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Statistical Optimization for Esterification of Waste Coffee Grounds Oil using Response Surface Methodology

机译:响应面法测定废咖啡渣油酯化的统计优化

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Biodiesel is alternative bio-fuel to substitute for diesel fuel which produces harmful emission causing environmental problems. The common feedstock for biodiesel production was edible oil which effected to high production cost. In order to conquer this problem, waste material was appeared to be an attractive choice. The oil from waste coffee grounds (WCGs) has the potential to use as raw material. However, high free fatty acid (FFA) concentration (>1%) in extracted oil from WCGs requires pretreatment prior to transesterification. Therefore, FFA was treated by using sulfuric as acid catalytic. In this study, the optimization of esterification of extracted oil from WCGs was investigated by using response surface methodology (RSM). The effect of operation parameters to pre-treatment of FFA was conducted using laboratory scale. The predicted optimum condition results indicated that %FFA of the waste coffee grounds oil (WCGO) was decreased 94.97% when the condition was carry out with methanol 10 mole per mole of FFA in the presence of 15% w/wof %FFA-to-catalyst ratios for 115 min reaction time at 65°C.
机译:生物柴油是替代生物燃料,替代柴油燃料,产生有害排放造成环境问题。生物柴油生产的普通原料是食用油,其为高生产成本而进行。为了征服这个问题,似乎是一种有吸引力的选择。来自废咖啡渣(WCG)的油具有用作原料。然而,来自WCG的提取的油中的高自由脂肪酸(FFA)浓度(> 1%)在酯交换之前需要预处理。因此,通过使用硫作为酸催化处理FFA。在该研究中,使用响应表面方法(RSM)研究了来自WCG的提取油的酯化的优化。使用实验室规模进行操作参数对FFA预处理的影响。预测的最佳条件结果表明,当条件在15%w / wf / wf%ffa-to的情况下,当在15%w / wf%ffa-to的情况下使用甲醇10摩尔时,废咖啡渣油(Wcgo)的%FFA降低了94.97%。催化剂比率在65℃下进行115分钟的反应时间。

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