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Fukushima Hydrogen Energy Research Field (FH2R) completed in Japan; aiming for low-cost green hydrogen production; P2G

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Renewable energy output is subject to large fluctuations, so FH2R will adjust to supply and demand in the power grid in order to maximize utilization of this energy while establishing low-cost, Green hydrogen production technology.

2020 360

SwRI, UTSA researchers show biochar is low-cost, effective method to treat fracking water

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Researchers at Southwest Research Institute (SwRI) and The University of Texas at San Antonio (UTSA) have determined that biochar, a substance produced from plant matter, is a safe, effective and inexpensive method to treat flowback water following hydraulic fracturing, or fracking. Flowback water treatment is a critical sustainability issue for the oil and gas industry. Using biochar could help oil and gas companies save money and responsibly treat flowback water for reuse.

2014 218

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GWU team demonstrates highly scalable, low-cost process for making carbon nanotube wools directly from CO2

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Researchers at George Washington University led by Dr. Stuart Licht have demonstrated the first facile high-yield, low-energy synthesis of macroscopic length carbon nanotubes (CNTs)—carbon nanotube wool—from CO 2 using molten carbonate electrolysis ( earlier post ). This synthesis consumes only CO 2 and electricity, and is constrained only by the cost of electricity. The process is constrained by the (low) cost of electricity.

2017 248

Thai researchers find waste chicken fat a good low-cost feedstock for renewable diesel

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In a study investigating the effect of the water and free fatty acid (FFA) content in waste chicken fat from poultry processing plants on the production of renewable diesel (not biodiesel), researchers in Thailand have found that both higher FFA and water content improved the biohydrogenated diesel (BHD) yield. However, the high content of free fatty acids (FFAs) and water in chicken fats/oil lead to an undesired reaction (i.e., 1, a water content 0?4

2015 214

Harvard team demonstrates new metal-free organic–inorganic aqueous flow battery; potential breakthrough for low-cost grid-scale storage

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In a paper in Nature , they suggest that the use of such redox-active organic molecules instead of redox-active metals represents a new and promising direction for realizing massive electrical energy storage at greatly reduced cost. Wide-scale utilization of flow batteries is, however, limited by the abundance and cost of these materials, particularly those using redox-active metals and precious-metal electrocatalysts. Cell schematic.

2014 299

Hydrexia and HyGear partner on low-cost hydrogen distribution in Europe; solid state storage and delivery

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The agreement between the two companies allows for development and supply of a complete hydrogen generation, storage and distribution system with a lower cost product for customers. Hydrexia is entering the European market in partnership with HyGear with the intention of becoming a distributor of the lowest cost hydrogen in Europe. According to Hydrexia, its systems are about half the capital cost ($/kg-H 2 ) of compressed hydrogen storage.

2015 184

AW-Energy entering green hydrogen market with wave energy device

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AW-Energy Oy is entering the commercial hydrogen market by introducing a combined WaveRoller and HydrogenHub process for the production of green hydrogen. Wave energy holds the greatest potential to generate constant low-cost green hydrogen.

ARPA-E awarding $33M to 10 projects for natural gas pipeline retrofitting: REPAIR

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REPAIR teams will develop natural gas transmission pipeline retrofitting technology to rehabilitate existing cast iron and bare steel pipes by creating new, robust pipes inside of old ones. Natural gas is a crucial energy source for 75 million American households and businesses. REPAIR teams will develop technology that enables gas utilities to update their distribution systems at low cost and continue to reliably service commercial and residential gas delivery needs nationwide.

2020 244

Nacero selects Topsoe’s TIGAS technology for gas-to-gasoline unit; reducing lifecycle carbon footprint up to 50%

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Nacero has licensed Topsoe TIGAS (Topsoe Improved Gasoline Synthesis) technology for its multi-billion USD natural-gas-to-gasoline facility in Penwell, Texas to produce 100,000 barrels per day of gasoline component ready for blending into US commercial grades. Fuels Natural Gas

DOE awards $25M to improve natural gas operations

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Department of Energy (DOE) selected 16 projects to receive nearly $25 million in federal funding for cost-shared projects to advance natural gas infrastructure technology development. These projects aim to develop tools, methods, and technologies to enhance cost-effectively the safety and efficiency of the US’ natural gas production, gathering, storage, and transmission infrastructure. Predictive Self-Healing Seals for Gas Transmission. The US.

2020 174

Graforce plasma electrolysis for efficient generation of hydrogen from industrial waste water; partnering with Audi

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Berlin-based Graforce Hydro GmbH, the developer of a plasma electrolyzer—the Plasmalyzer —is applying its technology for the highly efficient generation of hydrogen from industrial waste water. Mixing in biogas produces hydrogen-enriched compressed natural gas (HCNG)—a cost-effective, environmentally friendly fuel for vehicles that also generates electricity and heat. The current Plasmalyzer offers highly efficient water splitting.

