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Electrofuels provider Infinium announced an agreement with Amazon to begin using Infinium Electrofuels in the retailer’s middle mile fleet as an ultra-low carbonalternative to traditional fossil fuels. Earlier post.).
Electrofuels provider Infinium and comprehensive carbon management company Navigator CO2 entered into a Memorandum of Understanding and long-term relationship for Navigator to deliver 600,000 tons per annum (TPA) of biogenic carbon dioxide from its Heartland Greenway system to a future Infinium facility for the production of electrofuels (eFuels).
A new assessment of the viability of coal-to-liquids (CTL) technology by researchers from the MIT Joint Program on the Science and Policy of Global Change (JPSPGC) found that without climate policy, CTL has the potential to account for around a third of global liquid fuels by 2050. of global electricity demand.
Administered by Virginia Clean Cities at James Madison University, the program will deploy nearly 1,200 propane Autogas vehicles, reducing air pollutants such as carbon monoxide, soot and smog-causing emissions when compared to traditional gasoline vehicles. based Red Top Cab provided the first vehicle for conversion under the program.
Cost of carbon abated for transport applications. Unlike biomethane produced by anaerobic digestion, Bio-SNG is formed by the conversion of thermally-derived syngas—i.e., Bio-methane retains all the attributes of natural gas, with the crucial advantage that the fuel is renewable, offering substantial Carbon Dioxide savings.
Researchers from Monash University and Hokkaido University have developed a method to produce dimethoxymethane (DMM)—a diesel blend fuel currently of great research interest—via CO 2 hydrogenation in methanol over a novel ruthenium-based catalyst. Their paper is published in the Journal of Energy Chemistry.
A team of biologists and engineers modified Rhodopseudomonas palustris TIE-1 (TIE-1) so that it can produce a biofuel using only three renewable and naturally abundant source ingredients: carbon dioxide, solar panel-generated electricity and light. We hope that it can be a steppingstone for future sustainable solar fuel production.
The interest in microbial synthesis of fuels and chemicals has increased substantially as efforts to transition toward a “bio-based” economy have gained momentum; however, the ability to more broadly use biological systems for chemical production is somewhat limited by the natural repertoire of biosynthetic pathways. —Tseng and Prather.
The California Energy Commission is issuing a solicitation ( GFO-17-901 ) to provide up to $3 million in funding for innovative, pre-commercial low-carbonfuel production processes that result in the development of bio-oil as an intermediate fuel with wide-scale adoption potential used for renewable jet fuel production.
This technology is being investigated in a parallel project together with RWTH Aachen University researching the viability of different DME generation methods, looking at conversion efficiency, estimated fuel prices and infrastructure aspects. Alternative, renewable fuels like methyl ethers will play a pivotal role in the future.
Critical enablers requiring immediate development are: Flexible economic and engineering models capable of evaluating the wide variety of proposed approaches for alternativefuel facilities and supply chains. Current economic and engineering models were developed with assumptions that do not match those for alternativefuels.
A team from the Loker Hydrocarbon Research Institute and Department of Chemistry, University of Southern California, reports on an improved material for capturing carbon dioxide from the air—silica?organic Narayanan (2011) Carbon Dioxide Capture from the Air Using a Polyamine Based Regenerable Solid Adsorbent. Olah, and S.
While vehicle efficiency will be the most important and most cost-efficient way to reduce transport-emissions, biofuels will still be needed to provide low-carbonfuelalternatives for planes, marine vessels and other heavy transport modes, and will eventually provide one fifth (2.1
Global warming due to the emission of gases (Nitrogen Dioxide, Carbon Dioxide, Carbon Monoxide, etc.) from automobiles, environmental pollution, depletion of fossil fuels, etc. make alternativefuels in vehicles a necessity. Kg of Carbon dioxide when it burnt. Kg of Carbon dioxide!!
Analyzing the potential of various OME n as diesel fuels identifies OME 3–5 as the most promising mixture. The researchers reviewed liquid fuelalternatives that could be used in existing vehicles in the transportation sector. Their composition depends on the production process. —Schemme et al.
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