Optimization of sulfuric acid treatment of peanut shells for cellulose contents through Box-Behnken design

Q3 Agricultural and Biological Sciences BioTechnologia Pub Date : 2019-01-01 DOI:10.5114/bta.2019.85322
S. Kanwal, M. Irfan
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引用次数: 1

Abstract

Pretreating plant biomasses is an important step for effective lignin removal and degradation of cellulose to fermentable sugars. In this study, we optimized pretreatment conditions for peanut shells (Arachis hypogeae ) to obtain the maximum yield of cellulose. For optimization, three parameters were used, i.e., sulfuric acid concentration (0.6%, 0.8%, and 1.0%), substrate loading (5%, 10%, and 15%), and residence time (4 h, 6 h, and 8 h) with and without steam (121EC, 15 psi, 15 min), based on Box-Behnken design of response surface methodology. The results confirmed that the maximum yield of cellulose (71.68%) was obtained under pretreatment conditions of 1% sulfuric acid, 15% substrate loading, and 6 h residence time. The ANOVA results indicated that the proposed model was highly significant having F -value and P -value of 158.63 and 0.000, respectively. Moreover, the efficiency of this pretreatment method was further analyzed using FTIR spectroscopy, indicating structural conformation in the pretreated biomass. The results indicate that the pretreated biomass can be utilized for further processes such as saccharification of lignocellulosic material for bioethanol production.
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通过Box-Behnken设计优化硫酸处理花生壳对纤维素含量的影响
预处理植物生物质是有效去除木质素和纤维素降解为可发酵糖的重要步骤。在本研究中,我们优化了花生壳(arachhis hypogeae)的预处理条件,以获得最大的纤维素产量。基于响应面法的Box-Behnken设计,采用硫酸浓度(0.6%、0.8%和1.0%)、底物负载(5%、10%和15%)、有蒸汽和无蒸汽(121EC、15 psi、15 min)的停留时间(4、6、8 h) 3个参数进行优化。结果表明,在硫酸浓度为1%、底物负荷为15%、停留时间为6 h的条件下,纤维素得率最高,为71.68%。方差分析结果表明,该模型具有高度显著性,F值为158.63,P值为0.000。此外,利用FTIR光谱进一步分析了该预处理方法的效率,表明了预处理后生物质的结构构象。结果表明,预处理后的生物质可用于进一步的工艺,如木质纤维素材料的糖化,以生产生物乙醇。
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来源期刊
BioTechnologia
BioTechnologia Agricultural and Biological Sciences-Plant Science
CiteScore
1.60
自引率
0.00%
发文量
8
审稿时长
8 weeks
期刊介绍: BIOTECHNOLOGIA – a high standard, peer-reviewed, quarterly magazine, providing a medium for the rapid publication of research reports and review articles on novel and innovative aspects of biotechnology, computational biology and bionanotechnology.
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