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Preparation and characterization of plant based lipophilic colorants as water soluble nanoparticle

机译:水溶性纳米颗粒植物基亲脂性着色剂的制备与表征

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Response surface methodology (RSM) was used in this study to obtain empirically significant (p< 0.05) models predicting the mean particle size, PDI of the prepared nanodispersions of alizarin (a plant based pigment), extracted from Rubia tinctorum L. roots , as a function of organic to aqueous phase addition rate, emulsifier concentration and polymer concentrations. The mentioned processing variables were then optimized to produce the nanodispersions with minimum particle size and maximum homogeneity (minimum PDI). The significant (p<0.05) correlation between the process parameters and physical charac teristics of alizarin nanodispersions through second order polynomial models were obtained. It was demonstrated that mixing the organic phase containing alizarin and the aqueous phase containing Tween 20 as emulsifier in concentration of 3.5 ml and PVP as polymer with concentration of 240 mg with the rate of 0.45 ml/min would give the most desired alizarin nanodispersions with minimum particle size (45.15 nm) and PDI (0.1898). No significant differences observed between the experimental and predicted val ues of response variables, confirmed the adequacy of models.
机译:在本研究中,使用了响应面方法(RSM)获得了经验上有意义的(p <0.05)模型,该模型预测了从茜草根提取的茜素(一种植物基颜料)的纳米分散体的平均粒径,PDI。有机相与水相的添加速度,乳化剂浓度和聚合物浓度的函数。然后,对提到的工艺变量进行优化,以生产出具有最小粒径和最大同质性(最小PDI)的纳米分散体。通过二阶多项式模型获得了茜素纳米分散体的工艺参数与物理特性之间的显着相关性(p <0.05)。结果表明,将含有茜素的有机相和含有Tween 20作为乳化剂的水相以3.5 ml的浓度和以PVP作为聚合物的浓度为240 mg的聚合物以0.45 ml / min的速率混合,将得到最理想的茜素纳米分散体粒径(45.15 nm)和PDI(0.1898)。在实验变量和预测变量之间没有观察到明显差异,证实了模型的正确性。

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