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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.
The International Maritime Organization (IMO) Marine Environment Protection Committee (MEPC) has approved draft new mandatory regulations to cut the carbon intensity of existing ships. The draft amendments to the MARPOL convention would require ships to combine a technical and an operational approach to reduce their carbon intensity.
This reduction is achieved through a closed-loop carbon recycling system, which could replace 90% of the coke typically used in current blast furnace-basic oxygen furnace systems and produces oxygen as a byproduct. The perovskite can be regenerated to its original form in a chemical reaction that takes place in a low oxygen environment.
At its recent “Kia Sustainability Movement” virtual presentation, Kia Corporation announced a commitment to achieve carbon neutrality throughout its value chain by 2045. Achieving carbon neutrality will be based on three key pillars: Sustainable Mobility; Sustainable Planet; and Sustainable Energy. Earlier post.).
Researchers from Trinity College Dublin have shed new light on the formation mechanisms of a rare earth-bearing mineral that is in increasingly high demand across the globe for its use in the green energy and tech industries. Vegetation appears red, grassland is light brown, rocks are black, and water surfaces are green. Image: NASA.
Chemical engineers at UNSW Sydney and University of Sydney have developed a hybrid plasma electrocatalytic process for the production of sustainable (“green”) ammonia. Traditional production of ammonia via the Haber-Bosch process consumes about 2% of the world’s energy and accounts for 1% of the industrial world’s carbon dioxide emissions.
To meet the International Maritime Organization’s (IMO) timeline for carbon emission reduction, many of the world’s 100,000 vessels will need to convert to low-carbon fuel by 2035—making the development of a viable retrofit and new build system a high priority. Bibby Wavemaster 1, the model vessel.
In the process, described in an open-access paper in the RSC journal Green Chemistry , recombinant Synechocystis sp. The team optimized the production system by varying different parameters, such as radiance, inorganic carbon level, and periodicity of medium renewal. doi: 10.1039/D0GC01830A.
The resulting 12-sided carbon nanospheres had “bumpy” surfaces that demonstrated excellent electrical charge transfer capabilities. The resulting 12-sided carbon nanospheres had bumpy surfaces that demonstrated excellent electrical charge transfer capabilities. —Lu et al. C and maintained 85.9%
On 26 July, the first flue gas from the natural gas power plant, the Shepard Energy Center in Calgary, Canada, was directly transformed by the C2CNT process ( earlier post ) into carbon nanotubes. Carbon nanotubes grown by C2CNT directly from carbon dioxide (SEM and TEM imaging). Left and center. Earlier post.).
Based on the work, Keliber’s lithium hydroxide will have a smaller carbon footprint than most of the competitors’ products. The two production routes that show the greatest emissions intensity represent well over half of the current global production of lithium carbonate and hydroxide. Keliber plans to begin production in 2024.
Tests conducted by Titirici Group , a multidisciplinary research team based at Imperial College London, have found that a novel carbon nanotube electrode material derived from CO 2 —produced by Estonian nanotech company UP Catalyst ( earlier post )—enhances the cyclability of sodium-ion batteries. From every 3.7
As part of the study, Woodside will be investigating the transition from blue to green hydrogen for export. Blue hydrogen is produced from gas using steam methane reforming, with related carbon emissions offset. Green hydrogen is produced from renewable energy using electrolysis.
jointly announced that, toward the achievement of carbon neutrality, they will take on the challenge of expanding fuel options through the use of internal combustion engines at the (three-hour) Super Taikyu Race in Okayama on 13-14 November. Participating in races using carbon-neutral fuels. Kawasaki Heavy Industries, Ltd.,
Arunachal Pradesh Flags Off 10 EKA Electric Buses on World Environment Day, Boosting Green Mobility In a significant step towards sustainable public transportation, Arunachal Pradesh Chief Minister Shri Pema Khandu flagged off 10 electric buses on World Environment Day.
By combining the benefits of supercapacitors and traditional lithium-ion batteries, the new lithium-carbon technology enables a full charge to be delivered in a similar time to refuelling an internal combustion-powered vehicle. Lithium-carbon battery.
SSE vehicles work in a wide variety of operational roles and conditions, from maintaining the electricity network spanning central southern England and the north of Scotland, to navigating the diverse and challenging environments of its hydro and onshore wind farm sites. First Hydrogen Corp.
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. Synergistic Heat Pumped Thermal Storage and Flexible Carbon Capture System - $1,000,000. The US Department of Energy announced $11.5 Colorado State University.
Hydrogen-based direct reduced iron (H 2 -DRI) is an alternative pathway for low-carbon steel production. Yet, the lack of established process and business models defining “green steel” make it difficult to understand what the respective H 2 price has to be in order to be competitive with commercial state-of-the-art natural gas DRI. …
The US Department of Energy (DOE) will award up to $24 million for research into technology that captures carbon emissions directly from the air, replicating the way plants and trees absorb CO 2. ( DOE supports the search for carbon removal solutions at both the basic and applied science levels. DE-FOA-0002481 ).
will create a 50/50 joint venture to develop carbon-negative renewable natural gas (RNG) production facilities in the United States, as well as credit support to build additional downstream RNG fueling infrastructure. Carbon-negative RNG is being used today by thousands of vehicles with more and more fleets requesting it every week.
Researchers at Monash University in Australia have conducted a lifecycle analysis and net energy analysis (LCA/NEA) of a hypothetical large-scale solar-electrolysis plant for the production of green hydrogen. The open-access paper on the study is published in the RSC journal Energy & Environmental Science. Palmer et al.
