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Heavy-duty diesel vehicles using mixing controlled compression ignition (MCCI), the most common ignition and combustion strategies for heavy-duty diesel engines, contribute significantly to the emissions of GHG, oxides of nitrogen (NO x ), and particular matter (PM) and are subject to stringent emission standards. Skaggs et al.
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. into locally produced, renewable hydrogen for Hyzon’s fleet of zero-emission commercial vehicles. 22 CCR § 66260.10 Definitions).
South San Francisco Scavenger Company (SSFSC) has submitted an application to the California Air Resources Board (ARB) seeking certification of Tier 2 pathways for biomethane (Bio-CNG) from anaerobic digestion (AD) of food waste and urban landscaping waste at their facility in South San Francisco, California. gCO 2 e/MJ and 0.28
With this zero-waste car, the team wants to show that waste can be a valuable material with a multitude of applications. Luca, the world’s first Zero-Waste car. During the UBQ conversion process, the unsorted residual waste stream is reduced into its more basic natural components. Photo by Bart van Overbeeke.
RWE's FUREC project, which aims to produce circular and green hydrogen from non-recyclable municipal solid waste in Limburg, the Netherlands, received a €108-million grant from the EU’s Innovation Fund. FUREC receives funding from the EU Innovation Fund, which is 100% financed by the EU Emissions Trading System (ETS). textiles, paper).
The CCS Full-Scale project is a central part of Norway’s efforts to reduce its carbon footprint and meet the European goal of climate-neutrality by 2050. The approved project would allow for the establishment of carbon capture facilities at Norcem, a cement factory in Brevik, and Fortum Oslo Varme, a Waste-to-Energy plant.
At its recent “Kia Sustainability Movement” virtual presentation, Kia Corporation announced a commitment to achieve carbon neutrality throughout its value chain by 2045. Achieving carbon neutrality will be based on three key pillars: Sustainable Mobility; Sustainable Planet; and Sustainable Energy. Earlier post.).
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.
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. —Saadi et al.
Keliber, a Finnish mining and battery chemical company that aims to start the sustainable production of battery-grade lithium hydroxide, has analyzed the CO 2 emissions generated by its future production using two studies. In the comparison, Keliber shows the lowest emission intensity of 4.38 Keliber plans to begin production in 2024.
DHL Global Forwarding, the air and ocean freight specialist of Deutsche Post DHL Group, says it will be neutralizing the carbonemissions 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 carbonemission of all our LCL shipments.
The plant will feature SGH2’s technology, which will gasify recycled mixed paper waste to produce green hydrogen that reduces carbonemissions 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.
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 study by researchers at CU Boulder and Edinburgh Napier University finds that high-density, low-rise environments such as those found in Paris are the optimal urban form when looking to reduce greenhouse gas emissions over their whole life cycle. However, urban environmental design often neglects life cycle GHG emissions.
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.
Black liquor is the waste byproduct from the kraft pulping process after pulping is completed. With an annual production capacity of 12,000 tons (about 15 million liters), the plant, due to come on stream by 2024, will allow the avoidance of up to 30,000 tons of CO 2 emissions per year by replacing fossil fuel for transportation.
By 2050, Cummins is targeting net-zero carbonemissions. PLANET 2050 focuses on three priority areas: addressing climate change and air emissions; using natural resources in the most sustainable way; and improving communities. Reduce volatile organic compounds emissions from paint and coating operations by 50%.
Korea’s Doosan Heavy Industries & Construction has embarked on the development of technology for producing hydrogen using waste plastic and vinyl. The company has signed a business partnership MOU with RevoTech, a company that specializes in the continuous pyrolysis of waste plastic. —Doosan Heavy CSO Yongjin Song.
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.,
The BMW Group is expanding sourcing of low-carbon steel to two suppliers, meeting up to 40% of steel demand at European plants by 2030. earlier post ) The BMW Group has now signed an agreement with Salzgitter AG for delivery of low-carbon steel. Our aim is to reduce vehicles’ lifecycle carbon footprint with a holistic approach.
Since forming in 2013, Argent Materials, a San Francisco Bay Area recycler of concrete and asphalt, and supplier of aggregate such as crushed rock, entry, cutback, sand, backfill and base rock for construction projects, has diverted more than a billion pounds of waste from local landfills.
has created a wholly-owned subsidiary, NetZero Metals, to begin the research and development of a processing facility that would be located in the Timmins, Ontario region with the goal of utilizing existing technologies to produce zero-carbon nickel, cobalt and iron products. Canada Nickel Company Inc.
