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Production of biodiesel from coastal macroalgae (Chara vulgaris) and optimization of process parameters using Box-Behnken design

机译:利用Box-Behnken设计从沿海大型藻类(Chara vulgaris)生产生物柴油并优化工艺参数

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摘要

Renewable biodiesels are needed as an alternative to petroleum-derived transport fuels, which contribute to global warming and are of limited availability. Algae biomass, are a potential source of renewable energy, and they can be converted into energy such as biofuels. This study introduces an integrated method for the production of biodiesel from Chara vulgaris algae collected from the coastal region of Bangladesh. The Box–Behnken design based on response surface methods (RSM) used as the statistical tool to optimize three variables for predicting the best performing conditions (calorific value and yield) of algae biodiesel. The three parameters for production condition were chloroform (X1), sodium chloride concentration (X2) and temperature (X3). Optimal conditions were estimated by the aid of statistical regression analysis and surface plot chart. The optimal condition of biodiesel production parameter for 12 g of dry algae biomass was observed to be 198 ml chloroform with 0.75 % sodium chloride at 65 °C temperature, where the calorific value of biodiesel is 9255.106 kcal/kg and yield 3.6 ml.
机译:需要可再生的生物柴油作为石油衍生的运输燃料的替代品,石油促成全球变暖,并且供应有限。藻类生物质是可再生能源的潜在来源,它们可以转化为能源,例如生物燃料。这项研究介绍了一种从孟加拉国沿海地区收集的寻常型Chara藻类生产生物柴油的综合方法。基于响应面方法(RSM)的Box-Behnken设计用作统计工具,以优化三个变量来预测藻类生物柴油的最佳性能条件(发热量和产量)。生产条件的三个参数是氯仿(X1),氯化钠浓度(X2)和温度(X3)。借助统计回归分析和表面曲线图来估计最佳条件。在65°C的温度下,观察到12 g干藻生物量的生物柴油生产参数的最佳条件是198 ml氯仿和0.75%氯化钠,其中生物柴油的发​​热量为9255.106 kcal / kg,产量为3.6 ml。

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