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Screening of Biodiesel Production from Waste Tuna Oil (Thunnus sp.), Seaweed Kappaphycus alvarezii and Gracilaria sp.

机译:筛选废金枪油(Thunnus Sp.),海藻Kappaphycus Alvarezii和Gracilaria sp的生物柴油生产。

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摘要

Biodiesel has several advantages over solar. Compared to solar, biodiesel has more eco-friendly characteristic and produces lower greenhouse gas emissions. Biodiesel that is made from animal fats can be produced from fish oil, while other alternative sources from vegetable oils are seaweed Kappaphycus alvarezii and Gracilaria sp. Waste tuna oil (Thunnus sp.) in Indonesia is commonly a side product of tuna canning industries known as tuna precook oil; on the other hand, seaweed Gracilaria sp. and Kappaphycus alvarezii are commonly found in Indonesia's seas. Seaweed waste that was used in the present study was 100 kg and in wet condition, and the waste oil was 10 liter. The seaweed was extracted with soxhletation method that used n-hexane as the solvent. To produce biodiesel, trans esterification was performed on the seaweed oil that was obtained from the soxhletation process and waste tuna oil. Biodiesel manufactured from seaweed K. alvarezii obtained the best score in flash point, freezing point, and viscosity test. However, according to level of manufacturing efficiency, biodiesel from waste tuna oil is more efficient and relatively easier compared to biodiesel from waste K. alvarezii and Gracilaria sp.
机译:生物柴油在太阳能方面具有几个优点。与太阳能相比,生物柴油具有更环保的特点,并产生更低的温室气体排放。由动物脂肪制成的生物柴油可以由鱼油生产,而植物油的其他替代来源是海藻Kapphycus Alvarezii和Gracilaria sp。垃圾金枪油(Thunnus sp。)在印度尼西亚通常是金枪鱼罐装行业的副产品,称为金枪鱼寄存物。另一方面,海藻Gracilaria sp。和kappaphycus alvarezii通常在印度尼西亚的海上找到。在本研究中使用的海藻浪费100公斤,潮湿条件下,废油为10升。用索氏法用N-己烷作为溶剂萃取海藻。为了生产生物柴油,对从Soxhlation工艺和废金枪油获得的海藻油上进行反式酯化。从海藻K.制造的生物柴油.Alvarezii获得了闪点,冰点和粘度测试的最佳分数。然而,根据制造效率的水平,与废物K.Alvarezii和Gracilaria SP的生物柴油相比,来自废金枪油的生物柴油更有效且相对较强。

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