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Toyocolor, the colorants and functional materials arm of the specialty chemicals company Toyo Ink Group of Japan, announced that the company’s Lioaccum conductive carbon nanotube (CNT) dispersions ( earlier post ) have been selected by the world’s largest battery manufacturer CATL (Contemporary Amperex Technology Co., in Guangdong, China.
Biocoal exhibits the same energy density and material handling properties as coal, but unlike coal, it is carbon-neutral, contains no heavy metals, and produces less ash, smoke and volatile off-gases. The locomotive will run on torrefied biomass (biocoal), a biofuel created through an energy-efficient processing of cellulosic biomass.
Cool Planet Energy Systems projects that using its patented mechanical process and novel scaling approach ( earlier post ), it will be able to produce high-octane carbon-negative (with the use of its bio-char byproduct) renewable gasoline at a cost of $1.50 per gallon, without the need for government subsidies. earlier post ).
Deepsea mining company TMC The Metals Company ( earlier post ) announced a strategic partnership with Low Carbon Royalties Inc. to finance the development and production of low-carbon fuels and energy transition metals. NORI and Low Carbon Royalties are a great fit.
The basis behind the new generation of ultracapacitor devices is Skeleton’s patented carbide-derived carbon (CDC) SkeletonC material, which enables the modification of pore size and structure at the single nanometer level. The low internal resistance of the nanostructured material raises the power density. silicon carbide, SiC).
Skeleton Technologies , an energy-storage start-up located in Tartu, Estonia, was recently awarded a US patent ( #7,803,345 ) on its nanoporous carbon powder supercapacitor material. Low internal resistance of the nanostructured material raises the power density.
million in funding for 12 projects as part of Phase 1 of the Advanced Research Projects Agency-Energy’s (ARPA-E’s) FLExible Carbon Capture and Storage (FLECCS) program. The post-combustion outlet gas is more easily separated into water and CO 2 to the pipeline, thereby lowering the electricity costs of grids with high levels of VRE.
Hydrogen can be produced, stored, transported and used in many ways—to power or recharge mobile devices; to power remote locations; to propel vehicles or electric boats; to store intermittent electricity; to increase the production of biofuels; and to reduce the carbon footprint of natural gas in networks.
The US Department of Energy’s (DOE) Office of Fossil Energy has selected seven projects to receive approximately $44 million in federal funding for cost-shared research and development through the funding opportunity announcement, Design and Testing of Advanced Carbon Capture Technologies. RTI International. SRI International.
The company’s distinctive HaaS model helps commercial fleets reduce costs and emissions with limited risk and no up-front investment. California’s Low-Carbon Fuel Standard fuel pathways report notes diesel fuel possesses a carbon intensity of 74.86g per megajoule of energy (g CO 2 /MJ).
A report published by Cambridge Econometrics and Ricardo-AEA concludes that overall, the cost of technologies required to meet proposed European 2020 CO 2 regulations for vehicles (95 g/km for cars and 147 g/km for vans) will be more than offset by the resultant fuel savings. —“An Economic Assessment of Low Carbon Vehicles”.
PACCAR, Cummins and several customers including FedEx Freight and Knight-Swift will demonstrate the ability to achieve lower carbon emissions for long-haul transport using internal combustion engine technology. The X15N is essential to our commitment to help customers reach net-zero greenhouse gas emissions and to improve NO x.
Stuart Licht ( earlier post ) report a process for the high-yield, low-energy synthesis of carbon nano-onions (CNOs) by electrolysis of CO 2 in molten carbonate. High yield electrolytic synthesis of carbon nano-onions from CO 2 , either directly from the air or from smoke stack CO 2 , in molten carbonate.
