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Study on bioethanol production from oil palm trunk (OPT) SAP by using saccharomyces cerevisiae kyokai no.7 (ATCC 26422)

机译:用酿酒酵母共7号从油棕树干(OPT)SAP中生产生物乙醇的研究(ATCC 26422)

摘要

Bioethanol is by far the most important biofuel worldwide. This is mainly a result of the proven and established process technology in addition to the wideudrange of raw materials suitable for its production. The aim of this study is the screening of parameter of pH (3-7) and agitation speed (110-250 rpm) that are significance to the fermentation process for the production of bioethanol from oil palm trunk (OPT) sap by yeast Saccharomyces cerevisiae Kyokai no.7(ATCC26422). Fermentation design was set up to gain fermentation profile and validation to further obtaining the data for the screening of parameter for the whole fermentations process at several points of times. Data of ethanol, glucose and cell dry weight concentration has been collected and analyzed. ANOVA was performed to determine interacting factor affecting bio-ethanol production after the main effect was estimated by using Design Expert. Fermentation is more valid at sterile condition with 52.56% difference with non-sterile condition. The optimum pH is 6.75 and optimum agitation is 176.56 rpm. The effect of pH was not significant with only 0.88% contribution and the interactions are more significant for agitation speed at 5.12% of contribution with 8.77% of error from expected result. VIII
机译:迄今为止,生物乙醇是全球最重要的生物燃料。这主要是由于成熟和成熟的工艺技术以及适用于其生产的各种原材料的结果。这项研究的目的是筛选pH值(3-7)和搅拌速度(110-250 rpm)的参数,这些参数对于酵母酿酒酵母从油棕树干(OPT)汁液生产生物乙醇的发酵过程具有重要意义。协和第7号(ATCC26422)。设置发酵设计以获得发酵概况和验证,以进一步获得用于在多个时间点筛选整个发酵过程的参数的数据。已收集并分析了乙醇,葡萄糖和细胞干重浓度的数据。在使用Design Expert评估主要影响后,进行了方差分析以确定影响生物乙醇生产的相互作用因素。在无菌条件下发酵更有效,与非无菌条件下差异为52.56%。最佳pH为6.75,最佳搅拌为176.56 rpm。 pH的影响并不显着,只有0.88%的贡献,而相互作用对搅拌速度的影响更显着(贡献的5.12%,预期结果的误差为8.77%)。八

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