首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Comprehensive kinetic characterization of the oxidation and gasification of model and real diesel soot by nitrogen oxides and oxygen under engine exhaust conditions: Measurement, Langmuir-Hinshelwood, and. Arrhenius parameters
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Comprehensive kinetic characterization of the oxidation and gasification of model and real diesel soot by nitrogen oxides and oxygen under engine exhaust conditions: Measurement, Langmuir-Hinshelwood, and. Arrhenius parameters

机译:在发动机排气条件下,模型气体和实际柴油机烟灰被氮氧化物和氧气氧化和气化的综合动力学表征:测量,Langmuir-Hinshelwood等。阿雷尼乌斯参数

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The reaction kinetics of the oxidation and gasification of four types of model and real diese) soot (light and heavy duty vehicle engine soot, graphite spark discharge soot, hexabenzocoronene) by nitrogen oxides and oxygen have been characterized for a Wide range of conditions relevant for modern diesel engine exhaust and continuously regenerating particle trapping or filter systems (0-20 percent O2, 0-800 ppm NO_2, 0-250 ppm NO_2 0-8 percent H_2O, 303-773 K, space velocities 1.3 x 10~4-5x 10~5 h~(-1)). Soot oxidation and NO_2 adsorption experiments have been performed in a model catalytic system with temperature controlled flat bed reactors, novel aerosol particle deposition structures, and sensitive multicomponent gas analysis by FTIR spectroscopy. The experimental results have been analyzed and parameterized by means of a simple carbon mass-based pseudo-first-order rate equation, a shrinking core model, oxidant-specific rate coefficients, Langmuir-Hinshelwood formalisms (maximum rate coefficients and effective adsorption equilibrium constants), and Arrhenius equations (effective activation energies and pre-exponential factors), which allow to describe the rate of reaction as a function of carbon mass conversion, oxidant concentrations, and temperature. At temperatures up to 723 K the reaction was driven primarily by NO_2 and enhanced by O_2 and H_2O. Within the technically relevant concentration range the reaction rates were nearly independent of O_2 and H_2O variations, while the NO_2 concentration dependence followed a Langmuir-Hinshelwood mechanism (saturation above ~200 ppm). Reaction stoichiometry (NO_2 consumption, CO and CO_2 formation) and rate coefficients indicate that the reactions of NO_2 and O_2 with soot proceed in parallel and are additive without significant nonlinear interferences. The reactivity of the investigated diesel soot and model substances was positively correlated with their oxygen mass fraction and negatively correlated with their carbon mass fraction.
机译:表征了四种类型的模型和实模柴油)烟灰(轻型和重型汽车发动机烟灰,石墨火花放电烟灰,六苯并二甲苯)氧化和气化的反应动力学,适用于与以下条件相关的各种条件:现代柴油机排气和不断再生的颗粒捕集或过滤系统(0-20%的O2、0-800 ppm的NO_2、0-250 ppm的NO_2、0-8%的H_2O,303-773 K,空速1.3 x 10〜4-5x 10〜5 h〜(-1))。烟尘氧化和NO_2吸附实验已在具有温度控制的平板床反应器,新型气溶胶颗粒沉积结构以及通过FTIR光谱进行灵敏的多组分气体分析的模型催化系统中进行。实验结果已通过基于碳质量的简单拟一级反应方程式,收缩核模型,氧化剂比速率系数,Langmuir-Hinshelwood形式主义(最大速率系数和有效吸附平衡常数)进行了分析和参数化。 ,和Arrhenius方程(有效的活化能和指数前因子),可以描述反应速率与碳质量转化率,氧化剂浓度和温度的关系。在高达723 K的温度下,反应主要由NO_2驱动,并由O_2和H_2O增强。在技​​术上相关的浓度范围内,反应速率几乎与O_2和H_2O的变化无关,而NO_2的浓度依赖性遵循Langmuir-Hinshelwood机理(饱和度约200 ppm以上)。反应化学计量(NO_2消耗,CO和CO_2的形成)和速率系数表明,NO_2和O_2与烟灰的反应平行进行,并且是加性反应,没有明显的非线性干扰。所研究的柴油机烟灰和模型物质的反应性与它们的氧质量分数呈正相关,与它们的碳质量分数呈负相关。

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