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Analysis of mixed ratio of waste cooking-oils in biodiesel production process using near-infrared spectroscopy

机译:利用近红外光谱分析生物柴油生产过程中废料油混合比分析

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Waste cooking-oil is one of the raw materials for producing biodiesel (BD). When the waste cooking-oils are collected for the BD production, they are mixed with various kinds. During the BD production, carefully selected kinds, optimized amount of alcohol and catalyst are mixed with the waste cooking-oil mixture for the maximum yield. However, those conditions are highly dependent on the kinds and mixed ratio of waste cooking-oils. In this research, we aim to develop a system measuring the mixed ratio of raw materials of waste cooking-oil through near-infrared spectroscopy. Two to four kinds of raw materials of waste cooking-oil (soybean oil, canola oil, sunflower seed oil, and olive oil) were mixed with combinations of a different ratio. The NIR (Near-infrared) absorbance of the mixture was measured by placing between tungsten-halogen light source and the NIR spectrometer (898.677 - 2132.65nm). These spectra were used to execute PLSR (Partial Least Squares Regression) on each raw material of wastecooking-oil concentration. As a result, 28 PLS models were generated, showing high linearity and low prediction error of the mean values of the models of R~2_cal = 0.987, R~2_val = 0.979, RMSEC = 0.203, RMSEV= 0.250. It was confirmed that the absorptionspectrum of mixed waste cooking-oil was estimated and the content of each raw material could be measured. It is expected that applying near-infrared spectrometer and PLS model to BD production process for the production of BD using waste cooking-oil will greatly contribute to the improvement of BD yield.
机译:废物烹饪油是生产生物柴油(BD)的原料之一。当废物烹饪油被收集为BD生产时,它们与各种混合。在BD生产期间,精心选择的种类,优化的醇和催化剂与废物烹饪油混合物混合,以最大收率。然而,这些条件高度依赖于废物烹饪油的种类和混合比。在这项研究中,我们的目标是通过近红外光谱制定测量废物烹饪油原料混合比的系统。与不同比例的组合混合两到四种废物烹饪油(大豆油,油菜油,向日葵种子油和橄榄油)。通过在卤钨 - 卤素光源和NIR光谱仪之间放置(898.677-2132.65nm)来测量混合物的NIR(近红外)吸光度。这些光谱用于在废物 - 油浓度的每个原料上执行PLSR(局部最小二乘回归)。结果,产生了28个PLS模型,显示了R〜2_cal = 0.987,R〜2_Val = 0.979,RMSEC = 0.203,RMSEV = 0.250的型号的高线性度和低预测误差。已经证实估计了混合废物烹饪油的吸收光谱,并且可以测量每个原料的含量。预计将近红外光谱仪和PLS模型应用于使用废物烹饪油生产BD的BD生产过程将大大有助于改善BD产量。

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