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
Key drivers of this market include cost savings, sustainability goals, and regulatory support. As EV adoption grows, the battery reuse market is expected to expand significantly, reducing waste and supporting energy transition efforts. However, challenges such as battery degradation, standardization, and economic feasibility remain.
Researchers hope to capture this energy and use it to produce clean, zero-carbon electricity. Costing only US $640,000 and built in less than a year, the device stands in contrast to prominent stellarators like Germany’s Wendelstein 7-X, a massive, tentacled machine that took $1.1 billion and more than 20 years to construct.
Overproduction leads to wasted energy and strain on infrastructure, while underproduction can cause blackouts and energy shortages. Avoid costly curtailments (when excess renewable energy is wasted). Lifecycle Management: By avoiding overuse and optimizing charge cycles, AI extends battery lifespan and reduces replacement costs.
By choosing responsible buyers who recycle materials sustainably, you’ll not only maximize your earnings but also contribute to reducing environmental waste. Alternatively, inquire whether the buyer offers this service–it’s often included at no extra cost. Table of Contents What Factors Determine the Value of Your Car?
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.
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).
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.
A team from the University of Calgary and Rice University has used flash joule heating (FJH) ( earlier post ) to convert low-value asphaltenes—a by-product of crude oil refining—into a high-value carbon allotrope, asphaltene-derived flash graphene (AFG). Flash graphene from asphaltenes. (A) —Saadi et al.
Its hybrid electric and hydrogen powertrain aims to reduce downtime related to energy recharging while reducing the carbon footprint, including the battery. Renault Scénic Vision is zero emission in production and in use with a 75% smaller carbon footprint than a conventional battery electric vehicle.
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. —Lancaster Mayor R. Rex Parris.
Washington State University researchers have developed an innovative way to convert waste polyethylene plastic to ingredients for jet fuel and other valuable products, making it easier and more cost-effective to reuse plastics. In the recycling industry, the cost of recycling is key. —Hongfei Lin. —Jia et al.
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.
a Finnish energy company, have signed an agreement on a joint concept feasibility study for a Power-to-Gas facility at Vantaa Energy’s waste-to-energy plant in the city of Vantaa in the capital region. The technology group Wärtsilä and Vantaa Energy Ltd., The co-development agreement was signed in May and is valid for 12 months.
The US Department of Energy (DOE) announced up to $40 million in funding for a new Advanced Research Projects Agency-Energy (ARPA-E) program that will limit the amount of waste produced from advanced nuclear reactors, protecting the land and air and increasing the deployment and use of nuclear power as a reliable source of clean energy.
Lithium Australia NL reported that its wholly owned subsidiary VSPC Ltd has successfully produced Li-ion battery cathode material, and Li-ion batteries (LIBs), from tri-lithium phosphate produced directly from mine waste using the SiLeach process. LFP and batteries from waste. LFP and batteries from waste. SiLeach background.
the strategic investment arm of South Korea’s SK Group, was part of a $50-million investment in Fulcrum BioEnergy, a US-based waste-to-fuels company. Fulcrum produce biofuel on a commercial scale by chemically converting municipal solid waste (MSW) into transportation fuels. Founded in Pleasanton, Calif.,
Fulcrum BioEnergy, a clean energy company pioneering the creation of renewable, drop-in transportation fuels from landfill waste, successfully produced a low-carbon synthetic crude oil using landfill waste as a feedstock at its Sierra BioFuels Plant, the world’s first commercial-scale landfill waste-to-fuels plant.
The UK government is awarding £54 million to 15 projects to develop technologies that remove carbon emissions from the atmosphere. The carbon dioxide can then be permanently stored or used in various products or applications. The biochar is rich in carbon and can be used as a fertilizer. Cambridge Carbon Capture Ltd.,
bp ventures has committed $10 million, leading the Series B investment round, in WasteFuel , a California-based biofuels company that will use proven, scalable technologies to convert bio-based municipal and agricultural waste into lower carbon fuels, such as biomethanol. billion metric tons by 2050.
ClearFlame Engine Technologies, a startup developing net-zero engine technology ( earlier post ), announced the publication of an independent study that finds ClearFlame’s technology could help fleet owners and other heavy-duty truck operators lower total costs while meeting sustainability goals sooner than currently available alternatives.
BayoTech is committed to addressing the global need for consistent, cost-effective, low-carbon supply of hydrogen. This saves customers money and reduces the carbon intensity associated with the legacy challenges of liquifying and transporting hydrogen. Source: BayoTech.
A team of scientists from LanzaTech, Northwestern University and the Department of Energy’s Oak Ridge National Laboratory have engineered a microbe to convert molecules of industrial waste gases, such as carbon dioxide and carbon monoxide, into acetone and isopropanol (IPA). —Jennifer Holmgren, CEO of LanzaTech.
The composite blocks can be made from low-cost and locally sourced materials, including the excavated soil at the construction site, but can also utilize waste materials such as mine tailings, coal combustion residuals (coal ash), and fiberglass from decommissioned wind turbine blades. barrel per ton of feedstock.
The first-of-its-kind continuous catalytic process was designed to reduce production costs relative to batch chemistry, the prior state-of-the-art technology. With this research, we looked to make a new biofuel conversion process that is relevant and applicable to renewable and waste-to-energy technology. Hafenstine et al.