The companies are joining efforts to implement the carbon-negative UBQ thermoplastic ( earlier post ) into auto parts manufactured by Motherson Group for the automotive industry. UBQ GHG Neutralizer additives enable processors to directly compensate cO 2 -equivalent emissions (GHG) generated by plastic polymers.
ClearFlame anticipates its engine running on ethanol can reduce GHG vehicle emissions by more than 45% and offer an estimated 15-30% TCO savings when compared with a diesel-fueled solution. Historically, clean-burning fuels, and those that are easy to make from waste CO 2 streams or syngas, have failed to ignite using MCCI. Johnson, B.,
The UK government is awarding £54 million to 15 projects to develop technologies that remove carbonemissions 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.
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.
Carbon Recycling International (CRI) and Johnson Matthey (JM) have agreed on a long-term exclusive catalyst supply agreement for the use of JM’s KATALCO methanol catalysts in CRI’s Emissions-To-Liquids (ETL) CO 2 -to-methanol plants. Hydrogen can also be processed from by-product hydrogen available in some industrial waste streams.
At an event held at its steel plant in Ghent, Belgium, ArcelorMittal inaugurated its flagship carbon capture and utilization (CCU) project. It will reduce annual carbonemissions from the Ghent plant by 125,000 tonnes. This project will reduce annual carbonemissions in Ghent by 112,500 tonnes. Earlier post.)
Historically, clean-burning fuels, and those that are easy to make from waste CO 2 streams or syngas, have failed to ignite using MCCI. Ethanol’s shorter hydrocarbon chains (two-carbon atoms vs diesel’s twelve- carbon atoms) reduce or eliminate soot formation under typical engine conditions. per mile.
Raven SR, a US-based renewable fuels company ( earlier post ), plans to build a waste-to-hydrogen production facility in Aragón, Spain, following the opening of its subsidiary Raven SR Iberia in Zaragoza, announced earlier this month. About 15% of feedstock is converted into a solid bio-carbon which can potentially be sold.
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.
PACCAR, Cummins and several customers including FedEx Freight and Knight-Swift will demonstrate the ability to achieve lower carbonemissions 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.
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 development project has the potential to reduce carbonemissions in the alumina refining process significantly. Electricity sourced from renewable energy would power compressors to turn waste vapor into steam, which would then be used to provide refinery process heat.
The 70% sustainable-material tire includes 13 featured ingredients across nine different tire components, including: Carbon black is included in tires for compound reinforcement and to help increase their life and has traditionally been made by burning various types of petroleum products.
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.
The specialized tread compound that provides enhanced all-season traction will include Monolith carbon black produced by methane pyrolysis. This tire, which will be manufactured with this specific carbon black, is the first tire for sale in the industry to have this type of carbon black produced by Monolith.
Neste has signed an agreement to charter two new lower-emission product tankers from Terntank. The tankers will transport a wide variety of liquid cargoes including renewable raw materials such as waste and residue oils and fats to Neste’s refineries.
LanzaTech UK and direct air capture technology company Carbon Engineering have partnered on a project to create sustainable aviation fuel (SAF) using atmospheric carbon dioxide (CO 2 ). Earlier post.). Project AtmosFUEL marks the first integration of these technologies.
million in funding for projects focused on producing cost-effective, low-carbon biofuels. The topic areas include high-impact biotechnology research, development, and demonstration to bolster the body of scientific and engineering knowledge needed to produce low-carbon biofuels at a lower cost. Award amount: $2,800,000).
According to the Intergovernmental Panel on Climate Change, greenhouse gas emissions must be reduced by 50%–85% by 2050 to limit global warming to two degrees Celsius (four degrees Fahrenheit). The transportation sector is the largest source of greenhouse gas emissions in the United States, accounting for about 28% of total carbonemissions.
The technology converts carbonemissions from steel mills or gasified waste biomass directly into MEG. The carbon capture technology uses a proprietary engineered bacterium to convert carbonemissions directly into MEG through fermentation, bypassing the need for an ethanol intermediate, and simplifying the MEG supply chain.
kg of natural gas per 100 kilometers in combination with CO 2 emissions of 117–111 g/km. TGI engine in the Golf operates according to the innovative Miller cycle principle, a combustion process that achieves low carbonemissions thanks to its high efficiency and a compression ratio of 12.5:1. WLTP fuel consumption is 4.3–4.1
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