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Optimization of NaOH-catalyzed steam pretreatment of empty fruit bunch

机译:NaOH催化空果束蒸汽预处理的优化

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Background Empty fruit bunch (EFB) has many advantages, including its abundance, the fact that it does not require collection, and its year-round availability as a feedstock for bioethanol production. But before the significant costs incurred in ethanol production from lignocellulosic biomass can be reduced, an efficient sugar fractionation technology has to be developed. To that end, in the present study, an NaOH-catalyzed steam pretreatment process was applied in order to produce ethanol from EFB more efficiently. Results The EFB pretreatment conditions were optimized by application of certain pretreatment variables such as, the NaOH concentrations in the soaking step and, in the steam step, the temperature and time. The optimal conditions were determined by response surface methodology (RSM) to be 3% NaOH for soaking and 160°C, 11 min 20 sec for steam pretreatment. Under these conditions, the overall glucan recovery and enzymatic digestibility were both high: the glucan and xylan yields were 93% and 78%, respectively, and the enzymatic digestibility was 88.8% for 72 h using 40 FPU/g glucan. After simultaneous saccharification and fermentation (SSF), the maximum ethanol yield and concentration were 0.88 and 29.4 g/l respectively. Conclusions Delignification (>85%) of EFB was an important factor in enzymatic hydrolysis using CTec2. NaOH-catalyzed steam pretreatment, which can remove lignin efficiently and requires only a short reaction time, was proven to be an effective pretreatment technology for EFB. The ethanol yield obtained by SSF, the key parameter determining the economics of ethanol, was 18% (w/w), equivalent to 88% of the theoretical maximum yield, which is a better result than have been reported in the relevant previous studies.
机译:背景技术空果束(EFB)具有许多优点,包括其丰富,不需要收集的事实以及全年作为生物乙醇生产原料的可用性。但是,在可以降低木质纤维素生物质生产乙醇的大量成本之前,必须开发一种有效的糖分馏技术。为此,在本研究中,采用了NaOH催化的蒸汽预处理工艺,以便更有效地从EFB中生产乙醇。结果通过应用某些预处理变量,例如浸泡步骤中的NaOH浓度以及蒸汽步骤中的温度和时间,可以优化EFB预处理条件。最佳条件通过响应表面方法(RSM)确定为3%的NaOH浸泡和160°C的11分钟20秒的蒸汽预处理。在这些条件下,葡聚糖的总回收率和酶消化率均很高:葡聚糖和木聚糖的产率分别为93%和78%,使用40 FPU / g葡聚糖的72小时酶解率为88.8%。同时糖化和发酵(SSF)后,最大乙醇产量和浓度分别为0.88和29.4 g / l。结论EFB的脱木素作用(> 85%)是使用CTec2进行酶促水解的重要因素。 NaOH催化的蒸汽预处理可有效去除木质素,仅需很短的反应时间,已被证明是EFB的有效预处理技术。通过SSF获得的乙醇收率(决定乙醇经济性的关键参数)为18%(w / w),相当于理论最大收率的88%,比以前的相关研究报告的结果要好。

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