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The effect of mechanical pre-processing and different drying methodologies on bioethanol production using the brown macroalgae Laminaria digitata ((Hudson) JV Lamouroux)

机译:机械预处理和不同干燥方法对使用棕色大型藻类海带Laminaria digitata((Hudson)JV Lamouroux)的生物乙醇生产的影响

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摘要

Macroalgae are capable of generating more organic carbon per hectare than terrestrial plants without requiring land, fertiliser or fresh water to grow. In addition, they avoid the food versus fuel argument as they are not a major food source in Europe. In spite of these benefits, macroalgae are not yet fully exploited as a biomass source for bioenergy or platform chemical production in Europe, with one issue being the high harvesting and processing costs. This paper considers the impact of mechanical pre-processing of Laminaria digitata combined with different drying techniques and the effect of these on downstream processing to bioethanol. Results show that mechanically screw pressing macroalgae does enhance conversion to ethanol, but only when the material contains low levels of storage carbohydrates. This occurs in freeze-dried and air-dried samples. The addition of a press aid in the mechanical pre-processing step increases ethanol yields per gramme macroalgae, but due to the presence of the unutilised press aid in the fermentation, ethanol yields were lower overall. The two main findings from this work were (1) simple mechanical processing of L. digitata provides homogenisation and pumpability of macroalgae without negatively affecting subsequent microbial conversion to ethanol. (2) At higher carbohydrate concentrations, screw pressing confers no advantage in ethanol yields over strips of unprocessed kelp, making strips the more viable conversion option for low-input, large-scale processing
机译:相比藻类植物,大型藻类每公顷能够产生更多的有机碳,而无需生长土地,肥料或淡水。此外,由于它们不是欧洲的主要食物来源,因此避免了食物与燃料的争论。尽管有这些好处,但在欧洲,大型藻类尚未被充分用作生物能源或平台化学品生产的生物质来源,其中一个问题是高昂的收获和加工成本。本文考虑了机械结合不同的干燥技术对海带的预处理的影响,以及这些对下游加工生物乙醇的影响。结果表明,机械螺旋挤压大型藻类确实会增强向乙醇的转化,但前提是该材料中的碳水化合物含量较低。这发生在冷冻干燥和空气干燥的样品中。在机械预处理步骤中添加压榨助剂可以提高每克大型藻类的乙醇产量,但是由于发酵中存在未利用的压榨助剂,因此乙醇的总体产量较低。这项工作的两个主要发现是(1)简单的指状线虫机械加工提供了大型藻类的均质性和可泵送性,而对随后的微生物转化为乙醇没有负面影响。 (2)在较高的碳水化合物浓度下,与未加工的海带相比,螺旋压榨在乙醇产量方面没有优势,这使得该带成为低投入,大规模加工的更可行的转化选择

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