首页> 外文期刊>Journal of marine science and technology >INVESTIGATION ON INTERMITTENT MICROWAVE-ASSISTED EXTRACTION OF SULFATED POLYSACCHARIDES FROM PORPHYRA DENTATA
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INVESTIGATION ON INTERMITTENT MICROWAVE-ASSISTED EXTRACTION OF SULFATED POLYSACCHARIDES FROM PORPHYRA DENTATA

机译:断续微波辅助提取齿齿藻中多糖的研究

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摘要

This study investigated the intermittent microwave-assisted extraction (MAE) of sulfated polysaccharides from Porphyra (P.) dentata Kjellman, 1897. The experiment consisted of adjusting 10% to 90% ethanol solutions (v/v) used as extraction solvents, and then applied intermittent MAE to extract dentata solutions. These different extract solutions were then further evaluated for their sulfated polysaccharides contents (ig/mL). The optimal conditions of the sulfated polysaccharides content using intermittent MAE with 3, 4, and 5 cycle treatment were studied using response surface methodology. This study was performed using a three-level, three-factor design and aimed to determine the optimal combination of ethanol concentration (10-90%, v/v, Xi), microwave power (200-400 W, X-2), and intermittency of the microwave field (0-1, X-3) for obtaining the optimal results in extracting sulfated polysaccharides from P dentata. The response variable of the sulfated polysaccharides content (p.g/mL) was significantly affected by the ethanol concentration (Xi), microwave power (X-2), and intermittency (X-3) at 5% level of significance. The optimal treatment was established by adjusting the ethanol concentration to 44.4%, followed by using a 200 W microwave with an intermittency of 0.75 at 4 cycles for this study. Verification tests indicated that the second order polynomial model generated was adequate. The optimal extraction condition was provided and the validation proved that the results were acceptable.
机译:这项研究研究了间歇性微波辅助提取齿叉菜(P.)齿麦(P.)的硫酸化多糖(MAE),1897年。该实验包括将10%至90%的乙醇溶液(v / v)调整为提取溶剂,然后应用间歇式MAE提取牙本质溶液。然后进一步评估这些不同的提取液的硫酸化多糖含量(ig / mL)。采用响应面方法研究了采用3、4和5个循环处理的间歇MAE的硫酸多糖含量的最佳条件。这项研究使用三级三因素设计进行,旨在确定乙醇浓度(10-90%,v / v,Xi),微波功率(200-400 W,X-2),微波场(0-1,X-3)的间歇性,以获得从齿齿P中提取硫酸多糖的最佳结果。硫酸化多糖含量(p.g / mL)的响应变量受5%显着性水平的乙醇浓度(Xi),微波功率(X-2)和间歇性(X-3)的显着影响。通过将乙醇浓度调节至44.4%,然后使用200 W微波,在此4个循环中的间歇性为0.75,确立了最佳处理方法。验证测试表明生成的二阶多项式模型是足够的。提供了最佳提取条件,并验证了结果是可以接受的。

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