成本效益高的生物燃料(生物柴油)的潜在原料。

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