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Xanthan gum production from acid hydrolyzed broomcorn stem as a sole carbon source by Xanthomonas campestris

机译:Xanthomonas campestris以酸水解的room帚茎为唯一碳源生产黄原胶

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摘要

Xanthan gum is an exo-polysaccharide industrially produced by fermentation using simple sugars. In this study, broomcorn stem was introduced as a low-cost- and widely available carbon source for xanthan gum fermentation. Broomcorn stem was hydrolyzed using sulphuric acid to liberate reducing sugar which was then used as a carbon source for biosynthesis of xanthan gum by Xanthomonas campesteris. Effects of hydrolysis time (15, 30, 45 and 60 min), sulphuric acid concentration (2, 4, 6 and 8% v/v) and solid loading (3, 4, 5 and 6% w/v) on the yield of reducing sugar and consequent xanthan production were investigated. Maximum reducing sugar yield (55.2%) and xanthan concentration (8.9 g/L) were obtained from hydrolysis of 4% (w/v) broomcorn stem with 6% (v/v) sulphuric acid for 45 min. The fermentation product was identified and confirmed as xanthan gum using Fourier transform infrared spectroscopy analysis. Thermogrvimetric analysis showed that thermal stability of synthesized xanthan gum was similar to those reported in previous studies. The molecular weight of the produced xanthan (2.23 × 106 g/mol) was determined from the intrinsic viscosity. The pyruvate and acetyl contents in xanthan gum were 4.21 and 5.04%, respectively. The chemical composition results indicated that this biopolymer contained glucose, mannose and glucoronic acid with molecular ratio of 1.8:1.5:1.0. The kinetics of batch fermentation was also investigated. The kinetic parameters of the model were determined by fermentation results and evaluated. The results of this study are noteworthy for the sustainable xanthan gum production from low-value agricultural waste.
机译:黄原胶是通过使用单糖发酵生产的一种外多糖。在这项研究中,引入了room帚茎作为黄原胶发酵的低成本且可广泛获得的碳源。 room帚茎用硫酸水解以释放还原糖,然后还原糖被用作碳源,由黄单胞菌(Xanthomonas campesteris)生物合成黄原胶。水解时间(15、30、45和60分钟),硫酸浓度(2、4、6和8%v / v)和固含量(3、4、5和6%w / v)对产量的影响研究了还原糖的含量和随后的黄原胶生产。将4%(w / v)的acid帚茎与6%(v / v)的硫酸水解45分钟,可获得最大的还原糖收率(55.2%)和黄原胶浓度(8.9g / L)。使用傅立叶变换红外光谱分析鉴定发酵产物并确认为黄原胶。热重分析表明合成的黄原胶的热稳定性与先前研究中报道的相似。由特性粘度确定所产生的黄原胶的分子量(2.23××10 10 6 sup / g)。黄原胶中的丙酮酸和乙酰基含量分别为4.21和5.04%。化学组成结果表明,该生物聚合物含有葡萄糖,甘露糖和葡萄糖酸,分子比为1.8:1.5:1.0。还研究了分批发酵的动力学。通过发酵结果确定并评价模型的动力学参数。这项研究的结果对于低价值农业废弃物可持续生产黄原胶值得关注。

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