This site uses cookies to improve your experience. To help us insure we adhere to various privacy regulations, please select your country/region of residence. If you do not select a country, we will assume you are from the United States. Select your Cookie Settings or view our Privacy Policy and Terms of Use.
Cookie Settings
Cookies and similar technologies are used on this website for proper function of the website, for tracking performance analytics and for marketing purposes. We and some of our third-party providers may use cookie data for various purposes. Please review the cookie settings below and choose your preference.
Used for the proper function of the website
Used for monitoring website traffic and interactions
Cookie Settings
Cookies and similar technologies are used on this website for proper function of the website, for tracking performance analytics and for marketing purposes. We and some of our third-party providers may use cookie data for various purposes. Please review the cookie settings below and choose your preference.
Strictly Necessary: Used for the proper function of the website
Performance/Analytics: Used for monitoring website traffic and interactions
reports that it has achieved full conversion ( 99% + ) of king grass cellulosic material to water soluble sugars on a repeatable basis. This conversion occurs with a reaction time of less than one minute. Full conversion is the most efficient use of the feedstock possible and exceeds earlier projections. Blue Biofuels, Inc.
Meanwhile, wet waste feedstocks, such as animal manure and fats, oils, and greases (FOG), represent another important category of resources that could be utilized to produce MCCI bioblendstocks due to its abundant availability. An open-access paper on their results is published in the journal ACS Sustainable Chemistry & Engineering.
Idemitsu Kosan, one of Japan’s leading producers and suppliers of energy, has launched a feasibility study of clean hydrogen production in Japan generated from waste, including municipal waste. The goal is to launch a first hydrogen production facility around 2030 capable of processing 200-300 tons of waste per day.
A photobioreactor and algae perform the “water recycling”; the pelletized solid waste material will be used in the gasifier. has launched the first zero-waste chemical biorefinery in the US in Missoula, Montana. If we have fixed feedstock [such as the waste spent grain], we have price stability. Source: Blue Marble.
Waste Management, Inc. The strategic investment and alliance aims to expand the feedstock flexibility of Renmatix’s proprietary Plantrose process beyond rural biomass to include materials derived from cost-effective and readily available urban waste material such as that managed by Waste Management. Earlier post.).
Asphaltenes are thus deemed as low-value by-products with little to no real-world application and commercial use in today’s market. After successful conversion, we develop nanocomposites by dispersing AFG into a polymer effectively, which have superior mechanical, thermal, and corrosion-resistant properties compared to the bare polymer.
The funding will help Sierra Energy further develop and commercialize its FastOx gasification technology, which converts virtually any waste into clean, renewable energy and fuels without burning. Waste is fed into the top of the gasifier vessel through an airlock. Purified oxygen and steam are injected into the base.
Topsoe and Steeper Energy , a developer of biomass conversion technologies, signed a global licensing agreement for a complete waste-to-fuel solution. The end-products include Sustainable Aviation Fuel (SAF), marine biofuel, and renewable diesel from waste biomass. Steeper Energy was founded in 2011 and is backed by TOM Capital.
The Westinghouse plasma gasification unit is designed to take approximately 100 tons per day of biomass waste and convert it into clean syngas. The demonstration facility is the first instance of a broader business plan being implemented by Kaidi to convert waste biomass in central China utilizing the Westinghouse Plasma technology.
The plant will feature SGH2’s technology, which will gasify recycled mixed paper waste to produce green hydrogen that reduces carbon emissions by two to three times more than green hydrogen produced using electrolysis and renewable energy, and is five to seven times cheaper. The facility will process 42,000 tons of recycled waste annually.
Carbon dioxide capture company AirCapture and carbon dioxide conversion company OCOchem, along with other partners, have won a $2.93-million AirCapture develops on-site, modular technology that captures CO 2 from the air using waste heat from manufacturing plants, enabling customer operations to go carbon neutral and even negative.
