Lignocellulosic Analysis of Corncob Biomass by Using Non-Thermal Pulsed Electric Field-NaOH Pretreatment

A. W. Putranto, Sakinah Hilya Abida, K. Adrebi, Arta Harianti
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引用次数: 1

Abstract

In recent years, the second-generation bioethanol and advanced bio-based material production from biomass are focused on the pretreatment process by separating cellulose components from other components such as lignin and hemicellulose. Therefore, a physicochemical pretreatment method is needed by applying a non-thermal pulsed electric field (PEF) and alkali methods to increase the cellulose availabilities with a short process and low energy input. The aim of this study was to analyze the lignocellulose content of corncob biomass by using non-thermal pulsed electric fields (PEF) and NaOH pretreatment. The pretreatment factors used were the electric field strength of PEF and the pretreatment time. Analysis of the structure and elements of the lignocellulose based on the characteristics of the gravimetric method and SEM-EDX for untreated and treated samples. The results showed that pretreatment of corncobs biomass by using PEF optimally at an electric field strength of 9 kV/cm and pretreatment time of 60 seconds that was increasing cellulose of 40.59% when compared with the control and also decreasing the hemicellulose and lignin content of 12.9% and 2.02%, respectively. Under these conditions, the energy per pulse and specific input energy of PEF required 0.0205 J and 8.72 kJ/L, respectively. The microstructure analysis by using SEM-EDX showed significantly visual differences and was an increase in the percentage of C and O atoms between untreated and treated corncob biomass. Furthermore, the corncob biomass treated by using non-thermal PEF and alkali can become effective and efficient for the next process into cellulose-derived products.Keywords: corncob biomass; pulsed electric field; NaOH; pretreatment; cellulose
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非热脉冲电场-氢氧化钠预处理玉米芯生物质木质纤维素分析
近年来,利用生物质生产第二代生物乙醇和先进生物基材料的研究重点是将纤维素组分与木质素、半纤维素等其他组分分离的预处理工艺。因此,需要采用非热脉冲电场(PEF)和碱法等物理化学预处理方法,以短过程和低能量输入提高纤维素的利用度。采用非热脉冲电场(PEF)和氢氧化钠(NaOH)预处理技术对玉米芯生物质的木质纤维素含量进行了研究。采用PEF电场强度和预处理时间作为预处理因素。基于重量法和SEM-EDX对未处理和处理过的木质纤维素的结构和元素分析。结果表明,电场强度为9 kV/cm、预处理时间为60 s时,PEF预处理玉米芯生物质的效果最佳,纤维素含量较对照提高40.59%,半纤维素和木质素含量分别降低12.9%和2.02%。在此条件下,PEF的每脉冲能量为0.0205 J,比输入能量为8.72 kJ/L。SEM-EDX显微结构分析显示,未处理玉米芯生物量与处理玉米芯生物量之间存在显著的视觉差异,C和O原子的百分比均有所增加。此外,使用非热PEF和碱处理的玉米芯生物质可以为下一工艺生产纤维素衍生产品提供有效和高效的条件。关键词:玉米芯生物量;脉冲电场;氢氧化钠;预处理;纤维素
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