Tuesday, December 8, 2009

Duty Vehicle, Engine Manufacturers Call for Global Cooperation to Improve Energy Efficiency

IndustryWeek - The world's leading heavy-duty vehicle and engine manufacturing companies urge the close cooperation between policy makers in Europe, the U.S. and Japan to develop practical and effective fuel-efficiency measurement metrics, methodologies and regulations which would then be used all around the globe.

Over a dozen chief executives of the global commercial vehicle industry -- including Caterpillar, Cummins, Daimler, Hino, Isuzu, Iveco, Mack, MAN, Mitsubishi Fuso, Navistar, Nissan Diesel, Scania, Volvo and Volkswagen, met on Dec. 4 in Brussels to discuss various opportunities and needs their industry is facing. The discussions focused primarily on the issues of climate change and global energy security, but also covered global air quality- related emissions standards, improved fuel quality and specifications for renewable fuels.

As a result of today's meeting, the chief executives agreed to initiate through OICA a proposal to UNECE to develop a certification procedure of heavy-duty hybrid electric vehicles based upon the HILS procedure used in Japan and to ask UNECE to address this issue with urgency.
Furthermore, and in relation to exhaust emission requirements, the manufacturers agreed to recommend the introduction of legislative requirements regarding market fuels, in order to ensure that the appropriate, high-quality fossil and renewable fuels are globally available for today’s vehicle technologies. The commercial vehicle industry will work with the oil industry to underline the importance of this issue and ensure a constructive dialogue.

Considering the positive outcome of the UNECE process on establishing a harmonized engine certification procedure for emissions related to air quality, the chief executives encourages UNECE to take advantage of this momentum and initiate activities with the objective to develop metrics and methods to measure fuel efficiency of heavy-duty vehicles and engines and for evaluating fuel efficiency improvements of components related to air and rolling resistance.

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