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首页> 外文期刊>Journal of food engineering >Optimization of xylitol recovery by crystallization from synthetic solutions using response surface methodology
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Optimization of xylitol recovery by crystallization from synthetic solutions using response surface methodology

机译:通过使用响应面法从合成溶液中结晶来优化木糖醇的回收率

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摘要

The combined effects of initial xylitol supersaturation value (Xyt_s) and cooling temperature (T_c) on xylitol crystallization from synthetic solutions were investigated using response surface methodology. A 3~2 full-factorial design was employed for experimental design. Synthetic solutions were subjected to crystallization, aimed at contributing to the development of a complete bioiechno-logical process, including preliminary xylose-to-xylitol bioconversion in hemicellulose hydrolyzate and final xylitol recovery by crystallization. The crystallization methodology consisted of concentration of synthetic solutions up to supersaturation, cooling of the supersaturated solutions, separation of crystals by centrifugation, and final filtration. By means of response surface analysis, the statistical model identified the operating conditions (Xyt_s = 728 g/l and T_c = -6.0℃) under which purity degree (0.97) and xylitol crystallization yield (0.54) were simultaneously optimized. On the other hand, a purity degree close to 1.0 to meet industrial standards is expected at Xyt_s= 583 g/l and T_c = -2.4℃, but the crystallization yield would be unsatisfactory (0.25).
机译:使用响应面方法研究了初始木糖醇过饱和值(Xyt_s)和冷却温度(T_c)对合成溶液中木糖醇结晶的综合影响。实验设计采用3〜2全因子设计。将合成溶液进行结晶,旨在促进完整的生物力学过程的发展,包括在半纤维素水解物中初步进行木糖到木糖醇的生物转化和通过结晶进行最终木糖醇的回收。结晶方法包括合成溶液的浓缩直至过饱和,冷却过饱和的溶液,通过离心分离晶体,最后过滤。通过响应面分析,统计模型确定了可同时优化纯度(0.97)和木糖醇结晶产率(0.54)的操作条件(Xyt_s = 728 g / l,T_c = -6.0℃)。另一方面,在Xyt_s = 583 g / l和T_c = -2.4℃的情况下,预期纯度接近1.0以达到工业标准,但结晶收率不能令人满意(0.25)。

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