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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.
At the hubs, which can be built at or near landfills, Raven SR will convert mixed and multiple organic wastes, including municipal solid waste, greenwaste, food waste, medical, paper, etc. Raven can also easily process natural and renewable gases alone or combined with solid waste. 22 CCR § 66260.10 Definitions).
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.).
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.
The Westinghouse plasma gasification unit is designed to take approximately 100 tons per day of biomass waste and convert it into clean syngas. The clean syngas is then to be converted into diesel fuel and other transportation fuels at the Kaidi facility.
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.
GTI has released a site-specific engineering design titled “ Low-Carbon Renewable Natural Gas (RNG) from Wood Wastes ”. GTI led a team of engineers and scientists to produce a blueprint for converting an existing biomass facility into an RNG production site, using the wood waste feedstock and some of the existing infrastructure.
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.
Agilyx Corporation, a startup commercializing a waste plastic to synthetic crude oil technology, has closed a $22 million Series B round led by Kleiner Perkins Caufield & Byers (KPCB), and joined by new strategic investors, Waste Management, Inc. and Total Energy Ventures International, an affiliate of oil and gas company, Total SA.
The Enerkem process has four steps: feedstock pre-treatment; gasification; syngas conditioning; and conversion. million (US$51 million) comes from Enerkem’s existing institutional investors—Rho Ventures, Braemar Energy Ventures and BDR Capital—as well as from new investors Waste Management and Cycle Capital. Click to enlarge.
Fulcrum BioEnergy has selected Gary, Indiana as the location of its Centerpoint BioFuels Plant, which will convert municipal solid waste (MSW) into low-carbon, renewable transportation fuel. a highly efficient and economic gasification system for the conversion of the MSW feedstock to syngas.
The US Department of Energy (DOE) launched the Clean Fuels & Products Shot , a new initiative that aims to reduce greenhouse gas emissions (GHGs) from carbon-based fuels and products significantly. Biomass and wasteconversion technologies designed to use green electricity and hydrogen to maximize carbon retention in products.
An alliance of industry, academic and government organizations has formed to commercialize technologies that will utilize concentrated solar energy to convert waste CO 2 into synthetic fuels. Earlier post.). In addition, commercial partners have signed on to advance work on the first round of commercial plants. Earlier post.).
The waste plastics to hydrocarbon fuels liquefaction technology is based on pyrolysis and distillation. The objective of the new agreement is to build 10 UK plants dealing with 60,000 tonnes of mixed plastic waste per year and to commission the first plant in London by end 2011. Cynar system. A hat-tip to Harold!).
billion in 17 large-scale innovative clean-tech projects with a third round of awards under the Innovation Fund. The third one will process non-recyclable solid waste streams and transform them primarily into hydrogen. The EU is investing more than €1.8 Another one will produce 15,500 tonnes of renewable hydrogen per year.
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.
China has officially opened a national clean energy research center, the Dalian National Laboratory for Clean Energy. This plays to the strengths of the DICP, which has developed methanol-to-olefins conversion processes that help to reduce waste in the industrial processing of coal.
Clean Energy. Clean Fuels Ohio. gas-fueled school buses and solid waste collection vehicles and develop a. other fleets; create vehicle conversion inspection criteria; and train and. Region Clean Cities. The Central Texas Fuel Independence Project will expand an interagency. Gas Technology. Greater Portland.
With this research, we looked to make a new biofuel conversion process that is relevant and applicable to renewable and waste-to-energy technology. While the process chemistry yields a clean-burning biofuel with a low sooting index, also notable is the catalyst’s stability over time, even becoming more active when regenerated.
UK-based TMO Renewables Ltd, the developer of a novel thermophilic bacterium and process for converting biomass into fuel ethanol ( earlier post ), has entered into an exclusive contract with Fiberight LLC to design and build waste to bioethanol plants in the US.
The 22 selected projects fall into five topic areas for the “Bioenergy Technologies Office Scale-Up and Conversion” funding opportunity ( earlier post ): Scale-Up of Biotechnologies. Affordable, Clean Cellulosic Sugars for High Yield Conversion. Separations to Enable Biomass Conversion. Residential Wood Heaters.
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. elements of synthesis fuels under pressure and at temperatures. above 1000 °C.
an early stage provider of cellulosic biomass feedstock derived from municipal solid waste (MSW) for energy and bio-based chemical production, will install its demonstration vessel at Fiberight LLC’s cellulosic ethanol pilot plant in Lawrenceville, Va. CleanTech Biofuels, Inc.,
The project aims to identify contaminants in waste cooking oil, which often is described in China as “gutter oil,” and processes that may treat and clean it for use as jet fuel. Funded by both companies, the center opened in August at COMAC’s new Beijing Aeronautical Science and Technology Research Institute (BASTRI).
Researchers at the University of California, Santa Barbara (UCSB) have developed a one-pot process for the catalytic conversions of wood and cellulosic solids to liquid and gaseous products in a reactor operating at 300–320 °C and 160-220 bar. Overview of the process. Click to enlarge. The advantage would be an even lower CO 2.