Rice University scientists and their colleagues at C-Crete Technologies have optimized a process to convert waste from rubber tires into graphene that can, in turn, be used to strengthen concrete. The research led by Rice chemist James Tour and Rouzbeh Shahsavari of C-Crete is detailed in the journal Carbon. —James Tour.
The US Department of Energy (DOE) is awarding $35 million to 15 research projects through ARPA-E’s “Energy and Carbon Optimized Synthesis for the Bioeconomy” (ECOSynBio) program to decarbonize biorefining processes used across the energy, transportation, and agriculture sectors. Carbon-Negative Chemical Production Platform - $4,160,262.57.
Capturing this wastecarbon then allows for algae to be cultivated into a variety of biofuels and bioproducts. The deployment of algal technologies in these projects will help lower algal system cost, while decreasing GHG emissions. ethanol production), biogas purification (e.g., power, cement, or other industrial sources).
DHL Global Forwarding, the air and ocean freight specialist of Deutsche Post DHL Group, says it will be neutralizing the carbon emissions of all less-than-container load (LCL) ocean freight shipments from 1 January 2021. This is why we have taken the decision to neutralize the carbon emission of all our LCL shipments.
Hynamics, the hydrogen subsidiary of EDF group, has signed an agreement to collaborate with ABB and test the ABB Ability OPTIMAX for Green Hydrogen energy management system (EMS), which was launched to market in November 2022, across Hynamics’ plants to help optimize electrical costs of hydrogen production by up to 16%, according to ABB modeling.
A patented process for converting alcohol sourced from renewable or industrial waste gases into jet or diesel fuel is being scaled up at the US Department of Energy’s Pacific Northwest National Laboratory with the help of partners at Oregon State University and the carbon-recycling experts at LanzaTech. Image: Oregon State University).
PACCAR, Cummins and several customers including FedEx Freight and Knight-Swift will demonstrate the ability to achieve lower carbon emissions for long-haul transport using internal combustion engine technology. The X15N is essential to our commitment to help customers reach net-zero greenhouse gas emissions and to improve NO x.
Hydra’s ability to deploy stranded hydrogen assets to fleet operators, who can use it to reduce their fuel costs and meet emission targets, opens up new opportunities for chemical manufacturers. The company’s distinctive HaaS model helps commercial fleets reduce costs and emissions with limited risk and no up-front investment.
a nationwide distributor of propane, fuel oil and related products and services, as well as a marketer of natural gas and electricity, is purchasing a 39% stake in Oberon Fuels, a San Diego, CA-based development-stage producer of low-carbon, renewable dimethyl ether (rDME) transportation fuel. Suburban Propane Partners, L.P.,
The partnership will begin with a project in the battery anode space with the development of a novel process for the production of hard carbon from bio-waste. Using readily available, sustainable bio-waste material will provide Sparc with a strong environmental value proposition when compared with conventional sources of hard carbon.
Energy Fuels expects to process this monazite at its 100%-owned White Mesa Mill starting in Q1-2021, recover the contained uranium, and produce a marketable mixed REE carbonate, representing an important step toward re-establishing a fully-integrated US REE supply chain. Energy Fuels Inc.
On demand, the hydrogen is released from the hydride (endothermic reaction), utilizing the waste heat of the fuel cell. Hydrogen fuel cell vehicles produce very low carbon emissions and no air pollution which makes them vital to cleaning our air and tackling climate change. From Adelhelm & Jongh (2011). EP/T022760/1.
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. Improvements in productivity with traditional carbon dioxide (CO 2 ) supply.
BP and Johnson Matthey (JM) have signed an agreement with Fulcrum BioEnergy to license their Fischer Tropsch (FT) technology to support Fulcrum’s drive to convert municipal solid waste into biojet fuel.
Aker Carbon Capture and Haldor Topsoe have signed a memorandum of understanding with the intention to offer a complete solution for low-carbon hydrogen production. Aker Carbon Capture’s proprietary carbon capture process uses a mixture of water and organic amine solvents to absorb the CO 2.
Under the terms of the agreement, XL Fleet and Curbtender will jointly develop a series of battery electric (BEV) and plug-in hybrid electric (PHEV) commercial trucks for use in waste management applications. The Quantum is the US Waste Industry’s #1 selling small rear loader. Curbtender Quantum.
Research suggests that animal leather requires the emission of between 2-12 kg carbon dioxide equivalent per kg of animal leather produced and can vary greatly depending on where animals are raised, how tanning is achieved, etc. waste’ cork powder). waste’ cork powder).
Waste into X (WiX); $5.0 Direct Removal of Carbon Dioxide from Oceanwater (DOC); $2.0 Direct Removal of Carbon Dioxide from Ambient Air (DAC); $2.0 With nearly 2 billion tons of municipal solid waste (MSW) generated globally, this feedstock may constitute the largest resource for the recovery of CMs and other metals.
Start-up Mote is establishing its first facility to convert wood waste into hydrogen fuel while capturing, utilizing, and sequestering CO 2 emissions resulting from its process. Mote’s proprietary integration of proven equipment in a novel process is the basis for this carbon removal and clean energy generation facility.
The facility will filter 4,000 metric tons of carbon dioxide from the air and mineralize it underground. With direct air capture technology, carbon dioxide is extracted from the ambient air and air free of CO 2 is returned to the atmosphere. The carbon dioxide is thus permanently removed from the atmosphere.
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