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Dual functionality ionic liquid mix for extraction and esterification of fatty acids as a step towards increasing the efficiency of conversion of waste cooking oils to biodiesel

机译:双功能离子液体混合物,用于提取和酯化脂肪酸,作为提高废烹饪油转化为生物柴油效率的一步

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摘要

BACKGROUND The increasing value of pure vegetable oils has made the use of waste cooking oils an attractive alternative feedstock for biodiesel production but the presence of free fatty acids in the waste significantly reduces efficiency of the conversion. RESULTS A low-temperature mixed ionic liquid system with dual extraction and catalytic functions for the conversion of waste oils containing high levels of free fatty acids to biodiesel was successfully trialled. The solvent, a totally miscible system of HPyrBr and the Brønsted acid, SPyrHSO4, allows the key properties of each ionic liquid, as extractant or catalyst, to work uninhibited by the presence of the other. Extraction of free fatty acids from vegetable oils and their conversion to methyl esters in high yield is demonstrated for vegetable oils, containing single and mixed fatty acids, and for a model waste cooking oil. The oil separated from free fatty acids in the waste has a low acid value and can be converted efficiently to biodiesel; with the ionic liquid solvent recovered unchanged for reuse. CONCLUSIONS A mixed ionic liquid extraction-esterification solvent process has been developed to effect efficient conversion of free fatty acids in waste vegetable oils to biodiesel and their conversion to esters.
机译:背景技术纯植物油的价值增加已经使废烹饪油成为生物柴油生产的有吸引力的替代原料,但是废脂肪酸中存在的游离脂肪酸显着降低了转化效率。结果成功地尝试了具有双重萃取和催化功能的低温混合离子液体系统,该系统可将含有大量游离脂肪酸的废油转化为生物柴油。溶剂是HPyrBr和Brønsted酸SPyrHSO4的完全可混溶的系统,它使每种离子液体(作为萃取剂或催化剂)的关键性能不受另一种离子存在的抑制。从植物油中提取游离脂肪酸并将其高产率地转化为甲酯,对于含有单脂肪酸和混合脂肪酸的植物油以及典型的食用油来说,都证明了这一点。从废物中的游离脂肪酸中分离出的油具有较低的酸值,可以有效地转化为生物柴油。回收的离子液体溶剂保持不变,可重复使用。结论已开发出一种混合离子液体萃取-酯化溶剂方法,以实现将植物油废料中的游离脂肪酸有效转化为生物柴油并将其转化为酯的方法。

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