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Sustainability and life cycle assessment (LCA) of macroalgae-derived single cell oils

机译:大型藻类单细胞油的可持续性和生命周期评估(LCA)

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Marine macroalgae (seaweed) has many advantages over terrestrial crops as a source of renewable biomass but is severely underutilised at present, especially within Europe. In particular, macroalgae has elevated poly- and monosaccharide content, making it an ideal feedstock as a heterotrophic fermentation sugar source for the production of higher value chemicals. Recent reports have detailed the suitability of seaweeds as a feedstock for the production of single-cell oils (SCOs) which have application in food, oleochemicals and fuels. It is proposed that a biorefinery system based on the production of SCOs alongside other secondary metabolites, has the potential to provide a sustainable replacement to terrestrial oils such as palm oil.This work therefore evaluates, for the first time, the environmental and economic sustainability of a production process for SCOs from seaweed Saccharina latissima using the oleaginous yeast Metschnikowia pulcherrima. Two alternative fermentation systems were considered, and uncertainties associated with the seasonal variation in seaweed carbohydrate yield and fermentation performance were integrated into the analysis. From an environmental perspective, the work indicates that seaweed derived SCO lipids and fats can be comparable to a terrestrial oil mix, with a potential climate change impact ranging between 2.5 and 9.9 kg CO2 eq. kg(-1) refined SCO. Interestingly and of particular significance, environmental impacts are mainly dominated by energy demand within fermentation and upstream processing steps. From an economic perspective, a break-even selling price for the oil was determined as between epsilon 5,300-epsilon 31,000 tonne(-1) refined SCO, which was highly dependent on cost of the seaweed feedstock.Overall, we demonstrate that key uncertainties relating to seaweed cultivation costs and hydrolysate fermentation at scale result in a large range in values for environmental impact and economic return on investment. Yet even within the constraints and limitations of current knowhow, seaweed already offers a viable proposition for the competitive production of exotic oils similar to cocoa or shea butter in price and nature. (C) 2019 Elsevier Ltd. All rights reserved.
机译:作为可再生生物质的来源,海洋大型藻类(海藻)相对于陆生作物具有许多优势,但目前特别是在欧洲,利用率严重不足。尤其是,大型藻类具有较高的多糖和单糖含量,使其成为生产高价值化学品的异养发酵糖源的理想原料。最近的报告详细介绍了海藻作为生产单细胞油(SCO)的原料的适用性,该油已应用于食品,油脂化学和燃料中。有人提出,基于SCO的生产以及其他次级代谢产物的生物精炼系统有潜力为棕榈油等陆基油提供可持续的替代品,因此这项工作首次评估了SCO的环境和经济可持续性。用油质酵母Metschnikowia pulcherrima从海藻Saccharina latissima生产SCO的过程。考虑了两个替代发酵系统,并将与海藻碳水化合物产量和发酵性能的季节性变化相关的不确定性纳入分析。从环境的角度来看,这项工作表明,海藻衍生的SCO脂质和脂肪可以与陆地油混合物媲美,对气候变化的潜在影响在2.5至9.9千克二氧化碳当量之间。 kg(-1)精制的SCO。有趣且特别重要的是,环境影响主要由发酵和上游加工步骤中的能量需求决定。从经济角度来看,确定该油的收支平衡价格在5300到31000吨精炼SCO之间,这在很大程度上取决于海藻原料的成本。总体而言,我们证明了与之相关的主要不确定性海藻的养殖成本和水解产物发酵的规模化导致对环境的影响和投资的经济回报的价值范围很大。然而,即使在现有技术的约束和限制下,海藻也已经为竞争性生产价格和性质类似于可可或乳木果油的奇特油提供了可行的主张。 (C)2019 Elsevier Ltd.保留所有权利。

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