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NOx Adsorber Desulfurization under Conditions Compatible with Diesel Applications

机译:NOx吸附器在与柴油应用兼容的条件下的吸附器脱硫

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One of the main drawbacks of the NOx adsorber technology versus the other leading approach for high level NOx conversion, namely selective catalytic reduction, is its high sensitivity to sulfur. In spite of the likely availability of ultra-low sulfur fuel and protecting devices like sulfur traps, and furthermore taking into consideration additional sulfur sources such as engine oil and lubricants, a desulfurization strategy will be essential to the commercial implementation of NOx adsorber catalysts on diesel vehicles. The results presented in this paper were obtained on NOx adsorbers with proven thermal durability and efficiency in diesel engine exhaust. They show NOx performance recovery following severe sulfur poisoning, after desulfation under temperature and air/fuel mixture conditions compatible with diesel engine operation. In addition, different desulfurization tactics, tested on a synthetic gas bench simulating diesel exhaust, are depicted and discussed.
机译:NOx吸附器技术的主要缺点之一与高水平NOx转化率的其他主要方法,即选择性催化还原是对硫的高敏感性。尽管有可能的超低硫燃料和保护装置等硫磺陷阱,而且还考虑了发动机油和润滑剂等额外的硫磺源,脱硫策略对于柴油上NOx吸附剂催化剂的商业实施至关重要车辆。本文提出的结果是在NOx吸附器上获得,柴油发动机排气中经过验证的热耐久性和效率。它们显示出严重硫中毒后的NOx性能回收,在温度和空气/燃料混合物条件下脱硫后,与柴油发动机操作兼容。另外,描绘并讨论了在柴油排气的合成气体台上测试的不同脱硫策略。

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