Sensitivity of pollutants abatement in oxidation catalysts to the use of alternative fuels
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[1] Abdullah M. Asiri,et al. Anodic oxidation for the degradation of organic pollutants: Anode materials, operating conditions and mechanisms. A mini review , 2021 .
[2] A. Charlet,et al. Effect of Optimizing of the Start of Injection Timing for Improving NOx/PM Trade-Off in DI Diesel Engine Fueled with Rapeseed Methyl Ester , 2020 .
[3] J. Benajes,et al. Clean and efficient dual-fuel combustion using OMEx as high reactivity fuel: Comparison to diesel-gasoline calibration , 2020 .
[4] M. Viana,et al. Coupling photocatalytic degradation using a green TiO2 catalyst to membrane bioreactor for petroleum refinery wastewater reclamation , 2020 .
[5] C. Beatrice,et al. Assessment of optimized calibrations in minimizing GHG emissions from a Dual Fuel NG/Diesel automotive engine , 2019 .
[6] M. Viana,et al. Coupling photocatalytic degradation using a green TiO2 catalyst to membrane bioreactor for petroleum refinery wastewater reclamation. , 2019, Comparative immunology, microbiology and infectious diseases.
[7] T. Gnann,et al. Market diffusion of alternative fuels and powertrains in heavy-duty vehicles: A literature review , 2019, Energy Reports.
[8] Antonio García,et al. Performance of a diesel oxidation catalyst under diesel-gasoline reactivity controlled compression ignition combustion conditions , 2019, Energy Conversion and Management.
[9] U. Vogel,et al. Regulated Emissions and Detailed Particle Characterisation for Diesel and RME Biodiesel Fuel Combustion with Varying EGR in a Heavy-Duty Engine , 2019, SAE Technical Paper Series.
[10] H. Bastawissi,et al. Comparative study of the combustion, performance, and emission characteristics of a direct injection diesel engine with a partially premixed lean charge compression ignition diesel engines , 2019, Fuel.
[11] B. Deepanraj,et al. Experimental investigation on performance, combustion and emission analysis of a direct injection diesel engine fuelled with rapeseed oil biodiesel , 2019, Fuel.
[12] Ming Yang,et al. Aftertreatment Protocols for Catalyst Characterization and Performance Evaluation: Low-Temperature Oxidation, Storage, Three-Way, and NH3-SCR Catalyst Test Protocols , 2019, Emission Control Science and Technology.
[13] B. Ashok,et al. Effects of n-octanol as a fuel blend with biodiesel on diesel engine characteristics , 2019, Fuel.
[14] Antonio García,et al. Sizing a conventional diesel oxidation catalyst to be used for RCCI combustion under real driving conditions , 2018, Applied Thermal Engineering.
[15] Jun Zhang,et al. Application of dual-fuel combustion over the full operating map in a heavy-duty multi-cylinder engine with reduced compression ratio and diesel oxidation catalyst , 2018, Energy Conversion and Management.
[16] Francisco José Arnau,et al. Lumped Approach for Flow-Through and Wall-Flow Monolithic Reactors Modelling for Real-Time Automotive Applications , 2018 .
[17] Sung Bong Kang,et al. Experimental and modeling study of CO and hydrocarbons light-off on various Pt-Pd/γ-Al2O3 diesel oxidation catalysts , 2017 .
[18] Adam B. Dempsey,et al. Evolution and current understanding of physicochemical characterization of particulate matter from reactivity controlled compression ignition combustion on a multicylinder light-duty engine* , 2017 .
[19] A. Joshi,et al. Review of Vehicle Engine Efficiency and Emissions , 2017, SAE Technical Paper Series.
[20] M. Bogarra,et al. Study of particulate matter and gaseous emissions in gasoline direct injection engine using on-board exhaust gas fuel reforming , 2016 .
[21] Martin Tuner,et al. Review and Benchmarking of Alternative Fuels in Conventional and Advanced Engine Concepts with Emphasis on Efficiency, CO 2 , and Regulated Emissions , 2016 .
[22] David Blanco-Rodriguez,et al. Optimization of Engine Efficiency and Diesel Aftertreatment System Architecture Using an Integrated System Simulation Approach , 2016 .
[23] A. Tsolakis,et al. Reduction of low temperature engine pollutants by understanding the exhaust species interactions in a diesel oxidation catalyst. , 2014, Environmental science & technology.
[24] Johannes Pagenkopf,et al. Zero emissions trucks: an overview of state-of-the-art technologies and their potential , 2013 .
[25] R. Hayes,et al. Competitive no, co and hydrocarbon oxidation reactions over a diesel oxidation catalyst , 2012 .
[26] Axel Munack,et al. Fuel economy and emission characteristics of Gas-to-Liquid (GTL) and Rapeseed Methyl Ester (RME) as alternative fuels for diesel engines , 2012 .
[27] Pedro Piqueras,et al. Heat transfer modelling in honeycomb wall-flow diesel particulate filters , 2012 .
[28] A. Tsolakis,et al. Speciation of particulate matter and hydrocarbon emissions from biodiesel combustion and its reduction by aftertreatment , 2012 .
[29] Zissis Samaras,et al. Calibration and Validation of a Diesel Oxidation Catalyst Model: from Synthetic Gas Testing to Driving Cycle Applications , 2011 .
[30] Michel Waroquier,et al. Normal Mode Analysis in Zeolites: Toward an Efficient Calculation of Adsorption Entropies. , 2011, Journal of chemical theory and computation.
[31] D. Duprez,et al. Catalytic oxidation of heavy hydrocarbons over Pt/Al2O3. Influence of the structure of the molecule on its reactivity , 2010 .
[32] Bernardo Tormos,et al. Hydrocarbon emissions speciation in diesel and biodiesel exhausts , 2009 .
[33] Petr Kočí,et al. Catalytic Converters for Automobile Diesel Engines with Adsorption of Hydrocarbons on Zeolites , 2005 .
[34] M. Patterson,et al. The effect of carbon monoxide on the oxidation of four C6 to C8 hydrocarbons over platinum, palladium and rhodium , 2000 .
[35] Robert Henry Hammerle,et al. Organic emissions profile for a light-duty diesel vehicle , 1999 .
[36] James C. Cavendish,et al. Transients of monolithic catalytic converters. Response to step changes in feedstream temperature as related to controlling automobile emissions , 1982 .
[37] Chaitanya S. Sampara,et al. Global Kinetics for a Commercial Diesel Oxidation Catalyst with Two Exhaust Hydrocarbons , 2008 .
[38] Dennis N. Assanis,et al. One-dimensional automotive catalyst modeling , 2005 .
[39] H. V. Kehiaian,et al. Enthalpies of vaporization of organic compounds : a critical review and data compilation , 1985 .
[40] J. Chao,et al. Ideal gas thermodynamic properties of ethylene and propylene , 1975 .
[41] Donald W. Scott,et al. Chemical Thermodynamic Properties of Hydrocarbons and Related Substances: Properties of the Alkane Hydrocarbons, C1 through C10, in the Ideal Gas State From 0 to 1500 K , 1974 .