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首页> 外文期刊>Journal of Advanced Research >Parametric optimization of delignification of rice straw through central composite design approach towards application in grafting
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Parametric optimization of delignification of rice straw through central composite design approach towards application in grafting

机译:中心复合设计法在稻草脱木质素参数优化中的应用。

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The present investigation deals with process optimisation of delignification of rice straw towards its micro-porous structural enhancement for its utilization in polymer grafting. The individual effect of influential parameters viz . sodium hydroxide concentration (1–12%, w/v ), reaction time (30–126?min), and temperature (20–150?°C) on delignification were studied in a single mode batch process. The process parameters were further optimized with Central composite design (CCD) approach of response surface methodology in Design expert software. Delignification of rice straws was observed to follow quadratic equation. Analysis of variance (ANOVA) study suggested the equation to be significant for the process with major impact of sodium hydroxide concentration on the delignification process than reaction time and temperature. The optimized parametric conditions of delignification are: alkali concentration 7.59%, reaction time 75.11?min, and reaction temperature 40?°C. The software predicted lignin extraction concentration to be 72.4?mg/g, which upon experimentation was found to be 70.03?mg/g. Instrumental analysis of the delignified rice straw demonstrated porous structure and change in surface chemistry due to lignin removal. Therefore, the delignified rice straw obtained under optimized conditions were found to be appropriate for grafting of polymers which improved its resilience for variable usages.
机译:本研究涉及稻草脱木质素的工艺优化,以提高其在聚合物接枝中的微孔结构。影响参数的个体影响。在单模式间歇过程中研究了氢氧化钠浓度(1-12%,w / v),反应时间(30-126?min)和温度(20-150?C)。在设计专家软件中,使用响应面方法的中央复合设计(CCD)方法进一步优化了工艺参数。观察到稻草的脱木质素遵循二次方程。方差分析(ANOVA)研究表明,该方程对于该过程具有重要意义,因为氢氧化钠浓度对脱木素过程的影响远大于反应时间和温度。脱木素的最佳参数条件为:碱浓度7.59%,反应时间75.11?min,反应温度40?C。该软件预测木质素提取浓度为72.4?mg / g,经实验发现为70.03?mg / g。对脱木素的稻草的仪器分析表明,由于木质素的去除,多孔结构和表面化学变化。因此,发现在优化条件下获得的脱木素稻草适合于接枝聚合物,从而提高了其可变用途的弹性。

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