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Diesel particulate control system for Ford 1.8L Sierra Turbo-Diesel to meet 1997-2003 particulate standards

机译:福特1.8L塞拉涡轮柴油柴油颗粒控制系统达到1997-2003颗粒标准

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Feasibility of wall-flow diesel exhaust filter trap particulate aftertreatment emission control systems to meet the U.S. Federal, CARB and EC passenger car standards for 1997/2003 and beyond for the 1360 kg (3000 lb.) EAO (Ford European Automotive Operations) 1.8 liter Sierra Turbo-Diesel passenger car is investigated. Plain and Pd catalyzed monolith wall flow diesel particulate traps are examined using Phillips No.2 diesel fuel (Reference Standard), low sulfur (0.05%S) diesel fuel and an ultra-low sulfur (0.001%S) diesel fuel. Comparisons are made with baseline FTP75 and Highway exhaust emissions and Federal and CARB mandated particulate standards for 1997 and 2003. Effectiveness of catalyzed traps, plain traps, copper octoate trap regeneration fuel additive, and fuel sulfur content on the particulate emissions is determined. On the basis of limited durability tests, cordierite wall flow filter traps of 100 cpi and 0.432 mm (0.017 in.) wall thickness having palladium catalyst on exit channel surfaces, with 0.13gm Cu/liter fuel (0.5g Cu/gallon) with Cu as copper octoate fuel additive for trap regeneration, demonstrates capability for reducing diesel particulate emissions to well below the stringent 1997/2003 particulate emission standards, with low (0.05% S) and ultra low (0.001% S) sulfur fuels. This investigation identifies a potential means for reducing NO_x emissions. However, the NO_x standards still pose a formidable challenge.
机译:可行性壁流式柴油机排气过滤器捕集颗粒后处理的排放控制系统,以满足美国联邦,CARB和EC乘用车标准二千零三分之一千九百九十七及以后为1360公斤(3000磅)EAO(福特欧洲汽车业务)1.8升塞拉利昂涡轮增压柴油乘用车进行了研究。平原和Pd催化整料壁流柴油机颗粒捕集器使用2号十字柴油燃料(参考标准),低硫(0.05%S)的柴油燃料和超低硫(0.001%S)柴油燃料检查。比较是与基线FTP75和公路废气排放制成,联邦和CARB授权微粒标准1997和确定催化陷阱,平原陷阱,辛酸铜捕集器再生燃料添加剂,并在颗粒物排放燃料的硫含量的2003效能。上的有限的耐久性测试,100 CPI和0.432毫米的堇青石壁流过滤器捕集的基础(在0.017。),其具有上出口通道表面的钯催化剂的壁厚,以0.13gm铜/升燃料(0.5克铜/加仑)与铜作为捕集器再生辛酸铜燃料添加剂,演示能力用于减少柴油机微粒的排放,以大大低于严格2003分之1997微粒排放标准,具有低(0.05%S)和超低(0.001%S)硫燃料。本次调查确定一个潜在的用于降低NO_x的排放量。然而,NO_x的标准仍然构成巨大的挑战。

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