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The New Terminal One will have what its creators have said is the largest solar array at any US airport, which will power a fleet of electric vehicles used at the terminal both landside and airside. MWh of battery energy storage to balance electrical demand and improve power quality. MW of fuel cells and 1.5 MW of fuel cells and 1.5
Electric vehicles are now common in all automotive markets. Infrastructure developments, cost parity with IC engine vehicles, less running cost, better performance, etc., attract people towards electric vehicles. When you drive an electric vehicle, the main concern is the distance that it can cover with a fully charged battery.
Researchers hope to capture this energy and use it to produce clean, zero-carbon electricity. And it’s become increasingly important as a rapidly warming climate and soaring electricity demand have made the need for stable, carbon-free power ever more acute. Fusion reactions have powered the sun since it formed an estimated 4.6
Raven SR plans to use INNIO’s Jenbacher engines [60 Hz] with a “Ready for H2” option to produce renewable energy. At the site, landfill gas (LFG) will be the primary fuel to provide power for the non-combustion process that converts waste to hydrogen. The type 4 engines are already available today to run on 100% hydrogen.
Alfa Laval is introducing the E-PowerPack waste heat recovery system for ships. Able to convert waste heat directly into electrical power, the E-PowerPack uses Organic Rankine Cycle (ORC) technology to reduce ship fuel consumption and CO 2 emissions. Basic ORC concept. All can make a sizeable difference.
will bring to market a 15-liter natural gasengine for heavy-duty trucks. The 15-liter natural gasengine is an important part of Cummins strategy for its path to zero emissions. —Srikanth Padmanabhan, President, Engine Business, Cummins. Cummins Inc.
Despite improvements in engine efficiency—e.g., Despite improvements in engine efficiency—e.g., Finding ways of recovering this lost heat energy has been one of the major goals being pursued by engineers working on BMW EfficientDynamics for the future.
The plant will feature SGH2’s technology, which will gasify recycled mixed paper waste to produce green hydrogen that reduces carbon emissions by two to three times more than green hydrogen produced using electrolysis and renewable energy, and is five to seven times cheaper. The facility will process 42,000 tons of recycled waste annually.
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. —Skarke et al.
GTI has released a site-specific engineering design titled “ Low-Carbon Renewable Natural Gas (RNG) from Wood Wastes ”. A biomass power plant in Stockton, California, was the host site for the engineering design effort. A biomass power plant in Stockton, California, was the host site for the engineering design effort.
Opcon, in collaboration with Wallenius Marine, recently completed the first reference installation of its Waste Heat Recovery technology for ocean-going vessels in a project supported by the Swedish Energy Agency. The Opcon systems generate electricity from low-value waste heat in the vessel’s steam and cooling system.
However, they also noted, high PTW efficiencies and the moderate fuel economies of current compressed natural gas vehicles (CNGVs) make them a viable option as well. If CNG were to be eventually used in hybrids, the advantage of the electric generation/EV option shrinks. Their open access paper is published in the journal Energy.
bp ventures has committed $10 million, leading the Series B investment round, in WasteFuel , a California-based biofuels company that will use proven, scalable technologies to convert bio-based municipal and agricultural waste into lower carbon fuels, such as biomethanol. billion metric tons by 2050.
Audi is adding a new member to its A3 family: the A3 Sportback 30 g-tron natural gas vehicle. Operation with natural gas or biomethane makes the compact model economical and more climate-friendly with low emissions. TFSI engine produces 96 kW (131 PS) and generates 200 N·m (147.5 The A3 Sportback 30 g-tron 1.5
to Fulcrum Sierra Biofuels, LLC to build a biorefinery to produce jet fuel from municipal solid waste (MSW) via a proprietary two-stage thermochemical process. A venturi scrubber captures and removes any entrained particulate, and the syngas is further cooled in a packed gas cooler scrubber. Earlier post.). which received a $12.8-million
Cobra electric supercharger. At the 17 th Supercharging conference this week in Dresden, Controlled Power Technologies (CPT) will launch what it says is the first water-cooled electric supercharger developed for “quasi-continuous” boosting of commercial diesel engines, including those developed for off highway applications.
