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Louisiana Governor Bobby Jindal and Juniper GTL LLC President Vianney Valès announced the company will invest $100 million to renovate a dormant steam methane reformer in the Westlake, Louisiana area and convert it to a natural gas-to-liquids (GTL) facility, producing waxes, drilling fluids, diesel and naphtha. Earlier post.).
According to DTF’s analysis of S&P Global Mobility TIPNet Vehicles in Operation Data as of December 2022: Diesel dominates the trucking sector: For the largest commercial trucks (Class 8) in operation that are 2010 or later model years, 95.4% For the entire (Class 3-8) commercial truck population of more than 15 million vehicles, 75.6%
This project will expand Anovion’s existing manufacturing capacity in Sanborn, NY—notably the only qualified US source of battery-grade synthetic graphite commercially shipping product today. Anovion’s selected site has critical infrastructure in place that will allow for an accelerated timeline for the construction of the facility.
Based on preliminary engineering studies to estimate the capital and operating costs for commercial scale production, Optinol Inc. has concluded that it is feasible to produce bio-butanol using its process at energy-cost-parity with ethanol. The bulk of the lab and pilot work has been conducted at Louisiana State University.
Amyris is presenting a summary of the results at the 34 th Symposium on Biotechnology for Fuels and Chemicals in New Orleans, Louisiana. The pilot-scale project use both free (soluble) sugars and biomass (cellulosic) sugars from Ceres’ sweet sorghum hybrids grown in Alabama, Florida, Hawaii, Louisiana and Tennessee.
Myriant Corporation, a global renewable chemicals company, announced the successful start-up at its flagship bio-succinic acid plant located in Lake Providence, Louisiana. Myriant has produced on-spec commercial product at the plant and anticipates that customer shipments will commence soon. —Stephen J. Gatto, Chairman and CEO.
This development is an integral part of Myriant’s manufacturing and commercialization strategy. Myriant Corporation announced the successful development of its proprietary process for producing targeted bio-based chemicals, including succinic acid and both L(+) and D(-) lactic acid, from non-food, renewable, cellulosic feedstocks.
This development is an integral part of Myriant’s manufacturing and commercialization strategy. Myriant Corporation announced the successful development of its proprietary process for producing targeted bio-based chemicals, including succinic acid and both L(+) and D(-) lactic acid, from non-food, renewable, cellulosic feedstocks.
While many algae-to-biofuels companies grow monocultures of algae within expensive enclosures, LiveFuels grows a mix of native algae species in low-cost, open-water systems. The results will be used for an expansion to full-scale commercial operations along the coast of Louisiana.
In addition to the Nat G 500 Series, Nat G CNG Solutions also offers larger units such as the Nat G 1000 Series and full-sized commercial stations. It is also the exclusive provider in Texas and Louisiana of the Simpkins Energy SE200 system, which offers low-cost fueling for smaller businesses and fleets.
Myriant utilizes its technology platform to develop renewable chemicals utilizing low-cost sugars. In December 2010, Myriant broke ground on its flagship 30 million pound commercial bio-succinic acid facility in Lake Providence, Louisiana and anticipates beginning commercial production in early 2013.
The US Department of Energy (DOE) announced more than $30 million in federal funding, matched by more than $35 million in private sector funds, for 68 projects that will accelerate the commercialization of promising energy technologies—ranging from clean energy and advanced manufacturing, to building efficiency and next-generation materials.
Manganese is a crucial element in nickel cobalt manganese (NMC) cathodes and can be used to improve the range of electric vehicles at a relatively lowcost. Automotive companies are increasingly turning to manganese-intensive forms of battery chemistry due to lower cost structures and improved performance.
LanzaTech, a producer of low-carbon fuels and chemicals from waste gases, was awarded a $4-million grant by the Advanced Research Projects Agency-Energy (ARPA-E) as one of the 15 REMOTE projects ( earlier post ) receiving a combined $34 million to find advanced biocatalyst technologies that can convert natural gas to liquid fuel for transportation.
These projects are to demonstrate the technical and economic feasibility of non-conventional geothermal energy technologies in three research areas: low temperature fluids, geothermal fluids recovered from oil and gas wells, and highly pressurized geothermal fluids. Louisiana Geothermal - Cameron Parish, La. - $5,000,000.
SOFC technologies enable efficient, cost-effective electricity generation from abundant domestic coal and natural gas resources, with minimal use of water and near-zero atmospheric emissions of carbon dioxide and pollutants. Sputtered Thin Films for Very High Power, Efficient, and Low-CostCommercial SOFCs.
ASCEND projects work to develop innovative, lightweight, and ultra-efficient all-electric powertrain with advanced thermal management systems that help enable efficient net-zero carbon emissions for single-aisle passenger commercial aircraft. University of Louisiana at Lafayette. Raytheon Technologies Research Center.
A pilot plant must produce AAM by March 31, 2024, and commercial production must commence by February 1, 2025. It has numerous benefits, including durability, it is lightweight, lowcost, and excellent conductivity. Magnis will supply Tesla with the AAM from a U.S. facility, which will eventually be built.
In 2015–expanded to emissions from residential, commercial, and other industrial combustion, and transportation fuels. Sources: Economy-wide including: electric, industrial, residential, commercial, transportation combustion, and industrial process emissions. Overview of WCI. Gases: All 6 Kyoto gases. In 2015–nearly 90% of emissions.
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