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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. There were notable installation restrictions for the TEG unit, and the gas temperature at the exhaust inlet pipe could not reach the target value.
The biocrude oil came from many different sources, including wastewater sludge from Detroit, and food waste collected from prison and an army base. The research showed that essentially any biocrude, regardless of wet-waste sources, could be used in the process and the catalyst remained robust during the entire run.
The UK’s largest bank, HSBC, is joining Virgin Atlantic and LanzaTech in supporting the preparation for a world-first flight using a low-carbon, synthetic jet fuel kerosene produced from industrial waste gases. Earlier post.).
By replacing 100% of the petroleum fuel used with decarbonized fuels such as ethanol, ClearFlame’s engine technology significantly reduces greenhouse gas emissions, particulate matter and smog, helping to meet stringent emissions regulations while reducing overall engine cost.
Virgin Atlantic announced the development of a low-carbon, synthetic jet fuel kerosene produced from industrial waste gases with half the carbon footprint of the standard fossil fuel alternative in partnership with LanzaTech and Swedish Biofuels. process recycles waste gases that would otherwise be burnt into the atmosphere as carbon dioxide.
Clean Energy Fuels Corp delivered 143 million gallons of Redeem Renewable Natural Gas (RNG) last year as robust sales of the carbon-neutral transportation fuel continued in 2019, closing out the year with significant deals throughout North America. In 2019 Clean Energy provided an estimated 16 million gallons of Redeem to UPS.
The Commonwealth Scientific and Industrial Research Organisation (CSIRO), Australia’s national science research agency, has 2 -based-power-generation-project/">joined the Joint Industry Partnership (JIP) of the Supercritical Transformational Electric Power (STEP) project known as STEP Demo.
It is home to a wide spectrum of technical disciplines and specific expertise in fields such as liquefied natural gas, subsurface modelling, data analysis, engineering design, bitumen, distillation and enhanced computational research.
Wastegas is one example of a source of syngas. We’re exploring third-generation biotechnology, because in addition to sugar or residual plant materials converted to syngas, waste from other sources such as municipal waste and industrial wastegas can also serve as raw materials.
Blue Marble Energy’s proprietary AGATE (Acid, Gas and Ammonia Targeted Extraction) system uses different bacterial consortia (“cassettes”) in an anaerobic fermentation process to produce a variety of biochemicals, including short-chain esters, amides and green anhydrous ammonia. It also generates renewable natural gas as a product.
Audi’s e-gas, earlier post ); it could also play an important role in the transition of the energy system and the stabilization of grids. Such a system could use natural gas, biogas, or hydrogen to generate electricity or produce combined heat and power. an e-gas system).
The first trials on the demo plant in Leuna were successfully completed, within schedule, in the fall of 2016 and Global Bioenergies announced first production of green isobutene via fermentation. Global Bioenergies is now entering the final phase of demonstrating its technology for converting renewable carbon into hydrocarbons.
The LanzaTech facility will recycle industrial waste gases from steel manufacturing to produce a low cost ethanol intermediate: “Lanzanol.” LanzaTech captures the wastegas from refineries and manufacturing plants and feeds the CO-rich gas to microbes that consume the gas and produce ethanol. Earlier post.).
LanzaTech’s gas fermentation technology ( earlier post ) is at the core of the new Horizon2020 Steelanol project (2015-2018), which seeks to produce bioethanol via an innovative gas fermentation process using exhaust gases emitted by the steel industry. million (US$16.3-million) Earlier post.) Earlier post.).
In partnership with its key technology providers InEnTec and LanzaTech, Aemetis successfully optimized the integration of an advanced arc furnace and gas fermentation technologies to convert waste biomass into low carbon, renewable cellulosic ethanol and fish meal.
The California Energy Commission awarded the Gas Technology Institute (GTI) a $1-million grant to demonstrate a production-intent advanced version of the Cummins Westport Inc. G natural gas engine. liter stoichiometric spark ignited (SI) natural gas engine now referred to as the ISB6.7 CWI) ISB6.7 g/bhp-hr emissions level.
LanzaTech; Baosteel Group Corporation,China’s largest steel and iron conglomerate; and the Chinese Academy of Sciences (CAS) have begun the construction of a plant that will use LanzaTech’s gas fermentation technology for the production of fuel ethanol from steel mill off-gases. Earlier post.)