Testing was also conducted at the DTNA Detroit engineering facility to demonstrate engine efficiency by achieving 50.2% engine brake thermal efficiency. liter engine, a hybrid system, a Waste Heat Recovery (WHR) system, along with a number of other upgrades. mpg (19.26
The new VW Golf is now also available in certain markets with natural gas drive: the Golf TGI is equipped with a 1.5-liter liter four-cylinder engine with 96 kW / 130 PS and three natural gas fuel tanks. The tanks are integrated into the underbody and permit a range of around 400 kilometers (WLTP) in pure natural gas mode.
The new assembly in Munich will be built on the site currently used for engine production. The combustion engines with four, six, eight and 12 cylinders produced there will be manufactured at the company’s locations in Steyr in Austria and Hams Hall in the UK going forward. —Milan Nedeljkovi?, —Milan Nedeljkovi?.
Researchers from the Karlsruhe Institute of Technology (KIT) have successfully produced renewable methane from a biomass-based synthesis gas mixture in their pilot plant for methanation using a new honeycomb catalyst. —Felix Ortloff, Head of the Process Engineering group of the DVGW Research Centre at KIT’s Engler-Bunte Institute (EBI).
the strategic investment arm of South Korea’s SK Group, was part of a $50-million investment in Fulcrum BioEnergy, a US-based waste-to-fuels company. Fulcrum produce biofuel on a commercial scale by chemically converting municipal solid waste (MSW) into transportation fuels.
The Alphabet Energy PowerModule is a solid-state, liquid-cooled electrical generator that converts exhaust heat into electricity using Alphabet Energy’s proprietary PowerBlocks thermoelectric materials. The E1, packaged in a standard 20-foot sea container envelope, generates up to 25 kW e per 1,000 kW e engine—i.e.,
ClearFlame Engine Technologies, a startup developing net-zero engine technology ( earlier post ), announced the publication of an independent study that finds ClearFlame’s technology could help fleet owners and other heavy-duty truck operators lower total costs while meeting sustainability goals sooner than currently available alternatives.
Researchers from Newcastle University in the UK have engineered Escherichia coli bacteria to capture carbon dioxide using hydrogen gas to convert it into formic acid. coli host strain was engineered for the continuous production of formic acid from H 2 and CO 2 during bacterial growth in a pressurised batch bioreactor.
Start-up Enogia and IFP Energies nouvelles (IFPEN) are forming a strategic partnership for the joint development and marketing of a range of Rankine technologies to convert heat into electricity. The innovation is based on the use of highly efficient micro-turbines capable of producing 5 to 100 kW of electricity.
ElectraTherm, a leader in distributed, waste heat to power generation, is working with the Office of Naval Research (ONR), Creare, and the US Naval Academy (USNA) to demonstrate gas turbine waste heat recovery as part of a Small Business Innovation Research project. —Roger Hill, Lead Project Engineer at Creare.
Tests have demonstrated that a residential combined heat and power (CHP) engine developed as an Advanced Research Projects Agency - Energy (ARPA-E)-backed venture through the Generators for Small Electrical and Thermal Systems (GENSETS) program ( earlier post ) offers at least a 20% improvement in efficiency over the current leading alternatives.
a Sumitomo Corporation Group company, jointly demonstrated a new waste heat recovery system based on a thermoelectric generator (TEG), which generates electrical power via exhaust gas heat. The main engine cooling circuit was branched and extended to TEG unit. An additional test achieved the target gas temperature.
After the first two LNG car carriers entered service in 2020, Volkswagen Group Logistics has now ordered four more ships with dual-fuel engines that can be powered with LNG. The Volkswagen Group has therefore committed to e-mobility as well as to the sustainable production and use of new electric vehicles.
