邻苯三酚与亚油酸甲酯氧化偶联反应产物的粒度选择性吸附分离

Silvya Yusri, H. Sutanto, M. Nasikin
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引用次数: 7

摘要

生物柴油是一种可再生能源,燃烧效率高,排放低,可以替代有限储量的石油柴油。另一方面,生物柴油作为一种燃料存在着氧化降解不稳定的问题。该反应可能会降低生物柴油的质量,因为该反应的产物在燃烧过程中可能会对柴油机造成危害。因此,应在生物柴油中添加抗氧化添加剂,以防止氧化降解。在几种酚类抗氧化剂中,邻苯三酚被认为是生物柴油的最佳抗氧化剂之一。然而邻苯三酚在生物柴油中的溶解度相对较低。在之前的研究中,为了提高邻苯三酚在生物柴油中的溶解度,在邻苯三酚的苯环上加成烷基。以2,2-二苯基-1-苦硝基肼(DPPH)为原料,与邻苯三酚进行氧化偶联反应,得到新的合成产物。不幸的是,该反应产生了含有未反应的邻苯三酚、DPPH、邻苯三酚二聚体和低浓度合成产物的混合物。将合成产物从混合物中分离得到较高的浓度。分子大小的差异导致合成产物通过分子筛沸石从混合物中分离。沸石作为分子筛被广泛应用于基于分子大小的混合物分离。本研究采用3种孔径不同的分子筛:SAPO34 (4Å)、Na-Y (7Å)和13X(10Å),根据分子筛的分子大小对产物混合物进行吸附分离。结果证实,不同孔径的沸石可以成功地将合成产物与混合物中的其他组分分离。
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Size-Selective Adsorption in Separation of Products from Pyrogallol and Methyl Linoleate Oxidative Coupling Reaction
Biodiesel is a renewable, with high combustion efficiency but low emission as a replacement of limited reserves of petrodiesel. On the other hand, biodiesel as a fuel has a problem caused by its instability against oxidative degradation. This reaction might decrease the quality of biodiesel as the product of the reaction potentially harm the diesel engine during combustion. Therefore, antioxidant additive should be added to biodiesel to prevent the oxidative degradation. Among several phenolic antioxidants, pyrogallol has been known/mentioned as one of the best antioxidant additive for biodiesel. However, the solubility of pyrogallol in biodiesel is relatively low. In the previous study, the addition of alkyl group to pyrogallol’s benzene ring has been done in order to increase the solubility of pyrogallol in biodiesel. Pyrogallol was reacted with methyl linoleate through oxidative coupling reaction using 2,2-diphenyl-1-picryhidazyl (DPPH) resulting a new synthesized product. Unfortunately, the reaction resulted a mixture of products containing unreacted pyrogallol, DPPH, dimer of pyrogallol, and low concentration of the synthesized product. The synthesized product was separated from the mixture to get the higher concentration. The difference in molecular size led to the separation of synthesized product from the mixture through molecular sieve zeolites. Zeolites has been widely used as molecular sieve to separate the mixture based on molecular size. In this research, the product mixture was separated based on the molecular size through adsorption using 3 types of zeolites which has different pore sizes: SAPO34 (4Å), Na-Y (7Å) and 13X(10Å). The result confirmed that different pore size of zeolites could successfully separate the synthesized product from other components in the mixture.
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