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首页> 外文期刊>The Korean journal of chemical engineering >Extraction of p-coumaric acid from agricultural residues and separation using 'sugaring out'
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Extraction of p-coumaric acid from agricultural residues and separation using 'sugaring out'

机译:从农业残留物中提取对香豆酸,并使用“糖化法”进行分离

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We investigated the extraction of para-coumaric acid (pCA) from different agriculture residues (corn stover, sugarcane bagasse, sorghum stalk, pearl millet stalk, green gram shell, groundnut shell, sesame shell) using sugarcane bagasse alkaline hydrolysis and separation of pCA using sugaring out - a new phase separation method. Primary screening of different feed stocks was by alkaline hydrolysis with 2M NaOH for 6 h at room temperature. Sugarcane baggase resulted into significant amount of pCA (1.1 g/L) and small amount of ferulic acid (FA) (0.23 g/L). The optimized alkaline hydrolysis conditions (2 M NaOH and 16 h) resulted into maximum pCA release of 2.0 g/L. The pCA was separated from alkaline hydrolysate using sugaring out, a two phase separation method that results in aqueous phase and the organic solvent (acetonitrile) phase. Sugaring-out separated more than 90% of the pCA from the alkaline hydrolysate. Results of HPLC using standard pCA and FA showed that the main component of the separated top (organic solvent) phase was pCA rather than FA.
机译:我们研究了使用甘蔗渣碱性水解和使用pCA分离法从不同农业残留物(玉米秸秆,甘蔗渣,高粱茎,珍珠粟茎,绿豆壳,花生壳,芝麻壳)中提取对香豆酸(pCA)的方法。加糖-一种新的相分离方法。初步筛选不同的原料是在室温下用2M NaOH碱水解6小时。甘蔗渣酶产生大量pCA(1.1 g / L)和少量阿魏酸(FA)(0.23 g / L)。优化的碱性水解条件(2 M NaOH和16 h)导致最大pCA释放为2.0 g / L。使用糖析法将pCA与碱性水解产物分离,这是一种两相分离方法,可产生水相和有机溶剂(乙腈)相。糖化作用从碱性水解物中分离出超过90%的pCA。使用标准pCA和FA进行HPLC的结果表明,分离出的顶层(有机溶剂)相的主要成分是pCA而非FA。

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