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Microalgae cultivation and harvesting for the production of biofuels.

机译:微藻的种植和收获,用于生产生物燃料。

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摘要

Increasing concern over climate change and the impact of greenhouse gas emissions as well as diminishing global oil reserves has pushed research into alternative energy. Reducing the cost of microalgae, a promising source for alternative energy, is a key step in commercialising biodiesel production. Currently avenues such as the use of waste stream cost effective cultivation system and efficient harvesting options are being explored for the common goal of establishing commercially viable microalgae production and utilisation schemes. From reviewing the current progress presented in literature this research has identified several aspects of importance to commercialising biofuel production.ududAfter identifying several gaps in the literature covering direct comparison of microalgal biomass production between temperate and hot region, a novel investigation utilising a refined computer model was undertaken to compare upstream cultivation of open systems in both temperate and hot climates. The outcome of which suggested the relative importance of light over temperature for the cultivation of microalgae in an open pond system. This was then explored further experimentally by setting the temperate light intensity, photoperiod and temperature conditions for three months representing summer and winter seasons. The results of this novel adaptation of seasonal highs and lows data of a temperate climate (UK) indicated that a more effective direction of intervention is the investment in additional light-supply in place of a heating-system, which is more than likely to yield higher algal biomass for biofuel production. Finally, an approach was made towards engaging more economical aspects of the process from upstream cultivation of waste stream based nutrients (leachate) with a native microalgae strain for the first time, to downstream dewatering of algal biomass with innovative improvements to energy efficient forward osmosis technology by uniquely assessing microalgae nutrient-based draw solution. The results both indicated the real potential of utilising these cost efficient methods at a lab scale.ududThe ultimate goal of the project was to combine the research efforts for both cultivation (upstream) and harvesting (downstream) to assist in the understanding of the commercial viability of biofuel production from microalgae.
机译:人们对气候变化和温室气体排放的影响以及全球石油储备的减少越来越关注,这推动了对替代能源的研究。降低微藻的成本,微藻是一种有前途的替代能源,是生物柴油生产商业化的关键步骤。为了建立商业上可行的微藻生产和利用计划的共同目标,目前正在探索诸如使用废物流成本有效的栽培系统和有效的收获选择之类的途径。通过回顾文献中的最新进展,该研究确定了对生物燃料生产商业化的重要方面。 ud ud在确定了文献中的一些空白之后,包括直接比较温带和热区之间的微藻生物质生产,利用精炼进行了新颖的调查进行了计算机模型比较,以比较温带和炎热气候下开放系统的上游栽培。结果表明,在开放式池塘系统中,光温对培养微藻的相对重要性。然后通过设置代表夏季和冬季的三个月的温光强度,光周期和温度条件,进一步进行实验研究。对温带气候(UK)的季节性高低数据进行新颖修改的结果表明,干预的更有效方向是投资于替代供暖系统的额外供光,这很有可能产生更高的藻类生物量用于生物燃料生产。最终,采取了一种方法,使过程的经济性提高,从上游首次使用天然微藻菌株培养基于废物流的营养物(渗滤液)到下游对藻类生物质进行脱水,并对节能高效的正向渗透技术进行了创新改进。通过独特地评估基于微藻营养物的提取溶液。结果都表明在实验室规模上使用这些经济高效的方法的真正潜力。 ud ud项目的最终目标是将对栽培(上游)和收获(下游)的研究工作相结合,以帮助了解微藻生产生物燃料的商业可行性。

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