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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. Hafenstine, Nabila A.
Seven major European research institutes (Fraunhofer, CEA, TNO, VTT, SINTEF, Tecnalia and SP) have joined forces to invest in a joint program (Value from Waste) aimed at tackling the recycling of rare earth metals from waste. The aim is to extract valuable materials from the waste streams. —Odd Løvhaugen. 2012.12.037.
The United Nations Environment Programme (UNEP) and partners have launched a new initiative that aims to reduce pollution levels, improve resource efficiency and reduce infrastructure costs in cities across the world. Up to 80% of the world population is expected to reside in cities by 2050.
Waste feedstocks are defined in the enabling legislation specifically as “ previously used or discarded solid, liquid or contained gaseous material with heating value resulting from industrial, commercial or household food service activities that would otherwise be stored, treated, transferred or disposed. The Clean Energy Biofuels Act.
From the first full year of production, the plant will be the BMW Group’s most resource-efficient production location worldwide. Responsible use of water resources is a particular sustainability goal in San Luis Potosí. The waste heat is made available to the production plants as hot water using a waste heat boiler.
has entered into a joint development program with the Energy & Environmental Research Center ( EERC ) at the University of North Dakota (UND) in Grand Forks for converting a wide variety of biomass and waste into bio-butanol. This is concerning, as it uses food resources to produce fuel. Syntec Biofuel Inc.
US Secretary of Agriculture Sonny Perdue announced the Agriculture Innovation Agenda, a department-wide initiative to align resources, programs, and research to position American agriculture to better meet future global demands.
In terms of investment in innovation for cleaner energy, the plan calls for: Investment in advanced fossil energy projects. In addition, the President has directed his Administration to purchase cleaner alternatives to HFCs whenever feasible and transition over time to equipment that uses safer and more sustainable alternatives.
Conventional nuclear power uses nuclear fission which involves the splitting of a large unstable nucleus into smaller elements and generates long-lived radioactive waste. Resources. “ Viable fusion energy approaches must confine high-temperature plasmas at sufficient density for long durations.
An article in the latest issue of IEA Energy: The Journal of the International Energy Agency reports that Estonia, which has the most developed oil shale industry in the world, is collaborating in pursuing wider use of oil shale in a cleaner, more sustainable manner. Different that shale oil—i.e.,
Located on a 327-acre site at the Port of Columbia, the LGF plant plans to convert 1 million tons of forestry waste feedstock into cleaner-burning renewable diesel and is projected to produce 31.8 Resources Peacock, M., million gallons of biofuels per year once in operation. Paterson, J.,
As part of a $6-million project funded in part by a grant from the California Energy Commission (CEC), Oberon is converting waste methanol into rDME at its upgraded facility in Brawley, Calif. Given the compatibility of these two molecules, we can immediately offer an even cleaner alternative for the transportation sector and beyond.
Processing one ton of rare earths can produce 2,000 tons of toxic waste. Paulson School of Engineering and Applied Sciences (SEAS) have developed a cleaner method to extract rare earth metals. Current process for separating rare-earth metals is time consuming, expensive, and dangerous. Now, researchers from the Harvard John A.
The new study led by Associate Professor Filippo Giustozzi at RMIT University provides a sustainable solution to UV protection for roads, with results published in the Journal of Cleaner Production. This acts so effectively as a sunscreen for roads that it actually makes the surface last twice as long as regular bitumen. 2022.131372.
ReactWell , LLC, has licensed a novel waste-to-fuel technology from the Department of Energy’s Oak Ridge National Laboratory to improve energy conversion methods for cleaner, more efficient oil and gas, chemical and bioenergy production. Yang Song is now employed with ReactWell as lead scientist.
A team of international researchers are investigating a new metal-organic framework (MOF) material that might help in nuclear fuel recycling and waste reduction by capturing volatile radionuclides such as xenon and krypton that evolve into reprocessing facility off-gas in parts per million concentrations. Waste avoidance.
Under this program BlueFire has requested $250 million, which would be combined with the previously awarded $88 million dollar grant and other resources to provide sufficient capital for the project’s construction and launch of the facility. — Arnold Klann, CEO of BlueFire Ethanol. BlueFire Ethanol Fuels, Inc. Earlier post.).
at Harsco’s world headquarters in Pennsylvania, taps into Harsco’s leadership serving the worldwide steel industry, in combination with LanzaTech’s proprietary bioenergy technologies for reducing the carbon footprint of integrated steelmaking operations by converting waste gas to ethanol and high value chemicals.
The program funds projects to encourage the development and use of new technologies and alternative and renewable fuels, including electricity, natural gas, biomethane, hydrogen, and gasoline and diesel substitutes, such as cellulosic ethanol (derived from woody materials, including agricultural waste), and biodiesel from waste grease.
The California Air Resources Board (CARB) has posted a revised draft of California’s proposed Short-Lived Climate Pollutant (SLCP) Strategy. The State’s organic waste should be put to beneficial use, such as for soil amendments/compost, electrical generation, transportation fuel, and pipeline-injected renewable natural gas.
The Group is already investing more than €250 million (US$281 million) in various carbon emissions reduction technologies—for example in Ghent where waste carbon gases will be used for the production of alternative fuels or in chemical products. Valentin Vogl, Max Åhman, Lars J. 2018.08.279.
The LCFS program is administered by the California Air Resources Board and seeks to reduce greenhouse gas emissions from transportation fuels by 20% through 2030. SoCalGas also recently announced it will soon begin using renewable natural gas, a fuel produced from waste sources, at its fueling stations.