0002823 ) to support the extraction and conversion of lithium from geothermal brines to use in batteries for stationary storage and electric vehicles. Projects for topic one can: Promote process intensification, such as through the elimination of intermediate lithium carbonate conversion.
million grant to researchers at Texas A&M AgriLife Research to investigate potential discoveries for waste products used in lignocellulosic biofuel production, turning them into valuable agents used in producing commercial products such as biodiesel and asphalt binding agents. The US Department of Energy (DOE) has awarded a $2.2-million
a manufacturer of premium performance ultracapacitor technology ( earlier post ) is providing ultracapacitors to ElectroMotive Design LLC (EMD), an engineering services company and a manufacturer of hybrid electric conversion systems for Class 2 through 8 buses and trucks. Ioxus, Inc., —Joseph Ambrosio, General Manager of EMD.
an affiliate of Saudi Basic Industries Corporation (SABIC), and Technip Energies recently signed a Joint Development and Cooperation Agreement to collaborate on the development and realization of a commercial plant which will produce olefins and aromatics from plastic waste. Synova, SABIC Global Technologies B.V., Synova’s process.
Joule, the developer of a direct, single-step, continuous process for the production of solar hydrocarbon fuels ( earlier post ), has extended its solar CO 2 conversion platform to produce renewable gasoline- and jet fuel-range hydrocarbons. —William J. Sims, President and CEO of Joule. Earlier post.).
The assistant professor and William Marsh Rice Trustee Chair of Chemical and Biomolecular Engineering has proposed the development of a modular electrochemical system that will provide “a sustainable, negative-carbon, low-waste and point-source manufacturing path preferable to traditional large-scale chemical process plants.”.
BIOF has a research farm near Arcadia, Florida, upon which king grass is growing, and facilities for conducting tests for productions trials; The USDA ARS will supply expertise and harvesting equipment to collect materials for storage, processing, and conversion by BIOF. Sugars are subsequently processed into biofuels.
the developer of a technology to extract oil from algae, plans to co-develop an integrated system with the US Department of Energy’s Idaho National Laboratory (INL) for direct conversion of raw algae into a renewable crude oil that can be used by existing petroleum refineries. OriginOil, Inc., —Riggs Eckelberry, OriginOil CEO.
With this research, we looked to make a new biofuel conversion process that is relevant and applicable to renewable and waste-to-energy technology. In addition, researchers are testing how the catalyst performs with more complex waste materials that produce a mixture of ethers besides 4-butoxyheptane. —Derek Vardon.
Biomass feedstocks can be produced by municipal solid waste (MSW) streams and algae and converted into low-carbon fuels that can significantly contribute to the decarbonization of transportation sectors that face barriers to electrification, such as aviation and marine. Federal share. Cascadia Consulting Group. AMP Robotics.
The carbon found in municipal solid waste, which is piling up in landfills or being incinerated globally, can play a critical role in eliminating the virgin fossil resources used to make fuels and chemicals. It is a testament to the UAE’s leadership and strong sustainability agenda that our technology has found a home here.
The European yard tractor incorporates Balqon Corporation’s proprietary electric vehicle drive system, which encompasses complete power management, propulsion, and power conversation systems and includes drive trains and energy systems (i.e., batteries and a charging system).
LanzaTech, a producer of low-carbon fuels and chemicals from waste gases, has partnered with the Centre for Advanced Bio-Energy, a joint venture between Indian Oil Corporation, Ltd. LanzaTech has developed gas fermentation technology that can directly convert waste CO 2 gases into acetates. CO 2 to acetic acid fermentation.
The Dearman project is to deliver a production-feasible waste-heat recovery system for urban commercial vehicles, which offers life-cycle CO 2 savings of up to 40%; fuel savings of 25%, with the potential of up to almost 50%; and potential payback in less than three years. Engines Vehicle Systems Waste Heat Recovery' Earlier post. ).
A recently completed European project coordinated by Centro Ricerche Fiat (CRF) demonstrated the technical feasibility of a Bi 2 Te 3 -based thermoelectric generator (TEG) for waste heat recovery for application to a diesel light-duty truck (LDT). Fuel Efficiency Waste Heat Recovery' The researchers tackled this issue in two ways.
Virgin Group and chemical conversion technology company Agilyx ( earlier post ) are forming a strategic partnership to research and develop lower carbon fuel facilities to help address plastic pollution and the global transition to net zero. Agilyx’s proprietary technology is able to break down plastic waste through a pyrolysis process.
The company’s portfolio of waste-to-energy includes municipal solid waste (MSW) to energy at the largest contributor. Through a group company Concord Blue, a German-Indian company, it provides advanced gasification technology for syngas generation from a wide variety of waste streams.
Photocatalytic water splitting has attracted great interest as a means of cost-effective conversion of sustainable solar energy to valuable chemicals. —Wang et al. This work was supported by the National Natural Science Foundation of China. 2021.01.001.
