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Stability of dual (diesel-alcohol) and triplicate (diesel-alcohols-ethers) fuel blends

机译:双(柴油机)和三份(柴油 - 醇醚)燃料混合物的稳定性

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摘要

Blending alcohols and ethers with diesel can lower engine emissions. Because alcohols and ethers are derived from natural feedstocks, they can substitute for the depleting stock of fossil fuels. However, phase separation in these blends can cause engine damage. The stability of blends is dependent on the temperature and initial concentration of the alcohols/ethers. Experiments are done for stability analysis of dual fuel blends of diesel-alcohols/ethers and triplicate blends of diesel-alcohols-ethers. The results are presented for a temperature range of -5 to +35 degrees C with different initial concentrations of alcohols and ethers in diesel. An increase in temperature and a decrease in initial concentration of blended fuels increase stability. Adding ethers to diesel-alcohol blends increases their mutual solubility. Further, experiments are conducted using 1-butanol as an additive. It increases the volume fraction of alcohols/ethers in the fuel blend that can remain stable for a longer duration. The stable fuel blends are tested on a diesel engine which operated smoothly with no leakages. Both dual and triplicate fuel blends reduce NOx emissions, however, at the cost of an increase in brake specific fuel consumption (BSFC). However, triplicate fuel blends of diesel-alcohols-ethers show lower BSFC in comparison to their diesel-alcohol counterparts.
机译:将醇和柴油的醇和醚混合可以降低发动机排放。因为醇和醚源自天然原料,所以它们可以替代化石燃料的消耗库存。然而,这些混合物中的相分离可能导致发动机损坏。共混物的稳定性取决于醇/醚的温度和初始浓度。对柴油醇/醚的双燃料共混物的稳定性分析进行了实验,以及柴油醇醚的三份共混物。将结果呈现为-5至+ 35摄氏度的温度范围,具有柴油中不同的醇和醚的初始浓度。增长的温度和混合燃料初始浓度的降低增加了稳定性。向柴油机混合物添加醚增加了它们的相互溶解度。此外,使用1-丁醇作为添加剂进行实验。它增加了燃料混合物中的醇/醚的体积分数,其可保持稳定的持续时间较长。稳定的燃料混合物在柴油发动机上进行测试,该发动机没有泄漏操作。然而,双和三份燃料混合物都减少了NOx排放,以制动特定燃料消耗增加(BSFC)的成本。然而,与其柴油机对应物相比,柴油醇醚的三份燃料共混物显示出低BSFC。

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