A team of international researchers led by Professor Cafer T. Qiang Xu of Southern University of Science and Technology (SUSTech) have developed a promising method for carbon capture and storage using a single-crystalline guanidinium sulfate-based clathrate salt. Xiang et al. Nguyen, Cafer T. 2023.101383
Hydrogen produced with renewable electricity could compete on costs with fossil fuel alternatives by 2030, according to a new report from the International Renewable Energy Agency (IRENA). The report— Green Hydrogen Cost Reduction: scaling up electrolyzers to meet the 1.5
The fuel supply can be freely combined according to user needs and the basic conditions of fuel production, storage and transportation, which is a highly adaptable, flexible and controllable zero-carbon/low-carbon power solution. Li Hanyang, Secretary of the Party Committee and Chairman of Yuchai Group, ignited YCK16H.
Africa can produce 50 million tons of green hydrogen a year by 2035, according to a new study by the European Investment Bank (EIB), International Solar Alliance and the African Union, with the support of the Government of Mauritania, HyDeal and UCLG Africa. This is equivalent to energy costs of US$60 a barrel.
an innovator in the field of enzyme-enabled carbon capture technology, announced that it has exceeded the second set of technical performance milestones for its oil sands project. CO 2 Solutions’ technology platform uses carbonic anhydrase to accelerate the capture of CO 2 with energy-efficient solvents. CO 2 Solutions’ process.
The US Department of Energy (DOE) awarded more than $3 million to Connecticut-based FuelCell Energy for a project to enhance the performance, increase the lifespan, and decrease the cost of stationary fuel cells being used for distributed generation and combined heat and power applications.
Researchers at the University of Michigan Transportation Research Institute (UMTRI) recently conducted an online survey of driver option to determine how receptive drivers would be to adopting—and how much they might pay for—in-vehicle technology that reduce carbon emissions. Views on transportation and carbon emissions.
The analysis combines process engineering, spatial optimization, and lifecycle assessment to consider the technical, economic, and institutional feasibility of near-term carbon capture and sequestration (CCS). An open-access paper on the work is published in Proceedings of the National Academy of Sciences (PNAS). —Sean McCoy.
Electrolysis of water using low-carbon electricity (“yellow” and / or “green” hydrogen) and steam reforming of methane in combination with carbon capture technologies (“blue” hydrogen) are considered as possible means for hydrogen production. —Evgeny Pakermanov, President of Rusatom Overseas JSC. Earlier post.).
Denmark has been a global leader in sustainability, and has pledged to reduce its carbon emissions by 70% by 2030. In the future, Geely Holding methanol vehicles will undergo EU certification and promotion to other European markets in support of accelerating the goal of reaching carbon neutrality.
The European Advanced Lead-Acid Battery Consortium (EALABC) is delivering a paper this week outlining the consortium’s approach to 48V hybridization at the 2 nd International Conference on Advanced Automotive 48V Power Supply Systems in Düsseldorf. Earlier post.)
In a study published in Nature Climate Change , an international research team reports finding limited evidence that individual or household rebates have increased public support for carbon taxes in Canada and Switzerland. —Mildenberger et al. Background.
US ammonia prices closely follow international ammonia prices because approximately 14% of total US ammonia consumption is met by imports. Because the global ammonia market is highly interconnected, the US price of ammonia closely follows international ammonia prices rather than only US natural gas prices.
The study provides a comprehensive analysis of the cost and greenhouse gas (GHG) emissions of a variety of vehicle-fuel pathways; the levelized cost of driving (LCD); and the cost of avoided GHG emissions. It is hard to overstate the importance of the improvements in battery costs on this analysis.
Cummins and Tata Motors signed a Memorandum of Understanding (MoU) to collaborate on the design and development of low- and zero-emission propulsion technology solutions for commercial vehicles in India, including hydrogen-powered internal combustion engines (H2ICE), fuel cells (FC), and battery electric vehicle (BEV) systems. Cummins B6.7H
Researchers at the University of Surrey (UK) are developing a process to capture carbon dioxide directly from the air and then use dynamic catalysis to create methanol—a valuable chemical that, made this way, could be carbon-negative. Its value could offset the cost of direct air capture. —Dr Duyar.
