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Catalytic exhaust gas fuel reforming for diesel engines—effects of water addition on hydrogen production and fuel conversion efficiency

机译:柴油机催化废气燃料重整—加水对制氢和燃料转化效率的影响

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Previous work in our laboratory has shown that the exhaust gas assisted fuel reforming process has the potential to provide a solution to the diesel engine exhaust emission problems. When simulated reformer product gas rich in hydrogen is fed to the engine, a reduction of both NO_x and smoke emissions can be achieved. In this paper, the optimisation of the reforming process by water addition in the reactor is presented. Using a prototype catalyst at 290℃ reactor inlet temperature, up to 15% more hydrogen in the reformer product was obtained compared to operation without water. The process has been found to be mainly a combination of the fuel oxidation, steam reforming and water gas shift reactions. The reforming process efficiency has been shown to improve considerably with water addition up to a certain level after which the adverse effects of the exothermic water gas shift reaction become significant.
机译:我们实验室以前的工作表明,废气辅助燃料重整工艺有可能为柴油机废气排放问题提供解决方案。当将富含氢气的模拟重整器产品气供入发动机时,可以实现NO_x和烟气排放的减少。本文提出了通过在反应器中添加水来优化重整工艺的方法。与没有水的操作相比,使用原型催化剂在290℃的反应器入口温度下,重整产品中的氢气最多可多出15%。已经发现该过程主要是燃料氧化,蒸汽重整和水煤气变换反应的组合。已经表明,随着水的添加达到一定水平,重整过程的效率将大大提高,此后放热的水煤气变换反应的不利影响变得明显。

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