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By using a water-lean post-combustion capture solvent, (N-(2-ethoxyethyl)-3-morpholinopropan-1-amine) (2-EEMPA), they achieved a greater than 90% conversion of captured CO 2 to hydrocarbons—mostly methane—in the presence of a heterogenous Ru catalyst under relatively mild reaction conditions (170 °C and 2 pressure). Heldebrant, D.,
The two main components—the electrochemical conversion hardware through which the fluids are flowed (which sets the peak power capacity) and the chemical storage tanks (which set the energy capacity)—may be independently sized. The design permits larger amounts of energy to be stored at lower cost than with traditional batteries.
developer of a low-cost hybrid electric powertrain designed specifically for class 1-3 commercial fleet use ( earlier post ), has signed an agreement with Henley Transmission Services, LLC, the largest franchise holder of AAMCO automotive service centers, to certify AAMCO technicians to install and service XL Hybrids’ hybrid-electric conversions.
A team led by Dr. Michael Grätzel at EPFL (Ecole Polytechnique Fédérale de Lausanne) in Switzerland has developed a highly efficient and low-cost water-splitting cell combining an advanced perovskite tandem solar cell and a bi-functional Earth-abundant catalyst. Jingshan Luo, post-doctoral researcher, explains how. Credit: EPFL.
LeMond Composites, founded by three-time Tour de France champion Greg LeMond, has licensed a low-cost, high-volume carbon fiber manufacturing process developed at the US Department of Energy’s Oak Ridge National Laboratory (ORNL). Earlier post.)
Researchers at the University of Bristol (UK) have developed a new family of catalysts that enables the conversion of ethanol into n-butanol—a higher alcohol with better characteristics for transportation applications than ethanol—with selectivity of more than 95% at good conversion. —Professor Duncan Wass.
developer of a low-cost hybrid electric powertrain designed specifically for class 1 to 3 commercial fleet use ( earlier post ), signed a non-exclusive installation partnership and distribution agreement with Leggett & Platt Commercial Vehicle Products (CVP), one of the top commercial vehicle upfitters.
a global supplier of hydrogen fuel cell-powered commercial vehicles, announced a joint venture to build up to 100 hydrogen hubs across the United States and globally. into locally produced, renewable hydrogen for Hyzon’s fleet of zero-emission commercial vehicles. Raven SR , a renewable fuels company, and Hyzon Motors Inc.,
and The Linde Group will expand their partnership to commercialize a new industrial-scale conversion technology needed to upgrade algae biomass into crude oil. The agreement spans a minimum of five years through the development of Sapphire Energy''s first commercial scale, algae-to-energy production facility.
The Ni-B i films can be prepared with precise thickness control and operate at modest overpotential providing an alternative to the Co catalyst for applications in solar energy conversion. The original discovery has already led to the creation of a company, called Sun Catalytix, that aims to commercialize the system in the next two years.
Conversion method. The Protein GPS protein engineering system designs proteins with specific, commercially-relevant characteristics. Calysta will use proprietary genetic optimization algorithms to enable the efficient development of bacteria which can convert methane to a variety of alkane fuels. Carbon feedstock. Photosynthesis.
Asphaltenes are thus deemed as low-value by-products with little to no real-world application and commercial use in today’s market. Worldwide reserves of asphaltenes are currently estimated to be between 1 to 2 trillion barrels; poor biodegradability, ignitability, and reactivity raise concerns over their reuse and/or disposal.
The new work outlines a research program to improve the efficiency of these systems, and could quickly lead to the production of a practical, inexpensive and commercially viable prototype. The original demonstration leaf in 2011 had low efficiencies, converting less than 4.7% Earlier post.) of sunlight into fuel. —Winkler et al.
The new PNNL carbon capture and conversion system brings the cost to capture CO 2 down to about $39 per metric ton. This is the first known demonstration of integrated low-temperature thermocatalytic capture and conversion of CO 2 to methanol in an economically viable CO 2 capture solvent. —Kothandaraman et al.
