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首页> 外文期刊>Molecules >Mechano-Enzymatic Deconstruction with a New Enzymatic Cocktail to Enhance Enzymatic Hydrolysis and Bioethanol Fermentation of Two Macroalgae Species
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Mechano-Enzymatic Deconstruction with a New Enzymatic Cocktail to Enhance Enzymatic Hydrolysis and Bioethanol Fermentation of Two Macroalgae Species

机译:机械酶解构与新的酶鸡尾酒,以增强两种大型藻类的酶水解和生物乙醇发酵。

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摘要

The aim of this study was to explore the efficiency of a mechano-enzymatic deconstruction of two macroalgae species for sugars and bioethanol production, by using a new enzymatic cocktail (Haliatase) and two types of milling modes (vibro-ball: VBM and centrifugal milling: CM). By increasing the enzymatic concentration from 3.4 to 30 g/L, the total sugars released after 72 h of hydrolysis increased (from 6.7 to 13.1 g/100 g TS and from 7.95 to 10.8 g/100 g TS for the green algae U. lactuca and the red algae G. sesquipedale, respectively). Conversely, total sugars released from G. sesquipedale increased (up to 126% and 129% after VBM and CM, respectively). The best bioethanol yield (6 geth/100 g TS) was reached after 72 h of fermentation of U. lactuca and no increase was obtained after centrifugal milling. The latter led to an enhancement of the ethanol yield of G. sesquipedale (from 2 to 4 g/100 g TS).
机译:这项研究的目的是通过使用一种新型的酶混合物(Haliatase)和两种类型的研磨模式(振动球:VBM和离心研磨)来探索机械酶解两种糖和生物乙醇的大型藻类的效率。 : 厘米)。通过将酶浓度从3.4增加到30 g / L,水解72小时后释放的总糖量增加了(绿藻U. lactuca从6.7增加到13.1 g / 100 g TS,从7.95增加到10.8 g / 100 g TS和红藻G. sesquipedale)。相反,从倍半乳糖中释放的总糖增加了(在VBM和CM后分别增加了126%和129%)。乳酸链球菌发酵72小时后达到最佳生物乙醇产量(6脱氢/ 100 g TS),离心研磨后没有增加。后者导致倍半双孢乙醇的乙醇产量提高(从2至4 g / 100 g TS)。

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