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联合青贮和水热处理作为甘蔗渣用于第二代生物乙醇生产的高效预处理方法。

Combined ensiling and hydrothermal processing as efficient pretreatment of sugarcane bagasse for 2G bioethanol production.

作者信息

Ambye-Jensen Morten, Balzarotti Riccardo, Thomsen Sune Tjalfe, Fonseca César, Kádár Zsófia

机构信息

1Center for BioProcess Engineering, Department of Chemical and Biochemical Engineering, Technical University of Denmark, DTU, Søltofts Plads 229, 2800 Kgs. Lyngby, Denmark.

3Present Address: Department of Engineering, Biological and Chemical Engineering, Aarhus University, Finlandsgade 22, 8200 Aarhus N, Denmark.

出版信息

Biotechnol Biofuels. 2018 Dec 20;11:336. doi: 10.1186/s13068-018-1338-y. eCollection 2018.

Abstract

BACKGROUND

Ensiling cannot be utilized as a stand-alone pretreatment for sugar-based biorefinery processes but, in combination with hydrothermal processing, it can enhance pretreatment while ensuring a stable long-term storage option for abundant but moist biomass. The effectiveness of combining ensiling with hydrothermal pretreatment depends on biomass nature, pretreatment, and silage conditions.

RESULTS

In the present study, the efficiency of the combined pretreatment was assessed by enzymatic hydrolysis and ethanol fermentation, and it was demonstrated that ensiling of sugarcane bagasse produces organic acids that can partly degrade biomass structure when in combination with hydrothermal treatment, with the consequent improvement of the enzymatic hydrolysis of cellulose and of the overall 2G bioethanol process efficiency. The optimal pretreatment conditions found in this study were those using ensiling and/or hydrothermal pretreatment at 190 °C for 10 min as this yielded the highest overall glucose recovery yield and ethanol yield from the raw material (0.28-0.30 g/g and 0.14 g/g, respectively).

CONCLUSION

Ensiling prior to hydrothermal pretreatment offers a controlled solution for wet storage and long-term preservation for sugarcane bagasse, thus avoiding the need for drying. This preservation method combined with long-term storage practice can be an attractive option for integrated 1G/2G bioethanol plants, as it does not require large capital investments or energy inputs and leads to comparable or higher overall sugar recovery and ethanol yields.

摘要

背景

青贮不能作为基于糖的生物精炼工艺的单独预处理方法,但与水热处理相结合时,它可以增强预处理效果,同时为丰富但潮湿的生物质提供稳定的长期储存选择。青贮与水热预处理相结合的效果取决于生物质的性质、预处理方法和青贮条件。

结果

在本研究中,通过酶水解和乙醇发酵评估了联合预处理的效率,结果表明甘蔗渣青贮产生的有机酸在与水热处理结合时可部分降解生物质结构,从而提高纤维素的酶水解效率和整体第二代生物乙醇工艺效率。本研究中发现的最佳预处理条件是在190℃下进行10分钟的青贮和/或水热处理,因为这样可从原料中获得最高的总葡萄糖回收率和乙醇产率(分别为0.28 - 0.30克/克和0.14克/克)。

结论

在水热预处理之前进行青贮为甘蔗渣的湿储存和长期保存提供了一种可控的解决方案,从而避免了干燥的需要。这种保存方法与长期储存实践相结合,对于第一代/第二代综合生物乙醇工厂可能是一个有吸引力的选择,因为它不需要大量的资本投资或能源投入,并且能实现相当或更高的总糖回收率和乙醇产率。

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