A recently completed European project coordinated by Centro Ricerche Fiat (CRF) demonstrated the technical feasibility of a Bi 2 Te 3 -based thermoelectric generator (TEG) for waste heat recovery for application to a diesel light-duty truck (LDT). Spark plasma sintering uses an electric current to heat the sample and to activate sintering.
Energy Vault’s advanced gravity energy storage solutions are based on the proven physics and mechanical engineering fundamentals of pumped hydroelectric energy storage, but replace water with custom-made composite blocks, or “mobile masses”, which do not lose storage capacity over time. barrel per ton of feedstock.
HP Taxis, Prins Alternative Fuel Systems and SBL-Automotive revealed [link] of the plug-in hybrid range-extended electric LEVC TX taxi and VN5 van allowing the range extender engine to run on LPG and CNG and their renewable counterparts of biopropane and biomethane. For CNG/biomethane the engine bay layout is similar.
Developed for hybrid electric vehicles (HEVs) and plug-in hybrid electric vehicles (PHEVs), BorgWarner’s innovative Exhaust Heat Recovery System (EHRS) can improve fuel economy by up to 8.5% Our EHRS minimizes engine heat up time, helping automakers around the globe meet new and more stringent regulations.
The TEG technology, which converts waste heat from gas exhaust into electric energy and has the potential to improve passenger car fuel efficiency by as much as 5%. The TEGs were also tested on the bench and, in a peak performance test, produced more than 700 watts as a result of improving interfaces, thermal and electrical.
In a paper being presented at WCX SAE World Congress Experience in Detroit this week, a team from MIT is proposing the use of a flex-fuel gasoline-alcohol engine approach for a series-hybrid powertrain for long-haul Class 8 trucks. We think that the way to enable the use of electricity in these vehicles is with a plug-in hybrid.
in electric vehicles (PEVs). Advanced Power Electronics and Electric Motors for Electric Traction Drives. The components to enable electric drive vehicles must be more affordable. Electric drive components must be reliable and provide long vehicle service equal to or better than conventional petroleum powered vehicles.
Atkinson cycle engine can reach a thermal efficiency of 38%. Toyota Motor Corporation has developed a new series of fuel-efficient gasoline engines that achieve improved thermal efficiency. In developing the new engines, Toyota focused on four key areas: rapid combustion; a higher compression ratio; reduced pumping losses (e.g.,
Ohio University’s Institute for Sustainable Energy and the Environment was awarded two of the six awards, one that explores how coal waste can be reimagined as energy storage and the second aims to develop ultra-conductive carbon metal composite wire for electric motors.
The fuel cells of the company will primarily be used for stationary power generation and within the maritime sector and are a climate-friendly alternative to conventional fossil-based combustion engines. no gas purification is needed on the reformat gas. Waste heat can also be used for additional energy recovery.
Nissan announced a breakthrough in engine efficiency, reaching 50% thermal efficiency with its in-development, next-generation e-POWER system. Nissan’s e-POWER system utilizes an on-board gasoline engine to provide electrical energy to the e-powertrain battery pack. 2) with a multi-cylinder engine. The STARC concept.
Hyundai Motor Company and Kia Motors Corporation provided new details on their enhanced heat pump system, deployed in Hyundai and Kia’s global electric vehicle (EV) line-up to maximize their all-electric driving range in low temperatures. The technology was first introduced in 2014 on the first-generation Kia Soul EV.
The UTSR Program conducts research to increase the efficiency and performance of gas turbines while lowering emissions. There is renewed interest in the use of hydrogen, a clean-burning fuel, for turbine-based electricity generation. AOI 2: Hydrogen Combustion Applications for Gas Turbines.
Renewable Natural Gas. The topic areas include high-impact biotechnology research, development, and demonstration to bolster the body of scientific and engineering knowledge needed to produce low-carbon biofuels at a lower cost. Quasar Energy Group will use an anaerobic digestor to convert food waste to SAF precursors.
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