表面响应法优化微波辅助木渣脱木质素

A. Trifan, I. Călinescu, M. Vinatoru, A. Gavrila
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摘要

植物生物量的高效处理是当前研究的一大挑战。本研究的重点是通过微波加热辅助碱性洗涤去除木质素来提高木材残留物酶解的产率。在加压微波反应器(Synthwave-Milestone)中进行1小时的处理。通过监测木质素的浓度(通过对校准曲线在320 nm处的紫外吸收测定)来评估处理的性能。每个实验都重复进行。在仔细选择了影响木渣脱除木质素的最重要因素:NaOH溶液浓度、液固比和温度后,根据构建的实验矩阵(Design Expert 11)确定了处理条件。采用上述独立因素构建中心复合设计。方差分析表明模型拟合良好(相关系数R2=0.95)。拟合模型对实验空间的探索(图1)表明,温度作为独立因素起主导作用。在实验空间内,以温度、液固比、NaOH浓度最小和响应变量木质素浓度最大为准则,对实验条件进行优化。根据这些优化标准,模型提出的最优溶液(141 mg木质素/ g干木渣)表明,在以下坐标确定的区域内的一个点:0.4M NaOH, 1070C,液固比等于50。图1所示。具有显著影响的独立因素的木质素响应曲面函数三维图作者感谢竞争力运营计划2014-2020年的资金支持,优先轴1,项目编号。健康,能源和环境材料质量保证创新技术-智能生物材料和生物医学表面创新制造解决方案中心- INOVABIOMED。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
OPTIMIZATION OF MICROWAVE ASSISTED DELIGNIFICATION OF WOOD RESIDUES BY SURFACE RESPONSE METHODOLOGY
Efficient processing of vegetal biomass is a great challenge to current research studies. This work is focused on improving the yield of enzymatic hydrolysis of wood residues by removal of lignin using a alkaline wash assisted by microwave heating. The treatments were carried out for one hour in a pressurized microwave reactor (Synthwave-Milestone). The performance of the treatments was assessed by monitoring the concentration of lignin (determined by UV absorbance at 320 nm against a calibration curve). Each experiment was carried out in duplicate. The treatment conditions were established according to an experimental matrix constructed (in Design Expert 11) after the careful selection of the most important factors that affect the lignin removal from wood residue: concentration of NaOH solution, liquid to solid ratio and temperature. A central composite design was constructed with the independent factors mentioned above. ANOVA indicated adequate fitting of the model (correlation coefficient R2=0.95). The exploration of the experimental space (figure 1) with the fitted model indicates the dominant effect of temperature as independent factor. Optimization of experimental conditions within the experimental space was carried according to the following criteria: minimization of temperature, liquid to solid ratio and NaOH concentration and maximization of the response variable, the lignin concentration. The optimal solution (141 mg lignin / g dry wood residue) proposed by the model for these optimization criteria indicates a point in the region determined by the following coordinates: 0.4M NaOH, 1070C and a ratio of liquid to solid equal to 50. Fig. 1. 3D plot of lignin responses surfaces function of the independent factors with significant effectsAcknowledgment The authors acknowledge the financial support received from Competitiveness Operational Program 2014-2020, Priority axis 1, Project No. P_36_611, MySMIS code 107066, Innovative Technologies for Materials Quality Assurance in Health, Energy and Environmental - Center for Innovative Manufacturing Solutions of Smart Biomaterials and Biomedical Surfaces – INOVABIOMED.
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