Ethanol conversion to hydrocarbons as a function of temp. Benefits of the catalyst technology include: A single step conversion of ethanol into a hydrocarbon blend stock without the addition of hydrogen. Graph showing hydrocarbon distribution in product stream of 10% ethanol after catalytic conversion over Cu-ZSM-5 at 400° C at 12.5
Joule has developed a highly modular system using highly engineered photosynthetic organisms to catalyze the conversion of sunlight and CO 2 directly to liquid hydrocarbons and ethanol ( earlier post ). Joule Fuels will initially commercialize Sunflow-E, with Sunflow-D for the global diesel market to follow. —William J.
Solid oxide electrolysis cell (SOEC) technology is attractive because of unrivaled conversion efficiencies—a result of favorable thermodynamics and kinetics at higher operating temperatures. The SOEC is mainly built of abundant and low-cost ceramic materials in a metal housing. The facility is expected to be operational by 2023.
The conversion rate reaches 32.9 ± 1.38 This one-step nitrogen-fixation strategy to produce ammonia is eco-friendly and lowcost, which converts widely available starting materials into a value-added product. The resulting splash of microdroplets enters a mass spectrometer and is found to contain ammonia (NH 3 ).
DE-FOA-0002423 ) Topic Areas ins the FOA support DOE’s Bioenergy Technologies Office’s (BETO’s) objectives to reduce the minimum selling price of drop-in biofuels, lower the cost of biopower, and enable high-value products from biomass or waste resources. Development of novel methods for rapid/real-time measurements.
Solid Power’s proprietary sulfide solid electrolyte powers the flexible All-Solid-State Platform that can enable both high-content silicon and lithium metal in the anode paired with industry-standard and commercially mature cathodes, including lithium nickel manganese cobalt oxides (NMC).
the largest EPC companies in Brazil specializing in sugar cane processing, and GeoSynFuels, LLC (GSF) recently formed a strategic alliance for the development and commercialization of GSF’s proprietary cellulosic ethanol technology. Sermatec Zanini, one of. The strategic alliance allows Sermatec Zanini to. Biochemical and biofuel pathways.
In a 2012 presentation, the inventors said that the direct conversion process delivers a liquid hydrocarbon fuel yield of ~54-55% at 310°C, with ~6-7% ethylene and ~39% water byproducts, making the technology more cost-effective than previous approaches. Catalytic conversion of to hydrocarbons (2012). —Chaitanya Narula.
a cellulosic sugar producer ( earlier post ), has signed a letter of intent with China-based Global Bio-chem Technology Group Company Limited to develop and to commercialize processes to convert corn stover to industrial sugars for use in the production of chemicals, fuels, and other bio-based products. Edeniq, Inc.,
This project will expand Anovion’s existing manufacturing capacity in Sanborn, NY—notably the only qualified US source of battery-grade synthetic graphite commercially shipping product today. Albemarle is finalizing the site selection for the lithium hydroxide conversion plant in the southeastern United States.
developer of a low-cost hybrid electric powertrain designed specifically for class 1 to 3 commercial fleet use ( earlier post ), signed a one-year supply agreement with Johnson Controls, Inc. kWh Li-ion packs for use in XL’s aftermarket hybrid conversion system. XL Hybrids, Inc.,
In collaboration with NE, DOE’s Hydrogen and Fuel Cell Technologies Office will provide funding and project oversight for the two hydrogen production–related projects that were selected: General Electric Global Research, Scaled Solid Oxide Co-Electrolysis for Low-Cost Syngas Synthesis from Nuclear Energy.
V for neutral NaAlCl 4 ) contributed by the acidic chloroaluminate cathode reaction, unlocking an additional specific energy of ∼119 Wh kg −1 by utilizing the conversion of NaAlCl 4 to NaAl 2 Cl 7 , which adds to the neutral melt reaction between NaAlCl 4 /Al and Na (∼493 Wh kg −1 theoretical). mAh cm −2 , a discharge duration of 28.2
This discovery paves the way for sustainable, low-cost hydrogen that could be produced locally rather than in massive centralized plants. Syzygy has licensed Rice’s antenna-reactor technology, and the study included scaled-up tests of the catalyst in the company’s commercially available, LED-powered reactors.
We’re about to enact the “Home Star” and “Building Star” programs—putting people to work on “Cash for Caulkers” retrofits that will make buildings more comfortable and cut owners’ fuel costs. Cash for Conversions” will start by fixing many of our 100 million trucks, vans, and buses. Tags: Conversions Perspective Plug-ins.
