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Contact systems for use in sulfur containing, reformulated gasolines

机译:用于含硫,重配汽油的接触系统

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As part of the overall effort to reduce pollution effects associated with automotive emissions, government mandates have required a reduction in the sulfur level of gasoline. This has required changes in the refining process. Along with a reduction in overall sulfur levels, the new process also produces an apparent change in the chemistry of the residual sulfur species. Although not yet fully characterized, initial data suggests that this newer species is chemically more reactive than the older form. With sensors using conventional Ag and Pd-Ag contact materials, signal noise is much higher in the newer gasolines even with the reduced ppm sulfur levels. Similar results were also found with higher ppm sulfur fuels from countries, such as Australia, South Africa, and Malaysia, where the gasoline formulations or distribution/refining conditions may not tightly as tightly controlled. SEM data indicates the noise is associated with the formation of sulfide surface films. In order to provide long term, noise free signals in these newer fuels, a new family of Au based contact materials and a complimentary thick film ink has been developed to overcome these issues. Test data is provided to show the improved performance of these new materials in an accelerated test using a fuel doped with 20 ppm elemental sulfur.
机译:作为减少与汽车尾气有关的污染影响的整体努力的一部分,政府强制要求减少汽油中的硫含量。这要求在精炼过程中进行更改。随着总硫含量的降低,新工艺还使残留硫物种的化学性质发生了明显变化。尽管尚未完全表征,但初步数据表明,该新物种在化学上比旧形式具有更高的反应性。使用使用常规Ag和Pd-Ag接触材料的传感器,即使降低了ppm硫含量,新型汽油中的信号噪声也要高得多。在来自澳大利亚,南非和马来西亚等国家的较高ppm硫燃料中也发现了类似的结果,这些国家的汽油配方或分配/精炼条件可能没有得到严格控制。 SEM数据表明该噪声与硫化物表面膜的形成有关。为了在这些更新的燃料中提供长期的无噪声信号,已经开发了新的基于金的接触材料家族和免费的厚膜油墨系列,以克服这些问题。提供了测试数据,以显示这些新材料在使用掺有20 ppm元素硫的燃料进行的加速测试中的改进性能。

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