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Landfill leachate - a water and nutrient resource for algae-based biofuels

机译:垃圾渗滤液-一种藻类生物燃料的水和养分资源

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摘要

There is a pressing need for sustainable renewable fuels that do not negatively impact food and water resources. Algae have great potential for the production of renewable biofuels but require significant water and fertilizer resources for large-scale production. Municipal solid waste (MSW) landfill leachate (LL) was evaluated as a cultivation medium to reduce both water and elemental fertilizer demands of algae cultivation. Daily growth rate and cell yield of two isolated species of algae (Scenedesmus cf. rubescens and Chlorella cf. ellipsoidea) were cultivated in MSW LL and compared with Bold's Basal Medium (BBM). Results suggest that LL can be used as a nutrient resource and medium for the cultivation of algae biomass. S. cf. rubescens grew well in 100% LL, when pH was regulated, with a mean growth rate and cell yield 91.2% and 92.8% of those observed in BBM, respectively. 5. cf. rubescens was more adaptable than C. cf. ellipsoidea to the LL tested. The LL used in this study supported a maximum volumetric productivity of 0.55 g/L/day of S. cf. rubescens biomass. The leachate had sufficient nitrogen to supply 17.8 g/L of algae biomass, but was limited by total phosphorus. Cultivation of algae on LL offsets both water and fertilizer consumption, reducing the environmental footprint and increasing the potential sustainability of algae-based biofuels.
机译:迫切需要不对粮食和水资源造成负面影响的可持续可再生燃料。藻类具有生产可再生生物燃料的巨大潜力,但需要大量的水和肥料资源才能进行大规模生产。评价城市生活垃圾(MSW)垃圾渗滤液(LL)作为减少藻类培养对水和元素肥料需求的培养基。在MSW LL中培养了两种分离的藻类(Scenedesmus cf. rubescens和Chlorella cf. ellipsoidea)的日生长速率和细胞产量,并与Bold's基础培养基(BBM)进行了比较。结果表明,LL可以作为藻类生物质的营养资源和培养基。比照在调节pH的情况下,冬凌草在100%LL中生长良好,其平均生长速率和细胞产率分别为BBM中观察到的91.2%和92.8%。 5. cf. rubescens比C更适应。椭圆形的LL测试。在这项研究中使用的LL支持S.cf.的最大容积生产力为0.55 g / L / day。冬凌草生物量。渗滤液中的氮足以供应17.8 g / L的藻类生物量,但受到总磷的限制。在LL上种植藻类可以抵消水和肥料的消耗,减少环境足迹并增加藻类生物燃料的潜在可持续性。

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