利用甘蔗渣水解物提高 R. opacus 微生物脂质的产量

Q4 Earth and Planetary Sciences Research Journal of Chemistry and Environment Pub Date : 2023-11-05 DOI:10.25303/2712rjce064075
Zainab Mahmood, Lalit Kumar Singh
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引用次数: 0

摘要

生物柴油是传统化石燃料的替代品之一。生物柴油对营养供应有负面影响,因为它主要由植物油制成。由于含油微生物脂质(如由细菌、真菌和酵母产生的脂质)有可能成为合成生物柴油的替代原料,因此研究人员在几种环境条件下对乳清红球菌(Rhodococcus opacus)的生物量和脂质积累情况进行了考察。该研究目前的目标是利用响应面方法的中央复合设计(CCD)来发现特定变量的理想值。利用接种物比例、氮浓度和镁浓度等自变量,对含油杆菌(Rhodococcus opacus)进行了 CCD 设计。用于分析的响应变量是脂质含量。关于实验数据的脂质含量%,二阶多项式模型得出了良好的结果(R2 = 96,(P ≤ 0.01))。在使用葡萄糖和水解物的试验中,Rhodococcus opacus 的结果最好,在 pH 值为 7 时,其生物量浓度分别为 4.75 克/升和 4.55 克/升,脂质含量分别为 71.18% 和 66.55%。这项研究进一步证明了 R. opacus 作为一种变体利用现有的低成本生物质资源生产生物燃料的可行性。
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Enhanced Production of Microbial Lipid from R. opacus using Bagasse Hydrolysate
One alternative to traditional fossil fuels is biodiesel. It has a negative impact on nutritional supply because it is mostly manufactured from vegetable oils. Due to the possibility that oleaginous microbe lipids (such as those produced by bacteria, fungi and yeasts) could serve as an alternative raw material for the synthesis of biodiesel, the biomass and lipid buildup of Rhodococcus opacus were examined in several environmental settings. The study's current objective is to use the Response surface methodology's central composite design (CCD) to discover the ideal values of specific variables. Rhodococcus opacus, an oleaginous bacterium, was subjected to a CCD design using independent variables such as inoculum ratio, nitrogen concentration and magnesium concentration. The response variable used for the analysis was lipid content. Regarding the experimental data's lipid content%, a polynomial with a second-order model yielded good results (R2 = 96, (P ≤ 0.01)). Rhodococcus opacus produced the best results in the trials with glucose and hydrolysate with biomass concentrations of 4.75 g/L and 4.55 g/L and lipid contents of 71.18% and 66.55% respectively at pH 7. Compared to the starting values prior to optimization, these demonstrate a boost in the lipid concentration and an enhancement in the lipid coefficient. This study further supports the viability of R. opacus as a variant for the generation of biofuel from readily available, low-cost biomass resources.
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195
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4-8 weeks
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