In Australia, QUT researchers and Mercurius Australia are partnering on a pilot plant to prove the economic viability of turning sugarcane waste into either jet and diesel fuel or chemicals that could be used to make plastic soft drink and beer bottles. High value chemicals are also produced and could be sold into higher value markets.
Sinopec Capital, as the industrial investment arm of Sinopec Group—one of the world’s largest integrated energy and chemicals companies—announced an investment in LanzaTech with a focus on promoting direct production of chemicals from waste carbon.
Pike Research forecasts that the global market for biofuels will more than double over the coming decade, increasing from $82.7 BGPY in 2011) would represent just 7% of the estimated global transportation fuels market in 2021. — Biofuels Markets and Technologies. billion in 2011 to $185.3 billion by 2021.
million gallons US) of 2G ethanol per year and the potential to export 100% of this biofuel to the American and European markets. GranBio uses two proprietary sugar conversion technologies. Currently, the company has the capacity to produce around 30 million liters (7.9
Researchers from Enerkem and the National Renewable Energy Laboratory (NREL) have succeeded in producing a new high-performance biofuel that could improve the octane rating of fuels sold on the market and reduce their carbon footprint. Catalytic conversion of DME to High Octane Low Carbon Gasoline (HOLCG) hydrocarbon blends.
Representatives of the Lufthansa Group and Swiss Federal Institute of Technology Zurich (ETH Zürich), with ETH spin-offs Climeworks and Synhelion , have signed a joint Letter of Intent for a possible cooperation to accelerate the market launch of Sustainable Aviation Fuels (SAF).
The Advanced Research Projects Agency - Energy (ARPA-E) has issued a request for information ( DE-FOA-0001607 ) on lower-grade waste heat recovery technologies. quadrillion BTU of energy was wasted mainly in the form of heat. Thus, ARPA-E is keenly interested in waste heat conversion in this temperature range.
CHP motors are a perfect solution for generating electricity and harnessing otherwise wasted energy for heating, for both primary power and heat generation or for use on an ad hoc basis during power outages. However, this technology has previously been cost prohibitive, inefficient and displayed suboptimal reliability characteristics.
Further development on range across temperature variations, heavy hauling, fine tuning auxiliary load to avoid waste, increased number of hours on current and additional units will support continued technological evolution. The conversion work will be done at CSX’s Huntington, West Virginia locomotive shop.
The MYPP sets forth the goals and structure of the Office, and identifies the research, development, demonstration, market transformation, and crosscutting activities on which the Office is planning to focus over the next five years. R&D on biomass conversion technologies. Manure slurries from concentrated livestock operations.
The primary goal of this funding opportunity ( DE-FOA-0000949 ) is to provide disruptive new solar conversion and storage technology options to enable a much higher penetration of solar energy generation into the US energy mix. Novel approaches to high T solar conversion. Source: ARPA-E. Click to enlarge. Value (units).
Blue World Technologies’ complete system includes a methanol reformer for fuel conversion, DC/DC for power conversion and fuel cell stack for power production. In the combination with HT PEM the waste heat is of sufficient temperature to drive this process, meaning an energy-free process which leads to a superior overall efficiency.
We knew the F-150 Lightning was special, but the interest from the public has surpassed our highest expectations and changed the conversation around electric vehicles. This new center supports Ford’s vision of sustainable production as a zero waste-to-landfill site. Ford has invested $7.7
accompanying the booming expansion of the Li-ion battery market, a tremendous amount of batteries retire every year and most of them are disposed of in landfills, which not only causes severe waste of precious sources but also induces hazardous soil contamination due to the plastic components and toxic electrolytes. 8b04410.
Waste gas is one example of a source of syngas. It will still take a couple of years until it is ready for the market. Evonik Industries has demonstrated the use of bacteria to convert syngas to pure 2-hydroxyisobutyric acid (2-HIBA) under industrial conditions. 2-HIBA is a precursor used in the manufacture of PLEXIGLAS.
We organize all of the trending information in your field so you don't have to. Join 5,000+ users and stay up to date on the latest articles your peers are reading.
You know about us, now we want to get to know you!
Let's personalize your content
Let's get even more personalized
We recognize your account from another site in our network, please click 'Send Email' below to continue with verifying your account and setting a password.
Let's personalize your content