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红海巨藻水解产物的解毒作用及其对生物乙醇生产的改善。

Detoxification of Hydrolysates of the Red Seaweed Gelidium amansii for Improved Bioethanol Production.

机构信息

Department of Biotechnology, Pukyong National University, Busan, 48513, South Korea.

出版信息

Appl Biochem Biotechnol. 2019 Aug;188(4):977-990. doi: 10.1007/s12010-019-02970-x. Epub 2019 Feb 14.

Abstract

In this study, bioethanol was produced from the seaweed Gelidium amansii as biomass through separate hydrolysis and fermentation (SHF) processes. The SHF processes examined in this study include thermal acid hydrolysis pretreatment, enzymatic saccharification, detoxification, and fermentation. Thermal acid hydrolysis pretreatment was conducted using HSO, with a slurry content of 8-16% and treatment time of 15-75 min. The optimal conditions for thermal acid hydrolysis pretreatment were 12% (w/v) seaweed slurry content and 180 mM HSO at 121 °C for 45 min, at which 26.1 g/L galactose and 6.8 g/L glucose were produced. A monosaccharide (mainly glucose) was also obtained from the enzymatic saccharification of thermal acid hydrolysate using 16 U/mL Celluclast 1.5 L enzyme at 45 °C for 36 h. Detoxification was performed using the adsorption method with activated carbon, the overliming method with Ca (OH), and the ion exchange method with polyethyleneimine. Among those detoxification methods, activated carbon showed the best performance for hydroxymethylfurfural removal. Ethanol fermentation was performed using 12% (w/v) seaweed hydrolysate with Saccharomyces cerevisiae adapted to galactose as well as various detoxification treatments.

摘要

本研究以江蓠为生物质,通过分步水解和发酵(SHF)工艺从海藻中生产生物乙醇。本研究考察了包括热酸水解预处理、酶解、解毒和发酵在内的 SHF 工艺。采用 HSO 进行热酸水解预处理,料浆浓度为 8-16%,处理时间为 15-75min。热酸水解预处理的最佳条件为 12%(w/v)海藻浆含量和 180mM HSO 在 121°C 下处理 45min,在此条件下可得到 26.1g/L 半乳糖和 6.8g/L 葡萄糖。通过在 45°C 下用 16U/mL 的 Celluclast 1.5L 酶酶解热酸水解产物 36h,还可得到单糖(主要为葡萄糖)。采用活性炭吸附法、Ca(OH)过碱法和聚乙烯亚胺离子交换法进行解毒。在这些解毒方法中,活性炭对羟甲基糠醛的去除效果最好。采用经半乳糖驯化的酿酒酵母和各种解毒处理,以 12%(w/v)海藻水解液进行乙醇发酵。

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