In addition, the engine will emit 10% less CO 2 than the 2027 federal greenhouse gas requirement. 2017) “Developing a 55% BTE Commercial Heavy-Duty Opposed-Piston Engine without a Waste Heat Recovery System,” SAE Technical Paper 2017-01-0638 doi: 10.4271/2017-01-0638. California’s ultra-low NO x emissions standard is 0.02 Zermeno, R.,
Red Lion’s patented Waste to Energy (W2E) technology involves feedstock pyrolysis, followed by non-catalytic steam reforming which produces syngas with energy content ranging from 300- 450 BTU/SCF. The technology can be manipulated to produce syngas with different H 2 to CO ratios.
LanzaTech’s proprietary gas fermentation technology enables low cost production of sustainable alcohols and chemicals from wastegas resources that are completely outside the food value chain. A demo flight with the new fuel is planned in 12-18 months, with commercialization targeted for 2014. Earlier post.).
LanzaTech’s proposed gas-to-liquids platform. The development of the CO 2 fermentation system leverages LanzaTech’s existing reactor system and gas fermentation knowledge. Should the lab and pilot work prove successful and scalable, they will place a demo plant in Malaysia, Burton said. Source: LanzaTech. Click to enlarge.
Neste as the world’s leading producer of renewable diesel and sustainable aviation fuel refined from waste and residues sees Power-to-Liquids as a possible complementing technology for future sustainable fuel production. —Lars Peter Lindfors, Senior Vice President Innovation at Neste.
The BioBoost project concentrates on dry and wet residual biomass and wastes as feedstock for de-centralized conversion by fast pyrolysis, catalytic pyrolysis and hydrothermal carbonization to the intermediate energy carriers oil, coal or slurry. The fast pyrolysis and HTC processes of demo-size (0.5-1 above 1000 °C.
Gas Li-ion batteries thwart extreme cold South 8 Technologies demonstrates the cold tolerance of its Li-ion battery by burying it in ice at the 2024 ARPA-E Energy Innovation Summit. Emily Waltz Mining leaves behind piles of waste after the commercially viable material is extracted. Here are five of our favorite demonstrations.
Japan Canada Oil Sands Limited (JACOS), a consolidated subsidiary of JAPEX, is currently operating a demo plant at Hangingstone with approximately 8,000 barrels per day of bitumen production using SAGD (steam-assisted gravity drainage). infrastructure expansion to the site including a natural gas pipeline (by JACOS), diluent and diluted.
Honeywell’s UOP—a major international supplier and licensor of technology for petroleum refining, gas processing, petrochemical production and major manufacturing industries—has also been an early leader in developing technologies for the production of renewable drop-in hydrocarbon fuels. RIMPAC and Green Fleet demo.
Some of the features included in our technology can be traced back to the nineties when we designed and built several first-of-its-kind slurry-based coal liquefaction and supercritical CO 2 extraction demo units. Synthesis gas and hydrogen from infrastructure fuels. Synthesis gas and hydrogen from infrastructure fuels.
Maersk’s investment will be used to develop further and to commercialize Vertoro’s patented liquid lignin technology, and it will enable Vertoro to build a demo plant, which will become operational in 2022. These features are later transferred to the resulting materials, fuels or chemicals, thereby greatly improving their properties.
Demo Project for Multi-material light-weight prototype vehicle. Thermoelectric and enabling engine technology : Three projects awarded to improve the efficiency of thermoelectric devices to convert engine waste heat to electricity. These projects are being undertaken as part of the Clean Energy Dialogue with Canada. 10,000,000.
Global Bioenergies is developing and scaling up a synthetic biology process to produce isobutene from sugar, cereals, and agricultural or forestry waste instead. Industrial fermentation of a gas such as isobutene has numerous advantages, which will translate into a reduced OPEX.
The Altex process does not require the intermediate conversion of the feedstock into synthesis gas or pyrolysis liquids, plus it does not require hydrogen. coal, biomass, or waste—is heated in the absence of molecular oxygen to produce a solid containing char and ash and volatile gases. Carbonaceous materials—e.g.,
Applicants must site a demo facility in California that will produce a minimum of 50,000 gallons of bio-oil intermediate fuel over the term of the project. The deadline to submit applications is 13 October 2017. The CEC will hold a pre-application workshop on 25 August.
The ammonia reacts with oxygen in air to produce nitrogen gas and water, and the resulting force pushes against the walls of the box. If compression continues after the reaction happens, it fights against the pressure generated by the reaction, wasting energy. If compression stops too soon, the reaction never happens. That’s the LEM.
Other tire makers have shown concepts with much higher levels of sustainable content , but what makes the Primacy A/S demo tire different is that it’s production-ready. During pyrolysis, gas is captured, which can in turn be used to help heat the pyrolysis oven. According to information from the U.S.
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