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Understanding the influence of processing conditions on the extraction of rhamnogalacturonan-I hairy pectin from sugar beet pulp

机译:了解加工条件对甜菜粕中鼠李糖半乳糖醛酸-I毛果胶的提取影响

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摘要

Sugar beet pectin is rich in rhamnogalacturonan-I (RG-I) region, which is a potential source of prebiotics. RG-I pectin cannot be extracted the same way as commercial homogalacturan-rich pectin using hot acid. Therefore, this study has explored several alternative methods, including microwave-assisted extraction (MAE) and conventional-solvent extraction (CSE) at atmospheric pressure using different solvents, and microwave-assisted hydrothermal extraction (MAHE) under pressure using water. No conclusive differences in microwave and conventional heating were found with heating rate controlled. The optimum treatment times of both MAE and CSE at 90 °C atmospheric pressure and regardless of the solvents used were 120 min; however, MAHE at 130 °C under pressure can dramatically reduce the time to 10 min. Alcohol-insoluble solids (AIS) extracted using pH13 solvent by MAE had both the highest RG-I yield at 25.3% and purity at 260.2 mg/g AIS, followed by AIS extracts using water by MAHE with 7.5% and 166.7 mg/g AIS respectively.
机译:甜菜果胶富含鼠李糖半乳糖醛酸-I(RG-1)区,这是益生元的潜在来源。 RG-1果胶无法使用热酸以与市售富含半乳糖苷的果胶相同的方式提取。因此,本研究探索了几种替代方法,包括在大气压下使用不同的溶剂进行微波辅助萃取(MAE)和常规溶剂萃取(CSE),以及在压力下用水进行微波辅助水热萃取(MAHE)。在加热速率受控的情况下,没有发现微波和常规加热的结论性差异。在90 andC的大气压下,无论使用哪种溶剂,MAE和CSE的最佳处理时间均为120 min。但是,MAHE在130 C的压力下可以将时间显着减少到10 min。 MAE用pH13溶剂萃取的不溶于乙醇的固体(AIS)的RG-I收率最高,纯度为260.2 puritymg / g AIS,其次是MAHE用水萃取的AIS萃取物,分别为7.5%和166.7 mg / g AIS分别。

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