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Xylitol production from D-xylose in a membrane bioreactor

机译:从膜生物反应器中的D-木糖生产的木糖醇生产

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Economical feasibility of xylitol production by microorganisms depends directly on the efficiency of conversion and productivity. A potential alternative to ensure this objective is continuous bioconversion. Xylitol production and separation methodology by a biotechnological route using the benefits of membrane technology were investigated. Xylitol produced by a strain of Candida guilliermondii was obtained using a synthetic medium containing D-xylose in a continuous membrane bioreactor. Moreover, hollow-fiber membranes were prepared and modules suitable for continuous fermentation medium sterilization were designed. The membrane that presented the best performance had maximum pore diameter of 0.2 urn and permeability of 42.9 L/(m~2.h.bar) for a simulated medium. The best results obtained with this system for the continuous production of xylitol in a membrane bioreactor was attained with a dilution rate of 0.03 h~(-1), providing an efficiency of D-xylose conversion of 86% and productivity values up to 1.14 g of xylitol/L.h.
机译:由微生物生产木糖醇的经济可行性直接依赖于转化率和生产率的效率。确保这一目标的潜在替代品是连续的生物转化。木糖醇生产和分离方法采用膜技术的益处生物技术路线进行了调查。木糖醇生产的由假丝酵母的季也蒙的菌株使用含有以连续的膜生物反应器d-木糖合成培养基获得。此外,制备中空纤维膜并设计适合于连续发酵培养基灭菌模块。所呈现最佳性能的膜具有0.2瓮和42.9升/(平方米〜2.h.bar)渗透性为一个模拟介质的最大孔径。该系统用于在膜生物反应器连续生产木糖醇中获得的最好的结果是获得具有0.03 h的稀释率〜(-1),提供的86%和生产率d-木糖转化的效率值高达1.14克的木糖醇/ Lh的

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