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Optimization of polyhydroxybutyrate fermentation in shake flasks using oil palm trunk sap medium and scale up to 20 liter stirred tank fermenter

机译:使用油棕树干液汁培养基和规模最大至20升搅拌罐发酵罐优化摇瓶中多羟基丁酸酯发酵

摘要

The uses of synthetic plastic nowadays giving many bad effects to the environment. Inabilities of synthetic plastic to degrade completely and took hundreds years to degrade entirely make a problem especially to the mother nature. To overcome these problems, the researcher were came with the idea to form a biodegradable plastic to replace the existing plastic that can produce microbially and using a renewable source which was polyhydroxybutyrate (PHB). However, PHB have a problem to produce in a large scale because need a higher cost compared to the petrochemical based plastic. The carbonudsource for the PHB is expensive than the synthetic plastic. In this study Oil Palm Trunk Sap (OPTS) were used as the carbon source of the fermentation of PHB. Three parameter were studied to get the optimum value for the production of PHB there are fermentation temperature, agitation speed and the volume of oil palm trunk sap.udFermentation was done in 500mL shake flask that containing mineral salt medium, OPTS and inoculums. The fermentation process were done at 48 hours with differentudlevels of parameters. Then the product were analysed for cell dry weight and PHB content. Then, for the scale up analysis, 1.5L inoculums, 2L carbon source where theudmixture of glucose, fructose and sucrose were the same as OPTS sugar composition, 2L of MSM and 10.5L of distilled water made 15L working volume. The fermentation were done for 72 hours and sampling every 6 hours. Based on the result of cell dry weight, the optimum temperature; agitation speed and volume of oil palm trunk sap were 32.6°C, 162.5 rpm and 38.8% while the highest predicted concentration of PHB and cell dry weight were 1.985 g/L and 1.401 g/L. The highest production of PHB and cell dry weight were at 72 hours for first run that are 0.419 g/L and 4.5 g/L respectively while in second run the highest production of PHB at 12 hour and 48 hours for cell dryudweight that are 0.494 g/L and 4g/L respectively.
机译:如今,合成塑料的使用给环境带来许多不利影响。合成塑料无法完全降解,并且需要数百年的时间才能完全降解,这对母亲来说尤其是一个问题。为了克服这些问题,研究人员提出了一种想法,即形成一种可生物降解的塑料,以代替现有的可以通过微生物生产的塑料,并使用聚羟基丁酸酯(PHB)这种可再生资源。然而,PHB具有大规模生产的问题,因为与基于石油化学的塑料相比需要更高的成本。 PHB的碳源比合成塑料昂贵。在这项研究中,油棕树干液(OPTS)被用作PHB发酵的碳源。研究了发酵温度,搅拌速度和油棕树干液的体积这三个参数,以求得PHB的最佳产值。 ud在装有矿盐培养基,OPTS和接种物的500mL摇瓶中发酵。发酵过程在48小时内以不同的 udlevel参数完成。然后分析产物的细胞干重和PHB含量。然后,为进行放大分析,使用1.5L接种物,2L碳源(葡萄糖,果糖和蔗糖的混合物与OPTS糖成分相同),2L MSM和10.5L蒸馏水制成15L工作体积。发酵进行72小时,每6小时取样。根据细胞干重的结果,确定最佳温度;油棕树干汁液的搅拌速度和体积分别为32.6°C,162.5 rpm和38.8%,而最高PHB预测浓度和细胞干重分别为1.985 g / L和1.401 g / L。 PHB的最高产量和细胞干重在第一次运行时分别为0.419 g / L和4.5 g / L,而在第二次运行中,PHB的最高产量分别在12小时和48小时时为细胞干重/重量分别为0.494 g / L和4g / L。

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    Syaza Afifah Rosley;

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  • 年度 2014
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