催化作用
废气
氨
铂金
燃烧
化学计量学
选择性
空间速度
废气再循环
催化燃烧
废物管理
选择性催化还原
无机化学
催化转化器
化学
化学工程
过程(计算)
材料科学
氮氧化物
工艺工程
氮氧化物
内燃机
作者
J. Andrew Breuer,Josef Honerkamp,Andreas Roppertz
摘要
Abstract Ammonia combustion engines for marine vessels are attractive due to zero CO 2 emissions but can lead to increased NH 3 and NO x fractions in the exhaust. An NH 3 /NO x ratio exceeding 1 renders conventional selective catalytic reduction systems inadequate for sufficient emission reduction. This study investigates whether the required stoichiometry can be achieved using Pt‐based oxidation catalysts, with only a portion of the exhaust stream directed through the catalyst in a simulated bypass configuration. Catalyst loading, platinum content, temperature, and space velocity were systematically varied with the aim of minimizing N 2 O formation concurrently. A Gaussian process model was employed to interpolate activity and selectivity between experimental data points. The study identifies the factors influencing N 2 O generation and discusses potential conditions for the application of Pt‐based catalysts in ammonia combustion systems.
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