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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Efficient Solvent Selection Approach for High Solubility of Active Phytochemicals: Application for the Extraction of an Antimalarial Compound from Medicinal Plants
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Efficient Solvent Selection Approach for High Solubility of Active Phytochemicals: Application for the Extraction of an Antimalarial Compound from Medicinal Plants

机译:高效溶剂选择活性植物化学溶性的溶剂选择方法:用于提取药用植物的抗疟过程的应用

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The proposed approach unveils an efficient solvent selection manner for the extraction of active compounds from medicinal plants based on their high solvency for the target compound while considering green engineering principles. Rationalization of resources is achieved through theoretical screening using the Hansen solubility parameters in practice (HSPiP) approach of 26 solvent candidates toward the solvency of the antimalarial drug “artemisinin”. Solvent selection is challenged to meet some green engineering principles, from which four solvents are identified and then confirmed using gravimetric tests. The highest solubility at 20 °C is attributed to dimethyl sulfoxide with 103.7 mg·mL–1, while isopropanol recorded 8.45 mg·mL–1. Despite being a polar solvent, propylene glycol gave a very low solubility of 0.6 mg·mL–1. Being a food grade with very low global warming potential score, isopropanol stands as a green alternative to substitute n-hexane, where solubility measurements using changes of turbidity measurement indicate good solvency for artemisinin with 39.92 mg·mL–1 at 40 °C, a temperature at which generally extraction is conducted. Application of isopropanol to artemisinin extraction from Artemesia annua L. indicates a good artemisinin yield of 65% in only a single batch sequence at which the recovered crystals have a purity of more than 67%.]]>
机译:<!图像/中/ SC-2017-00384N_0005.gif“>所提出的方法推出了在考虑绿色工程原则的同时,基于其高偿钙的溶剂来提取来自药用植物的活性化合物的有效溶剂选择。通过使用汉森溶解度参数(HSPIP)方法的理论筛选来实现资源的合理化,达到26种溶剂候选型抗疟药剂“artemisinin”的溶剂。溶剂选择受到挑战以满足一些绿色工程原理,从中鉴定四种溶剂,然后使用重量测测试确认。在20℃下的最高溶解度归因于二甲基亚砜,103.7mg·mL -1 -1 / sop>,而异丙醇记录8.45mg·ml -1 -1 / sop>。尽管是极性溶剂,但丙二醇非常低的0.6mg·ml -1 -1 / sup>。作为一种具有非常低的全球变暖潜在评分的食品等级,异丙醇作为替代 n - 己烷的绿色替代品,其中使用浊度测量的变化的溶解度测量表明蒿素含有39.92mg·ml的良好溶性。在40℃下Sup> -1 / sup>,对通常提取的温度进行。异丙醇在奥尔替辛inAnua / i> L中施用氨基蛋白萃取。仅在回收的晶体的纯度大于67%的单个批次序列中,纯粹的青蒿素产率为65%。]]]>

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