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Production of phenolic compounds from rice bran biomass under subcritical water conditions

机译:在亚临界水条件下由米糠生物质生产酚类化合物

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This study investigated the application of subcritical water as green and environmentally friendly treatment medium for hydrolysis and decomposition of rice bran in order to obtain phenolic compounds as well as other valuable materials. Experiments were performed in a batch stainless steel reactor at different temperatures ranging from 100 to 360 °C at the residence time of 10 min. The effect of residence time was also studied up to 30 min at 220 °C. After subcritical water treatment, it was evaluated for their individual concentrations of phenolic compounds, total phenolic content, antioxidant activity, total soluble sugars, pH, and electrical conductivity as well as remained solid (solid residue). Eleven phenolic compounds were identified from decomposition of rice bran: caffeic, ferulic, gallic, gentisic, p-coumaric, p-hydroxybenzoic, protocatechuic, sinapic, syringic, vanillic acids and vanillin. Results indicated that total phenolic content and antioxidant activity increased with temperature. They also sharply increased with residence time up to 15 min.Also at an optimum condition, significant amounts of soluble sugars in aqueous solution (approximately 215 glucose equivalents mg/g dry matter) were identified which demonstrated that subcritical water also is a promising treatment medium for hydrolysis of this biomass into water soluble sugars using a short residence time.Changing the pH of the solution due to the hydrolysis of rice bran into phenolic compounds with acidic function and also production of other organic compounds, suggested that autocatalysis may occurred during subcritical water treatment.
机译:本研究研究了亚临界水作为米糠水解和分解的绿色环保处理介质的应用,以获得酚类化合物以及其他有价值的材料。实验在间歇式不锈钢反应器中在100至360°C的不同温度下,停留时间为10分钟。还研究了在220°C下长达30分钟的停留时间的影响。经过亚临界水处理后,评估了它们各自的酚化合物浓度,总酚含量,抗氧化活性,总可溶性糖,pH和电导率以及残留的固体(固体残留物)。从米糠的分解中鉴定出十一种酚类化合物:咖啡酸,阿魏酸,没食子酸,龙胆酸,对香豆酸,对羟基苯甲酸,原儿茶酸,芥子酸,丁香酸,香草酸和香草醛。结果表明,总酚含量和抗氧化活性随温度升高而增加。随着停留时间延长至15分钟,它们也急剧增加。此外,在最佳条件下,还发现了水溶液中的大量可溶性糖(约215葡萄糖当量mg / g干物质),这表明亚临界水也是一种有前途的处理介质可以通过短停留时间将该生物质水解为水溶性糖。由于米糠水解为具有酸性功能的酚类化合物以及其他有机化合物的产生,从而改变了溶液的pH,这表明在亚临界水中可能发生自催化治疗。

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