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Passive NO_2 Regeneration and NOx Conversion for DPF with an Integrated Vanadium SCR Catalyst

机译:具有集成钒SCR催化剂的DPF的被动NO_2再生和NOx转化

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For trucks today, the diesel particulate filter (DPF) and SCR catalysts are combined in this sequential order in diesel exhaust systems with the drawback of insufficient temperature for the SCR catalyst during cold start and large volume. The problems can potentially be solved by integrating the SCR catalyst into the particulate filter as one multifunctional unit. For off-road and heavy-duty vehicles applications with fully managed passive NO_2-soot regenerations, integration of V-based SCR formulations on the DPF (V-SCRonDPF) represents an attractive solution due to high sulfur resistance accompanied by low-temperature NO_x conversion and improved fuel economy. Engine bench tests together with an NO_2-active DOC show that it is possible to manage the NO_2/NO_x ratio so both a high NO_x conversion and still a low soot balance point temperature is obtained. The soot balance point is almost unaffected by the fast SCR reaction when urea is introduced. For a full system, Engine → DOC → Urea(inj) → V-SCRonDPF → SCR → ASC → out on a MAN D 26 experimental engine, an NOx emission of 0.23 g/kWh well below the regulation was demonstrated for an off-road NRTC cycle, without any pressure drop increase over the VSCRonDPF and no soot accumulation measured by weight increase.
机译:对于如今的卡车,柴油颗粒过滤器(DPF)和SCR催化剂在柴油排气系统中以这种顺序组合在冷启动期间SCR催化剂温度不足的缺点。通过将SCR催化剂集成到颗粒过滤器中作为一个多功能单元来潜在地解决问题。对于具有完全管理的被动NO_2-SOOT再生的越野和重型车辆应用,基于V的SCR配方对DPF(V-SCRONDPF)的集成代表了由于高温NO_X转换的高硫抗性导致的吸引力解决方案提高燃油经济性。发动机板凳与NO_2-ACTIVE DOC一起测试,表明可以管理NO_2 / NO_X比,因此获得高NO_X转换和仍然是低烟灰平衡点温度。烟灰平衡点几乎不受尿素的快速SCR反应影响。对于完整的系统,发动机→Doc→尿素(Inj)→V-Scrondpf→SCR→ASC→OUT在MAN D 26实验发动机上,低于调节的NOx排放0.23克/千瓦时,以越野NRTC循环,没有任何压降,在VscrondPF上增加,没有重量增加测量的烟灰累积。

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