Virginia Tech researchers, in collaboration with Pacific Northwest National Laboratory, have discovered that key parts of the global carbon cycle used to track movement of carbon dioxide in the environment are not correct, which could significantly alter conventional carbon cycle models.
In this study, their tendency for a unique chemical structure allows the synthesis of the “high-performance” single atomic Ru alloy present atop the stable cobalt iron (Co-Fe) metallic composite surrounded by porous, defective and graphitic carbon shell. This study takes us a step closer to a carbon-free, and green hydrogen economy.
has created a wholly-owned subsidiary, NetZero Metals, to begin the research and development of a processing facility that would be located in the Timmins, Ontario region with the goal of utilizing existing technologies to produce zero-carbon nickel, cobalt and iron products. Canada Nickel Company Inc.
Previous generation methanol vehicles faced difficulties with cold starts but with Geely Auto’s NordThor Power (previously called Leishen Power) hybrid technology and the latest generation methanol powertrains, issues with extreme cold environment performance have been eliminated, the company said.
DHL Global Forwarding, the air and ocean freight specialist of Deutsche Post DHL Group, says it will be neutralizing the carbon emissions of all less-than-container load (LCL) ocean freight shipments from 1 January 2021. This is why we have taken the decision to neutralize the carbon emission of all our LCL shipments.
The companies are joining efforts to implement the carbon-negative UBQ thermoplastic ( earlier post ) into auto parts manufactured by Motherson Group for the automotive industry. Adding as little as 10% UBQ GHG to a part can immediately transform it into a carbon-neutral product. Polymers typically emit 1.9
Canada Nickel Company announced that its latest test work results support the incorporation of carbon capture and storage into the Crawford Project.The company’s In-Process Tailings (IPT) Carbonation process is a novel method for accelerated carbon capture and storage. IPT Carbonation – Crawford Nickel Project.
These zero-emission buses are now set to redefine urban transport across Delhi, aligning with the nation’s ambitious vision for a Green Viksit Bharat. These zero-emission buses are now set to redefine urban transport across Delhi, aligning with the nation’s ambitious vision for a Green Viksit Bharat.
Lithium carbonate’s premium over lithium hydroxide in the Chinese domestic market, seen in the first quarter of 2021, is beginning to narrow, as shifting cathode chemistry demand continues to support hydroxide prices in China while carbonate gains soften amid limited spot transactions, according to Benchmark Mineral Intelligence.
Solid-state batteries could reduce the carbon footprint of electric vehicle batteries by up to 39%, according to a study commissioned by European environmental NGO Transport & Environment (T&E) from Minviro , a company specializing in raw material life-cycle analysis, which compared emerging solid-state technology to current battery chemistries.
The findings revealed unevenness between built-up areas expansion (BUAE), which reflects the pace of infrastructure development, and urban population growth among the cities; and a widening gap between rapid urban population growth and slow urban greening, represented by features including new parks, green spaces and green roofs.
sulfur phase within carbon nanofibers that enables successful operation of Lithium-Sulfur (Li-S) batteries in carbonate electrolyte for 4000 cycles. Carbonates are known to adversely react with the intermediate polysulfides and shut down Li-S batteries in first discharge. sulfur and its application in Li-S batteries.
A study by researchers at CU Boulder and Edinburgh Napier University finds that high-density, low-rise environments such as those found in Paris are the optimal urban form when looking to reduce greenhouse gas emissions over their whole life cycle. There is a growing belief that building taller and denser is better. —Pomponi et al.
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.).
Urban planners should plant hedges—or a combination of trees with hedges—rather than just relying on roadside trees if they are most effectively to reduce pollution exposure from cars in near-road environments, according to a new study from the University of Surrey. Atmospheric Environment doi: 10.1016/j.atmosenv.2018.12.036.
Electrochemical reduction of carbon dioxide (CO 2 ) is a promising approach to solve both renewable energy storage and carbon-neutral energy cycle. In order to improve the economic feasibility in applications, electrocatalytic CO 2 reduction with high activity, selectivity, and stability toward multi-carbon products should be realized.
University of Delaware engineers have demonstrated an effective way to capture 99% of carbon dioxide from the ambient air feed to an hydroxide exchange membrane fuel cell (HEMFC) air using a novel electrochemical system powered by hydrogen. The research team, led by UD Professor Yushan Yan, reported their method in Nature Energy.
This version, with expected full production in 2027, pairs with clean, zero-carbon hydrogen fuel, a key enabler of Cummins’ strategy to go further faster to help customers reduce greenhouse gas (GHG) emissions. Reducing well-to-wheels carbon emissions requires innovation of both energy sources and power solutions.
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. Methane hydrate is studied for its ability to capture and trap gas molecules such as carbon dioxide under high pressure. Xiang et al.
CO 2 emissions from private jets in Europe increased by nearly a third (31%) between 2005 and 2019, rising faster than commercial aviation emissions, according to a new report from environmental campaign group Transport & Environment (T&E). Flying on a private jet is probably the worst thing you can do for the environment.
Independent research into electric vehicle (EV) development has found that most automotive companies are more focused on improving electric car range and reducing costs than improving the vehicles’ carbon footprint, despite mounting scrutiny of their hidden environmental impacts.
The guayule race tire, featuring a new green sidewall, will be introduced during the Indy 500 Pit Stop Challenge, streamed live on Peacock, on 27 May at 2:30 p.m. Guayule is part of the Bridgestone plan to achieve carbon neutrality and make tires from 100% renewable materials by 2050. Earlier post.).
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