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Application of the response surface methodology (RSM) for optimizing the production of volatile organic compounds (VOCs) by Trichosporon moniliiforme

机译:响应面法(RSM)在优化单孢霉菌中挥发性有机化合物(VOC)的生产中的应用

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Response surface methodology (RSM) was applied in optimizing the production of volatile organic compounds (VOCs) by shake-flask cultures of a selected Trichosporon moniliiforme strain (DBVPG 4665).A factorial experiment (2~3) was designed by setting three parameters at two levels:X_1=incubation time (IT=72-168 h);X_2=pH (4-7);X_3=L-methionine concentration (L-MET=5-20 gl~(-1)).On the basis of the results of factorial design,X_2 (pH) and X_3 (L-MET) were optimized by performing a central composite design (CCD).Second-order polynomial models and response surfaces were obtained for total VOC concentration (VOC1) and for the percentage of dimethyl disulphide (DMDS)/total VOCs (%DMDS).A range of variation of X_2 and X_3 able to maximize simultaneously both responses has been found.Average final values of responses (VOC1=4.9+-1.3 mg 1~(-1);%DMDS=97.6+-1.1%) were about 532 and 133% of data of central point and were in good agreement with calculated values,thus confirming the reliability of our empirical model in optimizing VOCs production by T.moniliiforme
机译:响应面法(RSM)被用于通过摇瓶培养的Trichosporon moniliiforme菌株(DBVPG 4665)的摇瓶培养来优化挥发性有机化合物(VOCs)的产生。通过设置三个参数来设计阶乘实验(2〜3)两个级别:X_1 =孵育时间(IT = 72-168 h); X_2 = pH(4-7); X_3 = L-蛋氨酸浓度(L-MET = 5-20 gl〜(-1))。进行因子设计的结果中,通过执行中央复合设计(CCD)优化了X_2(pH)和X_3(L-MET)。获得了总VOC浓度(VOC1)和用于VOC浓度的二阶多项式模型和响应面二甲基二硫化物(DMDS)占总VOC的百分比(%DMDS).X_2和X_3的变化范围能够同时使两个反应最大化。平均反应终值(VOC1 = 4.9 + -1.3 mg 1〜(- 1);%DMDS = 97.6 + -1.1%)分别约为中心点数据的532和133%,与计算值相吻合,从而证实了ou的可靠性T.moniliiforme优化VOC生产的经验模型

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