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ASME 2012 Internal Combustion Engine Division Fall Technical Conference | 2012

Effect of Anhydrous and Hydrous Ethanol on Performance and Non-Regulated Emissions of an HCCI Engine

Helmer Acevedo; José D. Támara; Felipe Rodriguez

The automotive sector is currently undergoing drastic changes, driven by the need to simultaneously meet increasingly stringent environmental regulations and achieve more efficient operation over a wide range of engine speeds and loads, while satisfying customer demands in terms of performance, safety, and reliability. In this study an HCCI engine is evaluated for performance and regulated and non-regulated emissions with anhydrous and hydrous ethanol. The Standard EPA Method 8315A was used to determine free carbonyl compounds by derivatization with 2,4-dinitrophenyhydrazine (DNPH). Carbonyls have been measured in emissions using DNPH impregnated cartridges and chemical analyses used high performance liquid chromatography (HPLC). Through the load range achievable, naturally aspirated lean anhydrous ethanol requires high intake temperatures. Although NOx emissions are lower with the use of hydrous ethanol, these emissions are much lower with the use of dry ethanol. The penalty of the use hydrous ethanol is an increase of unburned hydrocarbons and carbon monoxide. Total aldehyde emissions are seen to diminish when an HCCI combustion is carried out with hydrous ethanol. Our analysis gives evidence that HCCI engines can run efficiently on hydrous ethanol fuel and that utilizing hydrous ethanol fuel in HCCI engines improves the energy balance of ethanol production.Copyright


Applied Energy | 2014

Greenhouse gas intensity of palm oil produced in Colombia addressing alternative land use change and fertilization scenarios

Érica Geraldes Castanheira; Helmer Acevedo; Fausto Freire


Applied Energy | 2016

Development of a technology roadmap for bioenergy exploitation including biofuels, waste-to-energy and power generation & CHP

Miguel Angel Gonzalez-Salazar; Mauro Venturini; W.-R. Poganietz; Matthias Finkenrath; Trevor Kirsten; Helmer Acevedo; Pier Ruggero Spina


Applied Energy | 2016

A general modeling framework to evaluate energy, economy, land-use and GHG emissions nexus for bioenergy exploitation

Miguel Angel Gonzalez-Salazar; Mauro Venturini; W.-R. Poganietz; Matthias Finkenrath; Trevor Kirsten; Helmer Acevedo; Pier Ruggero Spina


Archive | 2014

Bioenergy technology roadmap for Colombia

Miguel Angel Gonzalez-Salazar; Mauro Venturini; W.-R. Poganietz; Matthias Finkenrath; Trevor Kirsten; Helmer Acevedo


Dyna | 2011

PERFORMANCE AND EMISSIONS OF A HEAVY DUTY DIESEL ENGINE FUELLED WITH PALM OIL BIODIESEL AND PREMIUM DIESEL

Helmer Acevedo; Juan Mantilla


Revista Facultad De Ingenieria-universidad De Antioquia | 2008

Implementación de un bus articulado con motor dedicado a gas natural en los sistemas de transporte masivo de Colombia: Estudio Técnico

Juan Miguel Mantilla González; Carlos Galeano; Helmer Acevedo; Carlos A. Duque


SAE 2011 World Congress & Exhibition | 2011

Hydrogen Fueled Homogeneous Charge Compression Ignition Engine

Anil Singh Bika; Luke Franklin; Helmer Acevedo; David B. Kittelson


Archive | 2011

PERFORMANCE AND EMISSIONS OF A HEAVY DUTY DIESEL ENGINE FUELLED WITH PALM OIL BIODIESEL AND PREMIUM DIESEL DESEMPEÑO Y EMISIONES DE UN MOTOR DIESEL PARA TRABAJO PESADO CUANDO ES OPERADO CON BIODIESEL DE PALMA AFRICANA Y DIESEL DE BAJO CONTENIDO DE AZUFRE

Helmer Acevedo; Juan Mantilla


Archive | 2010

Análisis comparativo del desempeño y emisiones de un motor diesel de gran capacidad operando bajo dos escenarios: trabajo en ruta activa y trabajo en banco Comparative performance and emission tests of a heavy duty off-highway diesel engine working in two different conditions: route test and bench test

Juan Miguel Mantilla González; Jorge A. Roncancio; Helmer Acevedo

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Carlos Galeano

National University of Colombia

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Carlos A. Duque

National University of Colombia

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Juan Mantilla

National University of Colombia

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Matthias Finkenrath

Kempten University of Applied Sciences

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W.-R. Poganietz

Karlsruhe Institute of Technology

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