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首页> 外文期刊>Environmental Engineering Science >Effect of Catalyzed Particulate Filter and Metal-Based Additive-Added Biodiesel on Engine Emissions
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Effect of Catalyzed Particulate Filter and Metal-Based Additive-Added Biodiesel on Engine Emissions

机译:催化颗粒式过滤器和金属基添加剂的生物柴油对发动机排放的影响

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An experimental investigation was conducted to analyze the effect of reduction catalyst-coated cordierite wall flow monolith diesel particulate filter and metal-based additive-added biodiesel on direct injection engine emissions at different engine injection opening pressures and injection timings. Furthermore, Ru/gamma-Al2O3, Cu/gamma-Al2O3, Co/gamma-Al2O3, and Fe/gamma-Al2O3 were synthesized and tested as diesel oxidation catalysts (DOCs) in the study. Co/gamma-Al2O3 was coated over the clay balls as DOC since it lowered the soot ignition temperature from 537 degrees C to 219.9 degrees C. Thermogravimetric/differential thermal analysis of copper complex reduction catalyst [CuCl2(PPh3)(2)] with biodiesel soot exhibited a lower soot ignition temperature of 245.2 degrees C. DOC-coated clay balls were placed upstream of the catalyzed diesel particulate filter (CDPF). Furthermore, iron(III) chloride of 20 mu mol/L was added to waste cooking palm oil-based biodiesel (B100) as fuel-borne catalyst (FBC) to facilitate the effective CDPF soot oxidation process. Engine studies were carried out at a constant speed of 1,500 rpm under different operating conditions using FBC-added biodiesel (B100 FBC) and biodiesel without FBC. Presence of CDPF in the tail pipe of a diesel engine with B100 FBC-CDPF resulted in a slightly higher carbon dioxide emission by 8.5%, but there was a reduction in carbon monoxide, unburnt hydrocarbon, nitric oxide, and smoke emission by 9.1%, 37.5%, 6.7%, and 47.2%, respectively. For all the test fuels, CDPF resulted in a significant reduction in exhaust gas temperature and pressure drop above 25% load condition. B100 FBC-CDPF showed the brake thermal efficiency of 28.9% at 280 bar and 25.5 degrees CA, similar to that of diesel CDPF operation.
机译:进行了实验研究,分析了在不同发动机注入压力和喷射定时的直接喷射发动机排放上的催化剂涂覆的堇青石壁流量单流石柴油机和金属基添加剂的效果。此外,Ru / Gamma-Al 2 O 3,Cu / Gamma-Al 2 O 3,Co / Gamma-Al 2 O 3和Fe / Gamma-Al 2 O 3被合成并测试了该研究中的柴油氧化催化剂(DOC)。 CO / GAMMA-AL2O3涂覆在粘土球上作为DOC,因为它将烟灰点火温度从537摄氏度降低至219.9℃。与生物柴油的铜复合物还原催化剂[CUCL2(PPH3)(2)]热重试/差异热分析烟灰表现出较低的烟灰点火温度为245.2℃。将被涂覆的粘土球置于催化的柴油颗粒过滤器(CDPF)的上游。此外,将20μm10mol/ l的铁(III)氯化物加入废物烹饪棕榈油基生物柴油(B100)中作为燃料催化剂(FBC),以促进有效的CDPF烟灰氧化过程。在不同的操作条件下,使用FBC添加的生物柴油(B100 FBC)和没有FBC的生物柴油在不同的操作条件下以1,500rpm的恒定速度进行发动机研究。具有B100 FBC-CDPF的柴油发动机尾管中CDPF的存在导致二氧化碳排放略高8.5%,但是一氧化碳,未燃烧的烃,一氧化氮和烟雾排放量减少了9.1%, 37.5%,6.7%和47.2%。对于所有测试燃料,CDPF导致废气温度和压降高于25%负载条件的显着降低。 B100 FBC-CDPF在280巴和25.5摄氏度下显示出28.9%的制动热效率,类似于柴油CDPF操作。

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