Other partners on the project are bp, capturing hydrogen usage and infrastructure requirements; Cambustion , testing the fuel cell system; Viritech , designing hydrogen storage systems; and Cygnet Texkimp , providing the pressure vessels’ carbon fiber tooling.
Governments need to move faster and more decisively on a wide range of policy measures to enable low-carbon hydrogen to fulfil its potential to help the world reach net zero emissions while supporting energy security, the International Energy Agency (IEA) says in a new report. —Fatih Birol, the IEA Executive Director.
This trend was already underway before the pandemic, due to cost-competitive gas in key sectors including power, industry and transport, and major regions including Europe, North America and Asia. Low-carbon gas. The development of an international hydrogen market could also accelerate adoption. —Jon Moore, CEO of BNEF.
The team projects that the high-efficiency vehicle will have a a minimum unit cost of only $1,400 to produce—the price of an average mountain bike—once the funding goal is reached. The VEGAN is a lightweight multipurpose hybrid electric-self-charging solar tricycle. The team has not yet produced a working demo for their concept.
In a fairly bleak assessment of global progress towards low-carbon energy, the International Energy Agency (IEA) concluded that, despite a few bright spots such as the rapid expansion of renewable technologies and the growth of hybrid and EV sales, the progress is far below that required to achieve a 2 °C pathway—i.e.,
The US Department of Energy (DOE) announced the award of approximately $72 million in federal funding to support the development and advancement of carbon capture technologies under two funding opportunity announcements (FOAs). Enabling Production of Low Carbon Emissions Steel Through CO 2 Capture from Blast Furnace Gases. Chevron USA.
78.09% nitrogen, 20.95% oxygen, 0.93% argon, 0.04% carbon dioxide, and small amounts of other gases) added—it is actually evacuated from the process so there is zero combustion inside the rotary reformer. In Steam CO 2 Reforming, there is no oxygen or air (i.e. 22 CCR § 66260.10 Definitions and 40 CFR § 260.10 Definitions).
20 nm) are selective toward the formation of carbon nanotubes (CNTs), while small Ni particle sizes (i.e., Solid carbon that accumulates on the catalyst is washed and separated for commercial use, while the metallic precursors are re-synthesized and recycled back into the reactor. Further, large Ni particle sizes (i.e., >20
Startup Mattershift says it has achieved a breakthrough in making carbon nanotube (CNT) membranes at large scale. The paper is a characterization study of commercial prototype carbon nanotube (CNT) membranes consisting of sub–1.27-nm-diameter nm-diameter CNTs traversing a large-area nonporous polysulfone film.
Results from a new study by researchers from the Universities of Bristol and Cambridge in the UK has suggest that the social cost of carbon dioxide is higher in a low economic growth world. The social cost of CO 2 measures the net present value of the extra damage caused by the emission of one more tonne of CO 2 today.).
The study provides a comprehensive lifecycle analysis (LCA), or cradle-to-grave (C2G) analysis, of the cost and greenhouse gas (GHG) emissions of a variety of vehicle-fuel pathways, as well as the levelized cost of driving (LCD) and cost of avoided GHG emissions. Levelized cost of driving (LCD). no scenario analysis.
The objective of the Hydrogen Production sub-program is to reduce the cost of hydrogen dispensed at the pump to a cost that is competitive on a cents-per-mile basis with competing vehicle technologies. Based on current analysis, this translates to a hydrogen threshold cost of. Source: DOE. Click to enlarge.
This approach significantly improves a PEM fuel cell’s durability and at the same time reduces the cost of a system. ACAL Energy’s technology reduces significantly the total cost and weight of a fuel cell and enables a competitive fuel cell drive-train with a power output of 100kW—equivalent to that of a 2-liter diesel engine.
For an EV with a 70-kWh pack, the cost of the battery is now RMB 12,300 - RMB 14,500 lower than when lithium carbonate prices were at their previous high, analysts say. Falling lithium carbonate prices are known to benefit the profitability of electric vehicle (EV) makers. So how will this price change affect the cost of EVs?
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