橄榄树叶中含有醋酸杆菌和酿酒酵母稳定生长的培养培养基的酒精和酸的pH值和氧化还原电位变化的学术建模

Y. Ermurat
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引用次数: 0

摘要

在设计用于醋酸杆菌和酿酒酵母稳定生长的培养培养基中,对pH和氧化还原电位的变化进行了有指导意义的建模。以橄榄树叶、磷酸、醋、乙酸和乙醇为培养物进行提取和共生。采用场发射枪扫描电镜(FEG-SEM)对橄榄叶粉末进行了结构成像。在初始最低pH、30℃和35℃的高温条件下进行8天的液相发酵实验。在培养过程中观察到醋酸弧菌和酿酒葡萄球菌的稳定生长。pH值增大,水+磷酸、醋+A的氧化还原电位增大。醋酸+磷酸,酿酒酵母+A。醋酸+醋酸+磷酸和酿酒酵母+A。醋酸+磷酸和醋酸+磷酸和醋+磷酸溶液工艺,温度为30℃。当pH值降低时,酿酒酵母+乙醇+磷酸、醋+磷酸、酿酒酵母+酿酒酵母的氧化还原电位降低。醋酸+醋酸+磷酸和酿酒酵母+A。醋酸+磷酸溶液工艺在30℃,和醋+A。醋酸+磷酸,酿酒酵母+A。醋酸+醋酸+磷酸和酿酒酵母+A。醋酸+磷酸溶液过程在35℃。
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Scholastic modeling of pH and Redox Potential Changes in olive tree leaf alcohol and acids containing incubation media designed for the steady growth of Acetobacter aceti and Saccharomyces cerevisiae
Modeling of pH and redox potential changes was investigated instructionally in incubation media designed for a stable growth of Acetobacter aceti and Saccharomyces cerevisiae. Olive tree leaf, phosphoric acid, vinegar, acetic acid and ethyl alcohol were used in incubation for extraction and symbiotic purposes. Structure imaging of olive tree leaf powder was performed using the Field Emission Gun – Scanning Electron Microscope (FEG-SEM). The incubation experiments were carried out at initially lowest pH and high temperatures of 30oC and 35oC for eight days in liquid state fermentation process. A steady A. aceti and S. cerevisiae growth was observed during the incubation. Increase in pH value displayed increase in redox potential in water+ phosphoric acid, vinegar+A. aceti+phosphoric acid, S. cerevisiae+A. aceti+acetic acid+phosphoric acid and S. cerevisiae+A. aceti+phosphoric acid solution processes at 30oC, and acetic acid+phosphoric acid and vinegar+phosphoric acid solution processes at 35oC. Decrease in pH value displayed decrease in redox potential in A. aceti+alcohol+phosphoric acid, vinegar+phosphoric acid, S. cerevisiae+A. aceti+acetic acid+phosphoric acid and S. cerevisiae+A. aceti+phosphoric acid solution processes at 30oC, and vinegar+A. aceti+phosphoric acid, S. cerevisiae+A. aceti+acetic acid+phosphoric acid and S. cerevisiae+A. aceti+phosphoric acid solution processes at 35 oC.
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