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Ethanol production from hazelnut shells through enzymatic saccharification and fermentation by low-temperature alkali pretreatment

机译:榛子壳通过酶促糖化和低温碱预处理发酵生产乙醇

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摘要

Low-temperature sodium hydroxide (NaOH) pretreatment, enzymatic saccharification and ethanol fermentation were evaluated for hazelnut shell cellulose to fermentable sugars and ethanol. Maximum glucose recovery (48.33 g/100 g cellulose) was achieved with 6% NaOH for 72 h and at 1/10 solid/liquid ratio. At these conditions, 41.18% of lignin was removed. The theoretical ethanol yield (ethanol produced/potential glucose in biomass) was 40.71%, overall process efficiency was 37.73 g/kg biomass, ethanol productivity and fermentation efficiency were 0.115 g/(L h) and 96.7%, respectively. Total energy consumed for the low-temperature-long-residence-time alkali process was 34.8 Mj/kg untreated hazelnut shells. Pretreatment time has a significant effect on thermal energy consumption for the low-temperature alkali process. (C) 2017 Elsevier Ltd. All rights reserved.
机译:对榛子壳纤维素转化为可发酵糖和乙醇的低温氢氧化钠(NaOH)预处理,酶促糖化和乙醇发酵进行了评估。用6%的NaOH在1/10的固/液比下达到最大的葡萄糖回收率(48.33 g / 100 g纤维素)。在这些条件下,除去了41.18%的木质素。理论乙醇产率(产生的乙醇/生物质中的潜在葡萄糖)为40.71%,总工艺效率为37.73 g / kg生物质,乙醇生产率和发酵效率分别为0.115 g /(L h)和96.7%。未经处理的榛子壳,低温长时间停留碱性工艺消耗的总能量为34.8 Mj / kg。预处理时间对低温碱法过程的热能消耗有重要影响。 (C)2017 Elsevier Ltd.保留所有权利。

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