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首页> 外文期刊>Journal of Environmental Management >Biological nutrient recovery from human urine by enriching mixed microalgal consortium for biodiesel production
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Biological nutrient recovery from human urine by enriching mixed microalgal consortium for biodiesel production

机译:通过富集混合微藻财团从人尿中回收生物养分来生产生物柴油

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Utilization of waste resources is necessary to harness the long-term sustainability of algal technology. The study focused on the use of human urine as the basic nutrient source for culturing native microalgal consortium and further optimized the process parameters using response surface methodology. A full factorial, central composite rotatable design (CCRD) with three variables: urine concentration (1-10% vol of urine/vol of distil water [%v/ v]), pH (6.5-9) and light intensity (50-350 μmol photons m~(-2)sec~(-1)) was used to evaluate the microalgal biomass and lipid content. Results indicated that at 95% confidence limits, the selected factors influence the biomass and lipid productivity. The maximum biomass productivity of 211.63 ± 1.40 mg 1~(-1) d~(-1) was obtained under optimized conditions with 6.50% v/v of urine, pH of 7.69 and at light intensity of 205.40 μmol photons m~(-2)sec~(-1). The lipid content was found to increase from 18.96 ± 1.30% in control media to 26.27 ± 1.94% under optimal conditions. The interactive effect of variables over the microalgal biomass and lipid content has also been elucidated. The data obtained were comparable to the BG11 media (control). Optimized diluted urine media in the presence of ammonium ions and under limited nitrate showed better lipid yields. Significant lipid bio-molecules were detected in the algal oil extracts obtained from the diluted urine media characterized by Fourier transform infrared spectroscopy (FTIR) and Nuclear magnetic resonance (NMR). Gas chromatography-mass spectrometry (GCMS) revealed the presence of several monounsaturated and polyunsaturated fatty acids in the transesterifled algal oil. Such studies would aid in technically realizing the field scale cultivation of micro-algae for biofuels.
机译:为了利用藻类技术的长期可持续性,必须利用废物资源。该研究集中于使用人类尿液作为培养天然微藻类财团的基本营养源,并使用响应面方法进一步优化了工艺参数。具有三个变量的全因子中央复合可旋转设计(CCRD):尿液浓度(尿液体积1-10%/蒸馏水体积[%v / v]),pH(6.5-9)和光照强度(50-用350μmol光子m〜(-2)sec〜(-1))评估微藻的生物量和脂质含量。结果表明,在95%的置信度范围内,所选因素会影响生物量和脂质生产率。在优化条件下,以6.50%v / v尿液,pH为7.69,在光强度为205.40μmol光子m〜(-)的条件下,获得的最大生物量生产率为211.63±1.40 mg 1〜(-1)d〜(-1)。 2)秒〜(-1)。发现脂质含量从对照培养基中的18.96±1.30%增加到最佳条件下的26.27±1.94%。还阐明了变量对微藻生物量和脂质含量的交互作用。获得的数据与BG11培养基(对照)相当。在存在铵离子且硝酸盐含量有限的情况下,优化的稀释尿液介质显示出更好的脂质产量。在通过稀释傅立叶变换红外光谱(FTIR)和核磁共振(NMR)表征的稀释尿液介质中获得的藻油提取物中检测到了重要的脂质生物分子。气相色谱-质谱(GCMS)分析表明,在酯交换的藻油中存在几种单不饱和和多不饱和脂肪酸。这些研究将有助于在技术上实现用于生物燃料的微藻的田间规模种植。

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