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Effects of B20 on Emissions and the Performance of a Diesel Particulate Filter in a Light-Duty Diesel Engine

机译:B20对轻型柴油机排放和柴油机微粒过滤器性能的影响

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This paper compares 20% biodiesel (B20-choice white grease) fuel with baseline ultra low sulfur diesel (ULSD) fuel on the emissions and performance of a diesel oxidation catalyst (DOC) and diesel particulate filter (DPF) coupled to a light duty four-cylinder 2.8-l common-rail DI diesel engine. The present paper focuses on the comparison of the fuel effects on loading and active regeneration of the DPF between B20 and ULSD. B20, in general, produces less soot and has lower regeneration temperature, compared with soot loaded with ULSD. NO_2 concentrations before the DPF were found to be 6% higher with B20, indicating more availability of NO_2 to oxidize the soot. Exhaust speciation of the NO_2 availability indicates that the slight increase in NO_x from B20 is not the dominant cause for the lower temperature regeneration and faster regeneration rate, but the reactivity of the soot that is in the DPF. Formaldehyde concentrations are found to be higher with B20 during regeneration, due to increased oxygen concentrations in the exhaust stream. Finally, the oil dilution effect due to post injection to actively regenerate the DPF is also investigated using a prototype oil sensor and Fourier transform infrared (FTIR) instrumentation. Utilizing an active regeneration strategy accentuates the possibility of fuel oil dilution of the engine oil. The onboard viscosity oil sensor used was in good agreement with the viscosity bench test and FTIR analysis, and provided oil viscosity measurement over the course of the project. The operation with B20 shows significant fuel dilution and needs to be monitored to prevent engine deterioration.
机译:本文将20%的生物柴油(B20-选择的白色润滑脂)燃料与基线超低硫柴油(ULSD)燃料的排放量和柴油氧化催化剂(DOC)和柴油颗粒过滤器(DPF)配以轻载4的性能进行了比较。缸2.8升共轨DI柴油发动机。本文着重比较B20和ULSD之间燃料对DPF的负载和主动再生的影响。通常,与装载有ULSD的烟灰相比,B20产生的烟灰更少,再生温度更低。发现B20可使DPF之前的NO_2浓度增加6%,表明NO_2可以更有效地氧化烟灰。 NO_2可用性的排气形态表明,来自B20的NO_x的轻微增加不是降低温度再生和加快再生速率的主要原因,而是DPF中烟灰的反应性。发现B20在再生过程中的甲醛浓度较高,这是因为废气中的氧气浓度增加。最后,还使用原型油传感器和傅里叶变换红外(FTIR)仪器研究了由于后注入以主动再生DPF而引起的油稀释效果。采用主动再生策略会增加燃油稀释机油的可能性。所使用的机载粘度油传感器与粘度基准测试和FTIR分析非常吻合,并在整个项目过程中提供了油粘度测量。 B20的运行显示燃料明显稀释,需要进行监控以防止发动机劣化。

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