2018 228

Borla Performance Industries developing muffler/membrane unit for exhaust water extraction with ORNL nanopore membrane technology

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Borla will combine this with its diesel exhaust technology to create a low-cost, novel system that doubles as a device to extract potable water from diesel and other internal combustion exhaust. The researchers at ORNL developed the membrane technology for applications such as gas separation, water purification, energy and water recovery from. For the recovery of previously wasted energy from relatively low temperature (. Emissions Materials Wate

Water 210

GEV and Pacific Hydro sign MoU to explore export of green hydrogen using new compressed H2 ship

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Both parties will work collaboratively on developing an export market and associated marine transport solution for green hydrogen utilizing GEV’s proprietary compressed hydrogen ship (C-H 2 ship) and supply chain. Location of the Ord Hydrogen Project & proximity to export markets.

Ground-breaking on Haru Oni eFuels plant|in Chile; Porsche to use in motor sports from 2022

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With Haru Oni, we’re bringing our power-to-X technologies to the global market. neutral fuel using low-cost green wind power. In the first step, electrolyzers split water into oxygen and green hydrogen using wind power.

Chile 332

Bosch boosts stake in SOFC expert Ceres Power to around 18%; possible expansion into SO electrolysis

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This enabled Bosch to start initial low-volume production of pilot fuel-cell systems in autumn 2019 in Germany. Fuel Cells Hydrogen Hydrogen Production Market Background Power-to-GasBosch has increased its stake in solid-oxide fuel-cell (SOFC) developer Ceres Power from 3.9%

2020 259

Energy Vault to provide 1.6 GWh of gravity energy storage to support DG Fuels SAF projects

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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.

Primus Green Energy produces 100-octane gasoline at commercial demonstration gas-to-liquids plant; improvement to STG+ technology

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a gas-to-liquids (GTL) technology and solutions company that transforms methane and other hydrocarbon gases into gasoline and methanol ( earlier post ), has successfully produced 100-octane gasoline at its commercial demonstration plant in Hillsborough, New Jersey. There is also potential for this high octane gasoline to address the needs of the 100LL aviation gasoline (avgas) market, totaling 150-200 million gpa in the United States. Liquid/Gas Separation.

2016 183

Haldor Topsoe to build large-scale SOEC electrolyzer manufacturing facility to meet customer needs for green hydrogen

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With efficiencies above 90%, Topsoe’s proprietary SOEC electrolyzers offer superior performance in electrolysis of water into hydrogen—e.g., The SOEC is a ceramic cell that uses electricity to split water molecules (H 2 O) into hydrogen (H 2 ) and oxygen (O 2 ).

DOE announces approximately $64M in funding for 18 projects to advance H2@Scale

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The projects will feature collaborations with EERE’s Advanced Manufacturing Office on manufacturing reliable and affordable electrolyzers and with EERE’s Vehicle Technologies Office on developing low-cost, high-strength carbon fiber for hydrogen storage tanks. Other areas of focus include identifying durable and cost-effective fuel cell systems and components for medium- and heavy-duty trucks. Carbon Composite Optimization Reducing Tank Cost.

2020 260

DOE issues RFI on advanced thermal insulation for cold/cryogenic compressed gas on-board fuel storage

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Alternative fuels could include hydrogen or natural gas stored onboard the vehicle at sub-ambient temperatures as a compressed gas, liquefied gas or adsorbed onto a porous material. While 700 bar compressed hydrogen storage provides a near‐term commercialization pathway, the performance of this storage technology falls short of the DOE onboard FCEV hydrogen storage targets, particularly for volumetric hydrogen energy density and system cost.

2015 184

Maverick Synfuels introduces affordable small-scale methane gas-to-liquid modular methanol plants

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The Maverick Oasis system allows producers to monetize biogas and natural gas (including associated or flare gas, and stranded gas reserves), as an alternative to producing electricity or venting greenhouse gases into the atmosphere. The Maverick Oasis factory-built Gas-to-Liquids (GTL) methanol plants are modular, and can be rapidly deployed onsite to produce thousands of gallons per day of methanol from natural gas or methane-rich waste gas.

2014 185

New German ecoPtG project seeks to make power-to-gas commercially viable with help of automotive technology

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In collaboration with engineering partner IAV, the Zentrum für Sonnenenergie- und Wasserstoff-Forschung Baden-Württemberg (Centre for Solar Energy and Hydrogen Research Baden-Württemberg, ZSW); the Reiner Lemoine Institut (RLI); and Wasserelektrolyse Hydrotechnik (HT) are researching cost-effective methods of producing hydrogen with the help of automotive technology. In the ecoPtG project, the researchers and engineers are developing an alkaline water electrolyzer with an output of 100 kW.

