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Impact of Lubricant Oil Additives on the Performance of Pd-Based Three-Way Catalysts

机译:润滑油添加剂对Pd基三元催化剂性能的影响

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摘要

As alternative lubricant anti-wear additives are sought to reduce friction and improve overall fuel economy, it is important that these additives are also compatible with current emissions control catalysts. In the present work, a second-generation oil-miscible phosphorous-containing ionic liquid (IL), is evaluated for its impact on Pd-based three-way catalyst (TWC) reactivity and benchmarked against the industry standard zinc dialkyl-dithio-phosphate (ZDDP). The TWCs are exposed to the lubricant additives in an engine bench under four different scenarios: base case with no additive (NA), ZDDP-only, IL-only, and IL + ZDDP. The engine-aged TWC samples, along with the as-received TWC, are characterized through various analytical techniques including catalyst reactivity evaluation in a bench-flow reactor. The temperature of 50% conversion (T_50) for the ZDDP-aged TWC increases by 11,21, and 36 °C for CO, C_3H_6, and C_3H_8, respectively, as compared with the no-additive case. Similarly, the T_(50) for IL-only and IL + ZDDP-aged TWCs also increase as compared with the no-additive case. Even though the water-gas-shift (WGS) reactivity is similar for all engine-aged samples, the IL-aged TWC had higher oxygen storage capacity than the ZDDP-aged TWC. EPMA analysis reveals penetration of phosphorus deep into the washcoat for all engine-aged TWCs. Results from XRD indicate the presence of CePO_4 and AlPO_4 on the washcoat of IL, ZDDP, and IL + ZDDP-aged TWC samples but not on the fresh and NATWC samples. Additionally, ICP-OES results show a large amount of phosphorus in the washcoat of IL, ZDDP and IL + ZDDP-aged TWC samples and a lesser amount in NA TWC samples.
机译:作为替代润滑剂抗磨添加剂,寻求减少摩擦力并改善整体燃料经济性,重要的是这些添加剂也与电流排放控制催化剂相容。在本作工作中,评价了第二代油脂混溶的磷酸离子液体(IL),其影响其对基于Pd的三元催化剂(TWC)的反应性,并根据行业标准锌二烷基二磷酸酯的基准测试(ZDDP)。在四种不同场景下,TWCS暴露于发动机工作台中的润滑剂添加剂:基本情况没有添加剂(NA),仅ZDDP,IL和IL + ZDDP。发动机老化的TWC样品以及由接收的TWC的特征在于,通过各种分析技术,包括在台式流动反应器中的催化剂反应性评价。与无附加案例相比,ZDDP老年TWC的50%转化率(T_50)的温度分别增加11,21和36℃,C_3H_6和C_3H_8。类似地,与无添加案例相比,IL-ock和IL + ZDDP老化的T_(50)也增加。尽管对所有发动机老化样品相似的水气移(WGS)反应性,但IL-yaned TWC的氧气储存能力较高,而不是ZDDP老化的TWC。 EPMA分析显示,对于所有发动机老化的TWCs,磷深入磷酸盐。来自XRD的结果表明IL,ZDDP和IL + ZDDP-ys TWC样品的洗涤涂层上的CePO_4和AlPO_4,但不在新鲜和NatWC样品上。另外,ICP-OES结果显示IL,ZDDP和IL + ZDDP老化的TWC样品的洗涤涂层中的大量磷,以及在NA TWC样品中的较小量。

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