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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Industrial waste utilization for low-cost production of raw material oil through microbial fermentation
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Industrial waste utilization for low-cost production of raw material oil through microbial fermentation

机译:利用工业废物通过微生物发酵低成本生产原料油

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摘要

In view of ever-growing demand of biodiesel, there is an urgent need to look for inexpensive and promising renewable raw material oils for its production. In this context, the aim of this study was to evaluate the potential use of industrial wastes for low-cost production of oils through microbial fermentation. Among the strains tested, Yarrowia lipolytica grew best and produced highest lipid when grown on decanter effluent from palm oil mill. When crude glycerol by-product from a biodiesel plant was added into the effluent as a co-substrate, Y. lipolytica produced a higher biomass of 3.21 g/L and a higher amount of lipid of 2.21 g/L which was 68 % of the dry weight. The scale up and process improvement in a 5-L bioreactor increased the biomass and lipid up to 5.53 and 2.81 g/L, respectively. A semi-continuous mode of operation was an effective mode for biomass enhancement while a fed-batch mode was effective for lipid enhancement. These yeast lipids have potential to be used as biodiesel feedstocks because of their similar fatty acid composition to that of plant oil.
机译:鉴于对生物柴油的需求不断增长,迫切需要寻找廉价且有前途的可再生原料油用于其生产。在这种情况下,本研究的目的是评估通过微生物发酵低成本生产工业废油的潜力。在测试的菌株中,解脂耶氏酵母在棕榈油厂的倾析器流出物中生长时生长最好,脂质最高。当将生物柴油厂的粗甘油副产品作为共底物添加到废水中时,解脂耶氏酵母产生的生物量更高,为3.21 g / L,脂质的含量更高,为2.21 g / L,占生物柴油的68%。净重。 5-L生物反应器的规模放大和工艺改进使生物量和脂质分别增加至5.53和2.81 g / L。半连续操作模式是生物量增强的有效模式,而分批补料模式则是脂质增强的有效模式。这些酵母脂质具有与植物油相似的脂肪酸组成,因此有潜力用作生物柴油原料。

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