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Relevance of ions in pressurized fluid extraction of carbohydrates and phenolics from barley hull

机译:离子在大麦壳中加压提取碳水化合物和酚类化合物中的相关性

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摘要

The removal of total carbohydrates and phenolics from the hull of a new barley variety BT 584 using solid-liquid batch and aqueous pressurized fluid (ethanol or ionic liquid) extractions were evaluated. Using pressurized fluids, temperature was the most significant variable for the extraction of biocompounds from barley hull. The highest phenolics extraction (189.1 ± 3.1 mg/g hull) was obtained using pressurized aqueous ionic liquid while the highest carbohydrates extraction (450.3 ± 7.8 mg/g hull) was obtained using pressurized aqueous ethanol. The predicted solubility of ferulic acid and glucose in water, ionic liquid or carbonic acid, and the acid dissociation constant of the compounds studied allowed proposing an extraction mechanism based on biomass interaction with ionic species formed during pressurized fluid extraction. The anionic species facilitated removal of phenolics while the interaction of cationic/anionic species facilitated removal of carbohydrates from barley hull biomass.
机译:评估了使用固液分批萃取和水加压流体(乙醇或离子液体)萃取从新大麦品种BT 584的船体中去除总碳水化合物和酚类的方法。使用加压流体,温度是从大麦壳中提取生物化合物的最重要变量。使用加压的含水离子液体获得最高的酚类提取物(189.1±3.1 mg / g壳),而使用加压的含水乙醇获得最高的碳水化合物提取物(450.3±7.8 mg / g壳)。阿魏酸和葡萄糖在水,离子液体或碳酸中的预测溶解度以及所研究化合物的酸解离常数,可以提出一种基于生物质与加压流体萃取过程中形成的离子物质相互作用的萃取机理。阴离子物质促进酚类物质的去除,而阳离子/阴离子物质的相互作用促进大麦壳生物质中碳水化合物的去除。

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