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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Optimized biosynthesis of xanthan via effective valorization of orange peels using response surface methodology: A kinetic model approach
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Optimized biosynthesis of xanthan via effective valorization of orange peels using response surface methodology: A kinetic model approach

机译:使用响应表面方法的橙皮含量优化黄原的生物合成:动态模型方法

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摘要

Herein, an enhanced green production of xanthan gum has been achieved by utilizing orange peels. Response surface methodology and kinetic modeling were adapted for the process optimization and its influence on scale up production respectively. Optimal conditions for the maximum xanthan production were 1.62% acid hydrolysis, 85% carbon source of orange peel hydrolysate and 30.4 degrees C temperature. Furthermore, the optimized treatment was conducted in the batch culture fermentor to observe the associated variations during scale up process. In bio-fermentor, to the first time ever, xanthan production along with reducing sugar conversion and utilization rates reached 30.19 g/L, 69.29% and 99.99%, respectively. Employed characterization techniques of FTIR, XRD and HPLC confirmed the fermented product as xanthan gum and obtained an average molecular weight of 1.01 x106 g/mol. This work on account of optimized process parameters presented maximum xanthan production from a waste material.
机译:在此,通过利用橙皮果皮,已经实现了黄原胶的增强的绿色生产。 响应面方法和动力学建模分别适用于过程优化及其对扩展产量的影响。 最大黄原香蕉的最佳条件为1.62%酸水解,橙皮水解物85%碳源和30.4℃。 此外,在分批培养发酵机中进行优化的处理,以观察扩展过程中的相关变化。 在生物发酵罐中,三原坦生产以及降低糖转化和利用率分别达到30.19克/升,69.29%和99.99%。 使用FTIR,XRD和HPLC的表征技术证实了发酵产物作为黄原胶,得到1.01×10 6克/摩尔的平均分子量。 这项工作原因是优化的过程参数,从废料中呈现最大的黄原坦生产。

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