2016 150

LanzaTech, Harsco ally to develop ethanol from steel gas process

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at Harsco’s world headquarters in Pennsylvania, taps into Harsco’s leadership serving the worldwide steel industry, in combination with LanzaTech’s proprietary bioenergy technologies for reducing the carbon footprint of integrated steelmaking operations by converting waste gas to ethanol and high value chemicals. LanzaTech gas-to-liquids platform. The water is recovered and returned to the reactor system, minimizing water discharge from the process.

2011 185

Audi A4 and A5 now available to order as g-tron in Europe; Audi e-gas for 3 years as standard

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Audi’s two latest natural-gas alternatives in the midsize category—the new A4 Avant g-tron ( earlier post ) and the new A5 Sportback g-tron—are now available for order in Europe. Like the A3 Sportback g-tron that is already on the market ( earlier post ), they can run on a choice of the climate-friendly fuel Audi e-gas, conventional CNG (compressed natural gas) or gasoline. mi) on natural gas in the NEDC cycle. lb) of gas at a pressure of 200 bar.

2017 150

CalSEED awards $4.2M to early-stage clean energy innovations

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million: ALD Technical Solutions is developing light-weight, easy-to-install, long-lasting, and cost-effective structural composite reinforcement system which will be installed and cured-in-place around existing Aluminum Conductor Steel Reinforced transmission lines to increase power capacity and power efficiency, and also decrease sag. This novel technology would deliver safe, reliable, resilient, and cost-effective electric power in the grid. the cost of energy storage?by

2020 290

LADWP joins HyDeal LA, targets green hydrogen at $1.50/kg by 2030

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The Green Hydrogen Coalition, in conjunction with the Los Angeles Department of Water and Power (LADWP) and other key partners, launched HyDeal LA , an initiative to achieve at-scale green hydrogen procurement at $1.50/kilogram in the Los Angeles Basin by 2030. Hydrogen Hydrogen Production Market Background

UK awards £28M for 5 demonstration-phase low-carbon hydrogen production projects

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million) to five demonstration phase projects for low-carbon hydrogen production. The project concerns the production of hydrogen at scale from offshore floating wind in deep water locations. HyNet – low carbon hydrogen plant. Hydrogen Hydrogen Production Market Background

2020 317

Separate MIT, IEA reports both outline major expansion in role of natural gas; caution on climate benefits

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World primary energy demand by fuel in the IEA high gas scenario. Given the abundance of natural gas available through large global resources and the recent emergence of substantial unconventional supplies in the United States, worldwide usage of the fuel is likely to continue to grow considerably and contribute to significant reductions of greenhouse gas emissions for decades to come, according to a multidisciplinary 3-year study by MIT researchers.

2011 185

DOE announces $11.5M in Phase 1 funding for carbon capture and storage program; ARPA-E FLECCS

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FLECCS project teams will work to develop carbon capture and storage (CCS) processes that better enable technologies, such as natural gas power generators, to be responsive to grid conditions in a high variable renewable energy (VRE) penetration environment. FLECCS project teams are developing CCS retrofits to existing power generators as well as greenfield systems that intake fossil carbon-containing fuel like natural gas or bio-gas and output electricity.

2020 268

Wanxiang and GreatPoint Energy close $1.25B deal for 1 Tcf/year coal-to-natural-gas plant in Xinjiang; Sinopec to purchase output, building pipeline to east

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billion from Wanxiang to finance and construct the first phase of a coal-to-natural gas facility that ultimately will have an annual production capacity of one trillion cubic feet (1 Tcf) (30 billion cubic meters) per year. The first phase is expected to commence operation in 2015 with an initial annual natural gas production capacity of 30 billion cubic feet (0.85 billion cubic meters) of annual natural gas output within two years. China Coal Natural Gas

2012 196

PNNL IntelliVent system reduces risk of explosions in outdoor battery cabinets

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The deflagration-prevention system combines automatically controlled door locks with a smart controller that manages signals from fire safety inputs, such as smoke, heat, or gas detectors. Getting all doors open early before gas buildup will make the incident safer.

Snam and RINA team up to accelerate the development of hydrogen sector

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Introducing hydrogen into energy networks represents the first step for spreading and developing green hydrogen from renewable sources, while reducing its costs. Hydrogen will achieve Total Cost of Ownership parity with diesel by 2030, even without additional incentives.