The collaboration aims to attain mutual recognition of the future integration of Nanoramic and RecycLiCo technologies in commercial operations. RecycLiCo Battery Materials and Nanoramic Laboratories announced a strategic collaboration with the goal of optimizing the complete life cycle of lithium-ion batteries.
Researchers at Georgia Tech have developed a promising new conversion-type cathode and electrolyte system that replaces expensive metals and traditional liquid electrolyte with lower cost transition metal fluorides and a solid polymer electrolyte. A paper on their work is published in the journal Nature Materials. —Huang et al.
Researchers in Europe, with colleagues from Samsung R&D Institute in Japan, have developed a highly stable Fe 3 O 4 /C composite for use as a conversion electrode in all-solid-state Li-ion batteries. In addition, recently a new chemistry has surfaced, allowing to store more Li + by the so-called conversion mechanism.
the developer of a Consolidated Bioprocessing (CBP) platform for low-cost production of cellulosic ethanol using the Q-microbe ( earlier post ), have formed a strategic partnership to accelerate commercialization efforts for industrial-scale cellulosic ethanol production. India-based Praj Industries Limited and Qteros, Inc.,
Conversion efficiency improved with scale, demonstrating the feasibility of integrating all biomass conversion unit operations within the biorefinery. With further intensification and optimization, this process is a promising new approach towards commercial production of low-cost and low-impact lignocellulosic biofuels.
an emerging natural gas production company which uses proprietary technology to convert both underground and mined low-rank coal to pipeline-quality methane biochemically at large scale and lowcost, has raised equity in its second round of financing, led by new investor Khosla Ventures. Ciris Energy, Inc.,
In collaboration with Alphabet Energy, they will develop a cost-effective process for creating an advanced thermoelectric material constructed from silicon nanowire arrays. Commercially available thermoelectrics achieve less than 5 percent efficiency in converting heat to electricity.
In August, a groundbreaking ceremony was held in Ovadan-Depe near the capital of Ashgabad in Turkmenistan to launch the construction of a major plant focused on the conversion of natural gas into synthetic gasoline. DCK-10 ensures high oxygenate conversion rates. Topsoe Gasoline Synthesis Catalyst GSK-10.
A team from Saudi Aramco Research and Development Center has developed a novel low-cost, high-octane gasoline blend component it calls SuperButol. Overall single pass conversion is 14 vol%. —Kalamaras et al. Process flow diagram for Butenes to Butanols (BTB) pilot plant. Click to enlarge.
1 ) and ammonia conversion (>99%) at a significantly reduced operating temperature (. The research team at KIST developed a low-cost membrane material and a catalyst for decomposition of ammonia into hydrogen and nitrogen. mol-H 2 g cat ?1 Membrane reactor for production of H 2 from NH 3. Credit: KIST.
a $3-million grant to support the commercialization of its patented and patent-pending lignin conversion and refining technologies. The USDA has awarded a consortium including Attis Innovations, Inc., a subsidiary of Meridian Waste Solutions, Inc.,a and Advanced Lignin Biocomposites LLC. and Advanced Lignin Biocomposites LLC.
XL Hybrids’ hybrid electric powertrain is a low-cost, low-risk, bolt-on, post-transmission parallel hybrid technology designed for Class 1–3 commercial vehicles that integrates seamlessly with the conventional internal combustion engine and transmission. engine and 6-speed transmission.
HyDeal LA is a collaboration of developers, green hydrogen off-takers, integrators, equipment manufacturers, investors, and advisors coalescing to overcome the biggest barrier to the green hydrogen economy—its high cost—by launching a commercial green hydrogen cluster at scale. kg before 2030.
Researchers in South Korea have developed a simple, low-cost and eco-friendly method of creating nitrogen-doped graphene nanoplatelets (NGnPs) with excellent catalytic performance in both dye-sensitized solar cells and fuel cells to replace conventional platinum (Pt)-based catalysts for energy conversion. —Jeon et al.
The projects conducted through this program are geared toward reducing the cost of coal conversion and mitigating the environmental impacts of fossil-fueled power generation. The successful implementation of two-phase DFE is expected to result in improved separation efficiency and reduced operating costs for cryogenic air separation.
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