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Fermentation of Seaweed Sugars by Lactobacillus Species and the Potential of Seaweed as a Biomass Feedstock

机译:乳酸菌对海藻糖的发酵及海藻作为生物质原料的潜力

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It is known that seaweeds differ greatly from land plants in their sugar composition. The current research on the L-lactic acid fermentation process focuses on land plant sugars as a carbon source, with the potential of seaweed sugars being largely ignored. This study examined the feasibility of seaweed biomass as a possible carbon source for the production of L-lactic acid, by comparing the fermentation of seaweed sugars (D-galactose, D-mannitol, L-rhamnose, D-glucuronic acid, and L-fucose) and land plant sugars (D-glucose, D-xylose, D-mannose, and L-arabi-nose). The experiments were repeated with 2 sugar acids (D-gluconic acid, D-glucaric acid) in order to investigate the effect of the degree of reduction of carbon source on the fermentation yield. This research also examined the effect of bacterial strain on the characteristics of fermentation reactions, by conducting L-lactic acid fermentation with 7 different Lactobacillus species. Taking into account the sugar composition of seaweed and the levels of lactic acid production from each pure sugar, it was possible to predict the lactic acid production yield of various seaweeds and land plants. From comparative analysis of the predicted lactic acid production yield, it was found that seaweeds are already comparable to lignocellulosics at the current stage of technology. If new technologies for the utilization of non-fermentable seaweed sugars are developed, seaweeds show promise as an even more useful biomass feedstock than lignocellulosics.
机译:众所周知,海藻的糖分成分与陆地植物大不相同。目前对L-乳酸发酵过程的研究集中在陆地植物糖作为碳源,而海藻糖的潜力被大大忽略了。这项研究通过比较海藻糖(D-半乳糖,D-甘露醇,L-鼠李糖,D-葡萄糖醛酸和L-海藻糖)的发酵,研究了将海藻生物质作为生产L-乳酸的可能碳源的可行性。岩藻糖)和陆生植物糖(D-葡萄糖,D-木糖,D-甘露糖和L-阿拉伯糖)。为了研究碳源还原度对发酵产量的影响,用2种糖酸(D-葡萄糖酸,D-葡萄糖酸)重复了该实验。这项研究还通过对7种不同的乳酸菌进行L-乳酸发酵,研究了细菌菌株对发酵反应特性的影响。考虑到海藻的糖成分和每种纯糖的乳酸产量,可以预测各种海藻和陆地植物的乳酸产量。通过对预测的乳酸产量的比较分析,发现在当前技术阶段,海藻已经与木质纤维素相当。如果开发出利用不可发酵海藻糖的新技术,那么海藻有望成为比木质纤维素更有用的生物质原料。

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