Skip to main content

Gas offers vehicle fuel future

In what could help fuel widespread adoption of natural gas-powered (NG) vehicles in the US and globally, GE researchers, in partnership with Chart Industries and scientists at the University of Missouri, have been awarded a programme through Advanced Research Projects Agency for Energy (ARPA-E) to develop an affordable at-home refuelling station that would meet ARPA-E’s target of $500 per station and reduce re-fuelling times from 5-8 hours to less than 1 hour.
July 20, 2012 Read time: 3 mins
In what could help fuel widespread adoption of natural gas-powered (NG) vehicles in the US and globally, 6259 GE researchers, in partnership with Chart Industries and scientists at the University of Missouri, have been awarded a programme through Advanced Research Projects Agency for Energy (ARPA-E) to develop an affordable at-home refuelling station that would meet ARPA-E’s target of $500 per station and reduce re-fuelling times from 5-8 hours to less than 1 hour.

Natural gas prices are at an all-time low and the number of NG vehicles is increasing, but several barriers are preventing greater adoption of this vehicle technology. These include the inconvenience and low availability of refuelling stations and limited driving range of NG vehicles.

Although at-home refuelling stations are sold currently, at around $5,000 they are expensive and require long re-fuelling times. The 5-8 hours required to refuel an NG vehicle often leaves overnight re-fuelling as the only the viable option for vehicle owners. While these barriers can be more easily managed by established fleets, they are not practical for passenger vehicles parked in the driveway or garage at home.

“Since the beginning of the automotive industry, cars and trucks have driven on diesel fuel or unleaded gas,” said Anna Lis Laursen, project leader and chemical engineer at GE Global Research. “But with new technologies to reduce the cost of NG re-fuelling and continued improvements in battery technology, the prospects for vehicles that run on alternative fuels will only grow.

“The goal of our project is to design an at-home refuelling station that is much simpler in design, more cost effective and reduces re-fuelling times to under an hour. By reducing the time and cost of re-fuelling, we can break down the barriers that are preventing more widespread adoption of NG vehicles. If we can meet our cost targets, the price of a home refuelling station would be less than typical appliances in the home such as a dishwasher or stove.”

Today, the number of NG vehicles globally is estimated at around 15 million, with more than 250,000 in the US. Most are fleet vehicles such as buses and delivery trucks, but they include some passenger cars as well. With further improvements in the infrastructure to support NG vehicles, the market penetration could be much higher.

The refueling station design being worked on is fundamentally different from how today’s re-fuelling stations operate. Today’s systems rely on traditional compressor technologies to compress and deliver fuel to a vehicle. The research team from GE, Chart Industries and the University of Missouri will design a system that chills, densifies and transfers compressed natural gas more efficiently. It will be a much simpler design with fewer moving parts, and that will operate quietly and be virtually maintenance-free.

The total cost of the 28-month programme will be around $2.3 million, which will be shared by ARPA-E and GE. As part of the programme, GE researchers will focus on overall system design integration. Chart Industries and University of Missouri will address the detailed engineering, cost and manufacturability of the key system components.

For more information on companies in this article

Related Content

  • Driverless car created at Oxford University
    February 18, 2013
    Scientists at Oxford University in England have developed a driverless car system that can be installed in existing cars. A Nissan Leaf electric car has been used to test the system developed by a team headed by Professor Paul Newman. The car can deal with adverse weather conditions and halts for pedestrians, as well as being able to take over from the driver when negotiating regular commutes or traffic jams. Professor Newman reportedly describes it as an advanced driver assistance system in essence, claimi
  • Electric Avenue for heavy machinery?
    February 6, 2018
    The future for electric drive machines looks healthy, and not just for on-road transport. As concerns grow worldwide over urban pollution levels as well as global warming, it seems that electric drive vehicles are being seen as one of the answers for the future. In the automotive sector, sales of electric vehicles are growing as manufacturers offer improved models that benefit from better range due to gains in battery technology as well as faster recharging and future potential from supercapacitors. These
  • Manitowoc MLC650 cranes keep Champlain Bridge on track
    October 28, 2016
    Two Manitowoc MLC650s are working on a project to replace the Champlain Bridge that spans the Saint Lawrence River in Montreal, Canada. The engineering consortium - Signature on the Saint Lawrence Construction (SSLC) – is assigned to the task. The capacity and reduced ground preparation made possible by the MLC650’s VPC-MAX attachment – as well as the ease of use of its Crane Control System (CCS) – are helping the team stay on schedule. The Champlain Bridge connects one of North America’s busiest road
  • Engine firms delivering innovative solutions for reducing emissions and fuel consumption
    January 6, 2017
    Solutions for Tier 4 Final emissions regulations dominated Conexpo 2014, with many firms showing off their options of DOC, DPF and SCR after-treatments. Deutz, while staying with an SCR-only solution, took a more unusual approach on its high horsepower V6 12litre and V8 16litre engines. Both get a dual SCR after treatment system to meet Tier 4 Final emission standards.