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碱性辅助螺旋压榨预处理对小麦秸秆酶解的影响

Alkaline-assisted screw press pretreatment affecting enzymatic hydrolysis of wheat straw.

作者信息

Yan Qingqi, Wang Yumei, Rodiahwati Wawat, Spiess Antje, Modigell Michael

机构信息

Aachener Verfahrenstechnik, Mechanical Process Engineering, RWTH Aachen University, Turmstr. 46, 52064, Aachen, Germany.

Aachener Verfahrenstechnik, Enzyme Process Technology, RWTH Aachen University, Worringer Weg 1, 52074, Aachen, Germany.

出版信息

Bioprocess Biosyst Eng. 2017 Feb;40(2):221-229. doi: 10.1007/s00449-016-1689-3. Epub 2016 Oct 19.

Abstract

Screw press processing of biomass can be considered as a suitable mechanically based pretreatment for biofuel production since it disrupts the structure of lignocellulosic biomass with high shear and pressure forces. The combination with chemical treatment has been suggested to increase the conversion of lignocellulosic biomass to fermentable sugars. Within the study, the synergetic effect of alkaline (sodium hydroxide, NaOH) soaking and screw press pretreatment on wheat straw was evaluated based on, e.g., sugar recovery and energy efficiency. After alkaline soaking (at 0.1 M for 30 min) and sequential screw press pretreatment with various screw press configurations and modified screw barrel, the lignin content of pretreated wheat straw was quantified. In addition, the structure of pretreated wheat straw was investigated by scanning electron microscopy and measurement of specific surface area. It could be shown that removal of lignin is more important than increase of surface area of the biomass to reach a high sugar recovery. The rate constant of the enzymatic hydrolysis increased from 1.1 × 10 1/h for the non-treated material over 2.3 × 10 1/h for the alkaline-soaked material to 26.9 × 10 1/h for alkaline-assisted screw press pretreated material, indicating a nearly 25-fold improvement of the digestibility by the combined chemo-mechanical pretreatment. Finally, the screw configuration was found to be an important factor for improving the sugar recovery and for reducing the specific energy consumption of the screw press pretreatment.

摘要

生物质的螺旋压榨处理可被视为一种适用于生物燃料生产的基于机械的预处理方法,因为它能通过高剪切力和压力破坏木质纤维素生物质的结构。有人建议将其与化学处理相结合,以提高木质纤维素生物质向可发酵糖的转化率。在本研究中,基于例如糖回收率和能源效率,评估了碱性(氢氧化钠,NaOH)浸泡和螺旋压榨预处理对小麦秸秆的协同效应。在碱性浸泡(0.1 M,30分钟)以及采用各种螺旋压榨配置和改良螺旋筒进行连续螺旋压榨预处理后,对预处理小麦秸秆的木质素含量进行了定量分析。此外,通过扫描电子显微镜和比表面积测量对预处理小麦秸秆的结构进行了研究。结果表明,为了实现高糖回收率,去除木质素比增加生物质的表面积更为重要。酶水解的速率常数从未处理材料的1.1×10⁻¹/h增加到碱性浸泡材料的2.3×10⁻¹/h,再到碱性辅助螺旋压榨预处理材料的26.9×10⁻¹/h,这表明通过化学 - 机械联合预处理,消化率提高了近25倍。最后,发现螺旋配置是提高糖回收率和降低螺旋压榨预处理比能量消耗的重要因素。

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Effect of alkaline pretreatments on the enzymatic hydrolysis of wheat straw.碱性预处理对小麦秸秆酶解的影响。
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