2020 326

BHP offboards its petroleum business in merger with Woodside; focus on “future-facing commodities”

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Anglo-Australian BHP Group is merging its oil and gas business with Woodside Petroleum Ltd. 2P reserves of more than 2 billion boe comprising 59% gas, and 41% liquids. Market Background Mining Oil

Future 209

EIA: US electricity generation from coal and natural gas both increased with summer heat

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In August 2012, coal produced 39% of US electricity, up from a low of 32% in April 2012, when the natural gas share of generation equaled that of coal. Increased demand for electric power in the summer months—to run air conditioners—created more room in the market, and generation from both fuels increased between April and July, according to the US Energy Information Administration (EIA).

2012 204

Vertimass receives up to $2M from DOE for conversion of ethanol into gasoline, diesel and jet blendstocks; expanding the ethanol market

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Operation at relatively low temperature and atmospheric pressure. The ability to shift product distributions in response to changing market demands. Traditionally, ethanol has been considered too low in density for jet fuel; Vertimass and ORNL’s catalyst technology has overcome that issue with no modifications required. Vertimass thus seeks to expand the ethanol gas market, while creating an outlet for the use of ethanol as a precursor to the diesel and jet fuel markets.

2014 210

DOE awarding more than $50M to 15 projects to advance critical material innovations

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Projects selected under this funding opportunity announcement will reduce both the costs of critical materials and the environmental impacts of production. Eleven projects were selected under this topic to develop early to mid-stage R&D alternative, cost-competitive technologies for upstream extraction and midstream separation and processing of critical materials key to energy technologies. DOE funding: $5,577,738; cost share: $5,925,475; Total costs: $11,503,213.

OYSTER consortium receives €5M funding to investigate offshore hydrogen production

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To realize the potential of offshore hydrogen production, there is a need for compact electrolysis systems that can withstand harsh offshore environments and have minimal maintenance requirements while still meeting cost and performance targets that will allow production of low-cost hydrogen. Furthermore, the electrolyzer system will integrate desalination and water treatment processes, making it possible to use seawater as a feedstock for the electrolysis process.

BNEF report finds hydrogen promising decarbonization pathway, but carbon prices and emissions policies required

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The falling cost of making hydrogen from wind and solar power offers a promising route to cutting emissions in some of the most fossil-fuel-dependent sectors of the economy, such as steel, heavy-duty vehicles, shipping and cement, according to a new report from BloombergNEF (BNEF).

2020 209

DOE Coal FIRST Initiative invests $80M in net-zero carbon electricity and hydrogen plants

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The US Department of Energy’s (DOE) Office of Fossil Energy (FE) has selected four projects for cost-shared research and development under the funding opportunity announcement (FOA), DE-FOA-0002180, Design Development and System Integration Design Studies for Coal FIRST Concepts. These plants will be fueled by coal, natural gas, biomass, and waste plastics and incorporate carbon capture, utilization and storage (CCUS) technologies.

2020 170

CSIRO joins US sCO2-based power generation project STEP demo

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The STEP project seeks to demonstrate power generation plants enabled by supercritical carbon dioxide (sCO 2 ) technology that can offer dramatically improved efficiencies, economics, and environmental performance, and can play an important role as low-carbon energy evolves. Using sCO 2 as a power cycle working fluid instead of steam/water will lower capital expenditures and reduce plant size and footprint. Carbon Capture and Conversion (CCC) Market Background Power Generation

2020 161

Pinto Energy to build 2,800 bpd small-scale GTL plant in Ashtabula; Velocys microchannel technology

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Pinto Energy LLC (Pinto), a developer of smaller scale Gas-to-Liquids (GTL) facilities, will build a 2,800 barrel per day (bpd) GTL plant at Pinto’s 80-acre industrial site to the east of Ashtabula, Ohio. The plant will convert abundant low-cost natural gas from the Utica and Marcellus shale region into high-value specialty products (solvents, lubricants and waxes), as well as transportation fuels. Fuels Gas-to-Liquids (GTL

2013 214

IEA: Petrochemicals set to be the largest driver of world oil demand

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Petrochemicals—components derived from oil and gas that are used in all sorts of daily products such as plastics, fertilizers, packaging, clothing, digital devices, medical equipment, detergents and tires—are becoming the largest drivers of global oil demand, in front of cars, planes and trucks, according to a major study by the International Energy Agency (IEA). cost center for many key petrochemicals, with a host of new projects announced across the region.

2018 233

DOE awarding $72M to 27 projects to develop and advance carbon capture technologies, including direct air capture

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Under this cost-shared research and development (R&D), DOE is awarding $51 million to nine new projects for coal and natural gas power and industrial sources. Under the first FOA (DE-FOA-0002187), Capture Research and Development (R&D): Engineering Scale Testing from Coal- and Natural-Gas-Based Flue Gas and Initial Engineering Design for Industrial Sources, DOE selected nine projects to receive $51 million for cost-shared R&D.

2020 203