Remove Electric Vehicles Remove Extended Range Remove PHEV Remove Universal
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Waterloo power management strategy greatly enhances durability of on-board fuel cells in FC-PHEV

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Researchers at the University of Waterloo (Canada), with a colleague in Sweden, have used a power management strategy greatly to extend the durability of onboard fuel cells in a plug-in hybrid electric vehicle: an increase of 1.8, Architecture of FC-PHEVs with three fuel cell stacks as considered in the Zhang et al.

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Simulation study suggests ORC waste heat recovery system could deliver potential 7% improvement in fuel consumption in a PHEV on highway

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Their paper was presented at the ASME Internal Combustion Engine Division 2012 Fall Technical Conference by Marcello Canova, assistant professor at OSU; lead author was Philipp Skarke, from the University of Stuttgart Institute for Internal Combustion Engines and Automotive Engineering. The OSU EcoCAR PHEV powertrain.

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CRU: EVs will transform aluminum demand

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By 2030, aluminum demand from Electric Vehicles (EVs) will near 10 million tonnes, a ten-fold increase from 2017, according to analysis by mining and metals business intelligence firm CRU. In addition, scrap-intensive secondary castings usage will fall as the shift to full battery electric vehicles occurs, CRU predicts.

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EcoCAR Teams Roll Out Architectures; Plug-in Li-ion Packs and Renewable Energy Common Attributes

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Student engineers participating in EcoCAR: The NeXt Challenge unveiled their vehicle architectures at the Washington Auto Show. The 17 designs range from systems using on-board hydrogen fuel cells to full battery-electric vehicles. Extended Range Electric Vehicles (EREV).

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Pennsylvania Awards Axion Power $800,000 to Demonstrate PbC Batteries in Hybrids, PHEVs and EVs

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an $800,000 grant to demonstrate Axion’s proprietary PbC battery technology ( earlier post ) in a variety of electric vehicle types including: hybrids (HEVs); plug-in hybrid electric (PHEVs) used in commuter, delivery and other vehicles; and EVs , including converted (from combustion engine operation) EVs.

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XG Sciences lands SBIR/STTR award to develop Si/graphene anodes for Li-ion batteries for EVs

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As part of the FY 2012 Phase I Release 3 SBIR/STTR Award program, the US Department of Energy (DOE) has awarded Michigan-based XG Sciences, a manufacturer of graphene nanoplatelets ( earlier post ), a contract to develop low-cost, high-energy Si/graphene anodes for Li-ion batteries for use in extended range electric vehicle applications.

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Using the PHEV (Plug-In Hybrid Electric Vehicle) to Transition Society Seamlessly and Profitably From Fossil Fuel to 100% Renewable Energy

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The PHEV (Plug-in Hybrid Electric Vehicle), a subset of the electric car, combines a primary electric motor with a much smaller back-up engine fueled with a hydrocarbon/biofuel mix. (In In this paper PHEV refers solely to the long-range PHEV of 60 miles (100 km) electric-only range.)

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