Optimized conversion of waste vegetable oil to biofuel with Meta heuristic methods and design of experiments

Van Huong Dong, Prabhakar Sharma
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Abstract

Biodiesel generated from waste cooking oil (WCO) shows enormous potential for accomplishing SDGs and embracing circular economy principles. This strategy coincides with SDGs 7 and 12, which promote clean energy along with ethical consumerism, by converting waste cooking oil into biofuel. It reduces dependency on fossil fuels, reduces emissions, and promotes sustainable energy sources. Furthermore, using WCO biodiesel adheres to the circular economy concept, reducing waste and pollution while conserving resources (SDGs 12, 14, and 15). To optimize this process, a hybrid technique comprising RSM, ANOVA, and particle swarm optimization is being explored. Researchers achieved 90% biodiesel production employing this technology, encouraging both eco-friendly energy and resource-efficient practices. The optimized parameters produced remarkable results: 82.98% biodiesel generation with a reaction time of 101 minutes, 2% catalyst, and a methanol-to-oil ratio of 20%, demonstrating the potential of this integrated strategy.
利用元启发式方法和实验设计优化废植物油转化为生物燃料
废食用油生产的生物柴油在实现可持续发展目标和接受循环经济原则方面具有巨大潜力。这一战略与可持续发展目标7和12不谋而合,通过将废弃食用油转化为生物燃料,促进清洁能源和道德消费主义。它减少了对化石燃料的依赖,减少了排放,并促进了可持续能源的发展。此外,使用WCO生物柴油符合循环经济理念,在节约资源的同时减少浪费和污染(可持续发展目标12、14和15)。为了优化这一过程,我们正在探索一种包含RSM、方差分析和粒子群优化的混合技术。研究人员利用这项技术实现了90%的生物柴油产量,鼓励了环保能源和资源节约型实践。优化后的生物柴油产率为82.98%,反应时间为101分钟,催化剂用量为2%,甲醇油比为20%,表明了该综合策略的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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