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Comparison of delignified coconuts waste and cactus for fuel-ethanol production by the simultaneous and semi-simultaneous saccharification and fermentation strategies

机译:同时和半同时糖化和发酵策略比较去木质椰子汁和仙人掌生产燃料乙醇的情况

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摘要

It is of the highest importance to study different alternatives/strategies as simultaneous (SSF) and semi-simultaneous (SSSF) saccharification and fermentation process, as well as the prospects of the utilization of lignocellulosic residues as raw materials for fuel-ethanol production. In the first part of this work, different raw materials (cactus (CAC), green coconut shell (GCS), mature coconut fibre (MCF) and mature coconut shell (MCS)) were pretreated by sequential alkaline hydrogen peroxide (Alk-H2O2)–sodium hydroxide (NaOH) process. The characterization of the obtained solids by FTIR, SEM, X-ray and crystallinity indexes confirmed the higher susceptibility of these pretreated materials to enzymatic action. These results were further confirmed by the corresponding glucose conversion yields – 68.44%, 70.20%, 76.21% and 74.50% for CAC, GCS, MCF and MCS, respectively. Subsequently, the comparison between SSF and SSSF using Saccharomyces cerevisiae, Pichia stipitis, Zymomonas mobilis and pretreated MCF (selected in the enzymatic hydrolysis step) was done, being shown that a short presaccharification step at 50 °C for 8 h in the SSSF had a positive effect on the overall ethanol yield, with an increase from 79.27–84.64% to 85.04–89.15%. In all the cases, the SSSF strategy allowed the obtention of higher ethanol concentrations than SSF.
机译:研究同时(SSF)和半同时(SSSF)糖化和发酵过程的不同替代方案/策略,以及利用木质纤维素残留物作为燃料乙醇生产原料的前景至关重要。在这项工作的第一部分中,采用连续碱性过氧化氢(Alk-H2O2)预处理了不同的原料(仙人掌(CAC),绿色椰子壳(GCS),成熟椰子纤维(MCF)和成熟椰子壳(MCS))。 –氢氧化钠(NaOH)工艺。通过FTIR,SEM,X射线和结晶度指数表征所获得的固体证实了这些预处理材料对酶促作用的敏感性更高。这些结果进一步得到了相应的葡萄糖转化率的确认,分别是CAC,GCS,MCF和MCS的葡萄糖转化率分别为68.44%,70.20%,76.21%和74.50%。随后,使用啤酒酵母,毕赤酵母,运动发酵单胞菌和预处理的MCF(在酶水解步骤中选择)对SSF和SSSF进行了比较,结果表明,在SSSF中在50°C下进行短时间的预糖化步骤8 h对乙醇总产量的积极影响,从79.27–84.64%增加到85.04–89.15%。在所有情况下,SSSF策略均允许获得比SSF高的乙醇浓度。

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