利用植物合成的氧化铅纳米颗粒,在生物柴油的可再生生产中重新利用柑橘废种子油

Rozina , Okezie Emmanuel , Mushtaq Ahmad , Amir Waseem , Ahamefula A. Ahuchaogu
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摘要

从生物废物流中产生生物能源和生物产品的愿望推动了全球对发展最先进的循环经济的兴趣。从使用过的非食用油中合成的生物柴油已成为柴油发动机的可持续和生态友好型替代燃料。本研究调查了利用绿色氧化铅纳米粒子(PbONPs)将废弃的柑橘籽油转化为可持续生物柴油的创新循环经济的可行性。合成的生物柴油具有无毒、可生物降解、成本效益高、可与传统石油柴油相媲美等生态友好特性。PbONPs 的分析表征显示其平均粒径为 42 纳米。PbONPs 具有可回收性,在连续四次酯交换反应中都能保持最大催化活性。在特定的反应条件下(甲醇与油的摩尔比为 7:1,反应时间为 105 分钟,温度为 92.5 ˚C,催化剂负载为 0.32 wt%),最佳产率达到 93%。生物柴油中主要的脂肪酸甲酯是 5,8-十八碳二烯酸甲酯。用 C. paradisi 生产的生物柴油符合国际标准,硫含量低至 0.0001%,令人印象深刻,突出了其清洁和无害的性质。
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Repurposing Citrus paradisi L. waste seed oil in the renewable production of biodiesel using phytosynthesized lead oxide nanoparticles

Global interest in developing a state-of-the-art circular economy has been driven by the desire to generate bioenergy and bioproducts from biowaste streams. Biodiesel, synthesized from used, non-edible oils has emerged as a sustainable and ecofriendly alternative fuel for diesel engines. This study investigates the feasibility of employing an innovative circular economy to convert waste Citrus paradisi L. seed oil into sustainable biodiesel using green lead oxide nanoparticles (PbONPs). The synthesized biodiesel is noted for its ecofriendly characteristics, being non-toxic, biodegradable, cost effective and comparable to traditional petroleum-based diesel. PbONPs were prepared using aqueous leaf extract of Nasturtium officinale L. Analytical characterization of PbONPs revealed an average particle size of 42 nm. PbONPs demonstrated recyclability with maximum catalytic activity maintained through four consecutive cycles of transesterification. An optimal yield of 93 % was achieved under specific reaction conditions: a methanol-to-oil molar ratio of 7:1, a reaction time of 105 min, a temperature of 92.5 ˚C, and a catalyst load of 0.32 wt%. The predominant fatty acid methyl ester identified in the biodiesel was 5, 8-octadecadienoic acid methyl ester. The biodiesel produced from C. paradisi met the criteria for international standards with an impressively low sulfur content of 0.0001 %, underscoring its clean and benign nature.

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