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从橙皮中生产乙醇:通过实验设计优化参数的两段式水解和发酵研究。

Ethanol production from orange peels: two-stage hydrolysis and fermentation studies using optimized parameters through experimental design.

机构信息

Department of Grain Science and Industry, Kansas State University, Manhattan, Kansas 66506, USA.

出版信息

J Agric Food Chem. 2010 Mar 24;58(6):3422-9. doi: 10.1021/jf903163t.

Abstract

Orange peels were evaluated as a fermentation feedstock, and process conditions for enhanced ethanol production were determined. Primary hydrolysis of orange peel powder (OPP) was carried out at acid concentrations from 0 to 1.0% (w/v) at 121 degrees C and 15 psi for 15 min. High-performance liquid chromatography analysis of sugars and inhibitory compounds showed a higher production of hydroxymethyfurfural and acetic acid and a decrease in sugar concentration when the acid level was beyond 0.5% (w/v). Secondary hydrolysis of pretreated biomass obtained from primary hydrolysis was carried out at 0.5% (w/v) acid. Response surface methodology using three factors and a two-level central composite design was employed to optimize the effect of pH, temperature, and fermentation time on ethanol production from OPP hydrolysate at the shake flask level. On the basis of results obtained from the optimization experiment and numerical optimization software, a validation study was carried out in a 2 L batch fermenter at pH 5.4 and a temperature of 34 degrees C for 15 h. The hydrolysate obtained from primary and secondary hydrolysis processes was fermented separately employing parameters optimized through RSM. Ethanol yields of 0.25 g/g on a biomass basis (YP/X) and 0.46 g/g on a substrate-consumed basis (YP/S) and a promising volumetric ethanol productivity of 3.37 g/L/h were attained using this process at the fermenter level, which shows promise for further scale-up studies.

摘要

橙皮被评估为发酵原料,并确定了提高乙醇产量的工艺条件。在 121°C 和 15 psi 下,将橙皮粉(OPP)进行初级水解,酸浓度从 0 到 1.0%(w/v),时间为 15 分钟。对糖和抑制物的高效液相色谱分析表明,当酸浓度超过 0.5%(w/v)时,羟甲基糠醛和乙酸的产量更高,糖浓度降低。对初级水解得到的预处理生物质进行二次水解,酸浓度为 0.5%(w/v)。采用三因素和两水平中心复合设计的响应面法,优化摇瓶水平上 OPP 水解物发酵生产乙醇的 pH、温度和发酵时间的影响。根据优化实验和数值优化软件的结果,在 2 L 分批发酵罐中进行验证研究,pH 为 5.4,温度为 34°C,发酵时间为 15 h。通过 RSM 优化的参数分别对初级和次级水解产物进行发酵。在发酵罐水平上,采用该工艺可获得基于生物质的 0.25 g/g(YP/X)和基于底物消耗的 0.46 g/g(YP/S)的乙醇产率,以及有前途的 3.37 g/L/h 的体积乙醇生产率,表明该工艺具有进一步放大研究的潜力。

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