The plants being contemplated are expected to have an attractive environmental footprint as they would process these waste streams with a low emissions profile. We believe that our technology offers the ability to cleanly use these waste and landfill materials in an environmentally responsible way to produce a variety of high value products.
The results, reported in the journal Nature Energy , represent a new method for the conversion of carbon dioxide into clean fuels. The wireless device could be scaled up and used on energy farms similar to solar farms, producing clean fuel using sunlight and water. —senior author Professor Erwin Reisner.
Israel-based NewCO2Fuels (NCF), a subsidiary of GreenEarth Energy Limited in Australia, reported completion of stage 1 testing of its proof-of-concept system for the conversion of CO 2 into fuels using solar energy. Carbon Capture and Conversion (CCC) Fuels Solar Solar fuels' Concept of the NCF process. Click to enlarge.
The process steps are: Conversion of mixed feedstock comprising residual biomass and waste via advanced gasification to produce a clean synthesis gas; Conversion of the syngas into methanol; Dehydration of the methanol to DME over an alumina catalyst (Bio-DME); and.
In the CHJ process (also called hydrothermal liquefaction), clean free fatty acid (FFA) oil from the processing of waste oils or energy oils is combined with preheated feed water and then passed to the CH reactor. Evaluation of ARA Catalytic Hydrothermolysis (CH) Fuel.
s Rialto Renewable Energy Center for the conversion of biomass to transportation fuels. The UOP Unionfining and Unicracking technologies will then be used to upgrade the hydrocarbons to ultra-clean jet and diesel fuel as well as specialty waxes and chemicals. The renewable energy center, to be built in Rialto, Calif.,
A major Dutch initiative designed to investigate how waste can be used as a raw material to produce chemicals has more than doubled in size since being launched late last year. Together, the 14 partners have all the expertise needed to make the initiative a success, from waste collection to conversion to industrial plants and sales.
Blue World Technologies’ complete system includes a methanol reformer for fuel conversion, DC/DC for power conversion and fuel cell stack for power production. The combination can be done without the implementation of expensive and cumbersome clean-up technologies which enables a simple and cost-effective system design.
Geographical distribution of Clean Cities Recovery Act awards. The US Department of Energy (DOE) has selected 25 cost-share projects under the Clean Cities program that will be funded with nearly $300 million from the American Recovery and Reinvestment Act. Clean Energy Coalition’s CEC Michigan Green Fleets Initiative.
The new ARPA-E selections focus on accelerating innovations in clean technology while increasing US competitiveness in rare earth alternatives and breakthroughs in biofuels, thermal storage, grid controls, and solar power electronics. wasted energy in plants into energy-dense fuel molecules. light energy. Lawrence Berkeley.
The feed-stock reduction is achieved primarily by supplementing the process with oxygen and hydrogen produced by water electrolysis units that are powered by clean wind and solar generated electricity. DGF replaces the coal gasification used by others with biomass gasification and natural gas reforming.
a waste-to-biofuels and chemicals producer, has obtained certification from the International Sustainability and Carbon Certification (ISCC) system for the biomethanol production of its Enerkem Alberta Biofuels full-scale facility in Edmonton, Canada. Enerkem Inc., Click to enlarge.
The selected projects will focus on technologies such as revolutionizing fuel cells for light- and heavy-duty vehicles, and technologies to generate less nuclear waste and reduce the cost of fuel. 3D-Printed Ceramic Thermocatalytic CO 2 Reactor with High Carbon Conversion and Energy Efficiencies - $3,100,104. Stanford University.
By utilizing residual biomass solids from the ethanol conversion process, the plant generates 21 megawatts (MW) of electricity—enough to power itself and provide excess clean renewable power to the local Stevens County community.
Researchers at Michigan State University have developed a microbial electrolysis cell (MEC) which will allow biodiesel plants to eliminate the creation of hazardous wastes while reducing their dependence on fossil fuel. We matched them up like dance partners, modifying each of them to work seamlessly together and eliminate all of the waste.
million) to five Alberta-based renewable energy projects including waste to biofuels and energy, concentrating solar power, biogas and home generation. Enerkem’s technology converts residual materials, such as non-recyclable municipal solid waste, into transportation fuels and advanced chemicals. million (US$36.6 Plasco Alberta Inc. ,
was established to deploy a commercially ready, patented and proven Concentrated Acid Hydrolysis Technology Process for the profitable conversion of cellulosic waste materials to renewable fuel sources, including cellulosic ethanol, biodiesel, biojet fuel, and drop-in fuels. BlueFire Renewables, Inc.
million metric tons of electronic waste in 2019, up more than 21% over five years, according to the United Nations’ most recent assessment. Only about 17% of that e-waste was recycled, and what happens to the rest can be detrimental for both human health and privacy. The conversation has been edited for length and clarity.
Halas said the remediation process could wind up having low enough implementation costs and high enough efficiency to become economical for cleaning up nonindustrial hydrogen sulfide from sources such as sewer gas and animal wastes.
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