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Quantitative Evaluation of the Emissions of a Transport Engine Operating with Diesel-Biodiesel

机译:用柴油机 - 生物柴油运行运输发动机排放的定量评估

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摘要

The present work is about evaluating the emission characteristics of biodiesel-diesel blends in a reciprocating engine. The biodiesel was produced and characterized before the test. A virtual instrument was developed to evaluate the velocity, fuel consumption, temperature, and emissions of O2, CO, SO2, and NO from an ignition-compression engine of four cylinders with a constant rate of 850 rpm. The percentages of soybean-biodiesel (B) blended with Mexican-diesel (D) analyzed were 2% B-98% D (B2), 5% B-95% B (B5), and 20% B-80% D (B20). The biodiesel was obtained through a transesterification process and was characterized using Fourier-Transform Infrared spectroscopy and Raman spectroscopy. Our results indicate that CO emission is 6%, 10%, and 18% lower for B2, B5, and B20, respectively, in comparison with 100% (D100). The O2 emission is 12% greater in B20 than D100. A reduction of 3% NO and 2.6% SO2 was found in comparison to D100. The obtained results show 44.9 kJ/g of diesel’s lower heating value, this result which is 13% less than the biodiesel value, 2.8% less than B20, 1.3% than B5, and practically the same as B2. The specific viscosity stands out with 0.024 Poise for the B100 at 73 °C, which is 63% greater than D100. The infrared spectra show characteristics signals of esters groups (C-O) and the pronounced peak from the carbonyl group (C=O). It is observed that the increase in absorbance of the carbonyl group corresponds to an increase in biodiesel concentration.
机译:本工作是关于评估往复发动机中生物柴油 - 柴油混合物的排放特性。在测试之前生产并表征生物柴油。开发了一种虚拟仪器以评估O2,CO,SO2的速度,燃料消耗,温度和排放,以及来自四个气缸的点火式压缩发动机,恒定速率为850rpm。与墨西哥柴油(D)共混的大豆 - 生物柴油(B)的百分比分析为2%B-98%D(B2),5%B-95%B(B5)和20%B-80%D( B20)。通过酯交换过程获得生物柴油,并使用傅里叶变换红外光谱和拉曼光谱表征。我们的结果表明,与100%(D100)相比,B2,B5和B20分别为B2,B5和B20的共同发射为6%,10%和18%。 B20的O2发射比D100更高12%。与D100相比,发现了3%NO和2.6%SO2。得到的结果表明44.9 kJ / g柴油的较低的加热值,该结果比生物柴油值小13%,比b20小于B20,比b5小,且实际上与b2相同。特定粘度在73°C下为B100的0.024平衡,比D100大63%。红外光谱显示来自羰基(C = O)的酯基(C-O)的特征信号(C-O)和显着峰(C = O)。观察到,羰基的吸光度的增加对应于生物柴油浓度的增加。

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