This new round of funding for DME builds on its June 2021 award and is continued validation of renewable DME as an enabling molecule to decarbonize transportation.Oberon Fuels generates value from wasteresources, creates family-wage jobs in rural areas, and reduces both pollution and greenhouse gas emissions through our rDME.
When a car burns gas while sitting at a stop light or idling at the curb, it’s wasting the valuable high-octane fuel better used for acceleration. Reducing the amount of these particles is a priority for newer, cleaner-burning fuels. That’s where PNNL’s onboard separation technology comes in. Heldebrant, John C. Linehan, and J.
Li says the facility will combine all major areas of energy research, including cleaner fossil fuels, solar power, and fuel cell technologies.Mindful that China relies on coal for more than two-thirds of its electricity, Li expects the DNL to focus much of its resources on clean fossil-fuel technologies, at least initially.
Joule’s Helioculture platform uses engineered microorganisms directly and continuously to convert sunlight and waste CO 2 into infrastructure-ready fuels, including ethanol and hydrocarbons (n-alkanes) that serve as the essential chemical building blocks for diesel. They do not contain any olefines or aromatic hydrocarbons.
Biofuels can be produced by fermenting waste biomass and recovering the fuel from the fermented solution using an extractant. —Professor Andrew Livingston of Imperial’s Department of Chemical Engineering. —Co-author Dr Ji Hoon Kim, also of the Department of Chemical Engineering. Bolton, Young Moo Lee and Andrew G.
Comprehensive energy and climate change policies that accelerate the deployment of energy efficiency, cleaner energy, renewable energy, green buildings, clean vehicles and fuels, and low- carbon transportation infrastructure. Align with wider policy goals including economic, energy, resources and transport policy objectives.
South African engineering company Swayana has signed a Memorandum of Understanding (MoU) with LanzaTech to collaborate on developing projects for the production of ethanol and higher value products from waste gases in the ferroalloy and titania smelting sectors. Resources. Lindstad, S.E. Tranell, T. Færden and J.
Greyrock’s systems are designed to transform a variety of gas resources (including natural gas, flare gas, bio-gas, natural gas liquids, and other feedstocks) into premium transportation fuels. London-based AP Ventures has made a follow-on investment in Greyrock Energy , Inc. a provider of small-scale gas-to-liquids (GTL) technology.
In 2008, a report by UNEP called for the elimination of fossil-fuel subsidies, concluding that such subsidies often lead to increased levels of consumption and waste; place a heavy burden on government finances; can undermine private and public investment in the energy sector; and do not always end up helping the people who need them most.
Fumes from nitrogen-rich fertilizers and animal waste combine in the air with combustion emissions to form solid particles, which constitute a major source of disease and death, according to the new study. micrometers across, about 1/30 the width of a human hair. Tsigaridis, and R. 43, doi: 10.1002/2016GL068354.
Additionally, we provide educational resources and advocacy support to help promote the benefits of sustainable transportation. Waste Reduction : Implement recycling programs, reduce single-use plastics, and opt for digital documentation to minimize waste.
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. Electricity generated at the point of use is an effective way of combating the inefficiencies of centrally produced power.
Some destinations studied—Beijing, Shanghai, and Milan—are heavily polluted during certain months but have relatively cleaner air at other times. Resources. Most were visiting family in cities with consistently high levels of air pollution, including Ahmedabad and New Delhi, India; Rawalpindi, Pakistan; and Xian, China.
The TU Delft researchers Frank Koopman and Nick Wierckx discovered that the bacterium Cupriavidus basilensis is capable of breaking furans down into harmless waste products, while leaving the sugars untouched. An open-access paper on their work was published 2 March in the Proceedings of the National Academy of Sciences.
The California Air Resources Board announced that Ford Motor Company has agreed to fines totaling $2,960,000 for violations of air quality laws related to the sale of vehicles with non-compliant On-Board Diagnostic (OBD) systems in California. Officials estimate the money will support loans for about 90 clean-diesel vehicles.
We’ve been working for a number of years on ways to make engines for cars and trucks cleaner and more efficient, and we’ve been particularly interested in what you can do with spark ignition [as opposed to the compression ignition used in diesels], because it’s intrinsically much cleaner. —Daniel Cohn. and Bromberg, L.
The activity reinforces TMUK’s status as one of Toyota’s five sustainable plants around the world which pioneer and share best practice in cleaner processes and greener technologies.
There are worldwide initiatives underway to reduce the amount of flared and vented gases which waste valuable natural resources and contribute to CO 2 emissions. These fuels, derived from natural gas, will be incrementally cleaner than similar petroleum-based fuels.
The result is a more affordable battery from a faster, less wasteful process that uses less toxic material. Using the toxic chemical increases costs, heightens health and environmental concerns, and wastes large amounts of water to reduce acidity. NMA half cells show 200 mAh g −1 capacity with 96% capacity over 100 cycles.
Waste heat utilization for steam generation will also be assessed to further increase efficiency and cost effectiveness of hydrogen production. The companies will target applications such as blending hydrogen into natural gas pipelines, as well as on-site hydrogen production for industrial use.
Gasification is emerging as a core technology for the production of chemicals and cleaner power, and refers to a process for converting solid fuels, including coal, biomass, and wastes, into either fuel gas (containing CH 4 and some N 2 usually) or syngas (containing mainly H 2 and CO) for subsequent conversion into fuels and chemicals.
In some cases, this liquid can also be washed away to provide a cleaner surface for higher resolution characterization. When they reach the end of their life cycles, these batteries need to go somewhere, or else they will simply be accumulated over time as waste. We have a much easier time observing today’s lithium ion batteries.
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