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MICROALGAE AS BIOFUELS FEEDSTOCKS: AN ASSESSMENT OF THE YIELDS AND FUEL QUALITY

机译:微藻作为生物燃料的饲料:产量和燃料质量的评估

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We need to move away from our dependence on fossil fuels as an energy source but there is a general reluctance to abandon liquid hydrocarbons as transportation fuels. This opens up a large market that can be addressed by renewable and sustainably produced biofuels. Algae are considered important contributors to feedstocks for future biofuels production. The high biomass productivity and associated high lipid yields make algae an attractive option. With the high oil yields, algae address the energy-dense fuels market, which is a niche market segment not fully addressed by other biofuels without encroaching on valuable crop land and affecting food commodity prices. We illustrate the theoretical maximum conversion efficiency of solar energy into organic products and the pathways of converting these products into fuel precursors. One of the main questions we aim to answer is how algal fuels compare to traditional biodiesel fuels, with regards to fuel quality and processing parameters. We present data on the oil yields and lipid profile of algae and extrapolate to the fuel quality of biofuels. We are also using fermentable carbohydrates present in the non-lipid portion of algae to address additional biofuels markets such as ethanol or other advanced biofuels. Our data indicate that algal fuels compare favorably to traditional biofuels, and we illustrate that algae have great potential as biofuels feedstocks, but there are a number of challenges associated with reducing the uncertainties around the overall production process.
机译:我们需要摆脱对化石燃料作为能源的依赖,但是人们普遍不愿意放弃液态碳氢化合物作为运输燃料。这开辟了一个巨大的市场,可以通过可再生和可持续生产的生物燃料解决。藻类被认为是未来生物燃料生产原料的重要贡献者。高生物量生产力和相关的高脂质产量使藻类成为有吸引力的选择。由于石油产量高,藻类满足了能源密集型燃料市场的需求,这是一个细分市场,其他生物燃料无法完全解决这一问题,而又不会侵占宝贵的耕地并影响粮食商品价格。我们说明了理论上将太阳能转化为有机产品的最大效率,以及将这些产品转化为燃料前体的途径。我们旨在回答的主要问题之一是,在燃料质量和加工参数方面,藻类燃料与传统生物柴油燃料相比如何。我们介绍了藻类的石油产量和脂质分布情况的数据,并推断出生物燃料的燃料质量。我们还利用藻类非脂质部分中存在的可发酵碳水化合物来应对其他生物燃料市场,例如乙醇或其他高级生物燃料。我们的数据表明藻类燃料比传统生物燃料优越,并且我们说明藻类作为生物燃料原料具有巨大的潜力,但是在减少整个生产过程中的不确定性方面存在许多挑战。

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