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Novozymes has launched Eversa Transform, the first commercially available enzymatic solution (a liquid lipase) to convert both glycerides and free fatty acids (FFA) into biodiesel. waste oils with high FFAs have not been a viable feedstock option. free fatty acids (FFA). FFA—i.e., Recommended conditions for the enzyme reactor: 0.7%
American Process Incorporated (API) recently launched a waste-to-cellulosic ethanol biorefinery project in Alpena, Michigan. The biorefinery will convert the process waste effluent from the plant into cellulosic ethanol, sodium acetate and clean, warm water. Dewatered solids are then returned to the biomass boiler.
Two chemists at Brown University have streamlined the conversion of waste vegetable oil (WVO) into biodiesel, eliminating the need for corrosive chemicals to perform the reactions. The reaction is complete when all of the molecules have been converted into smaller components known as fatty acid esters.
The projects, led by universities, private companies, and national laboratories, were selected to develop technologies to advance UNF recycling, reduce the volume of high-level waste requiring permanent disposal, and provide safe domestic advanced reactor fuel stocks. Award amount: $4,900,000). Award amount: $1,580,774).
Using a novel, reusable carbon material derived from old rubber tires, an Oak Ridge National Laboratory (ORNL)-led research team has developed a simple method to convert used cooking oil into biofuel. The patent-pending, waste oil-to-biofuel conversion adds a new approach to waste tire recycling initiatives. Resources.
A new study published in the journal Nature Materials has found a way to suppress the thermal conductivity in sodium cobaltate so that it can be used to harvest waste energy, with potential applications such as automotive waste heat recovery. CoO 2 , which has a large-period superstructure. —Voneshen et al. Gutmann, M.
The platform technology is also being commercialized for conversion of waste brines to chemicals and desalinated water. Mangrove’s modular solution can be scaled to any capacity and co-located with upstream lithium producers or cathode and cell manufacturers. The process creates an effluent stream with salinity below 3,000 ppm.
In the study, the team investigated the combustion of biodiesel from various types of feedstocks—soybean methyl ester (SME); tallow oil (TO); and waste cooking oil (WCO)—in a variety of volume percent blends (B00, B20, B50, and B100) using a bench-top combustion chamber in a laboratory setting. Kumar et al.
The project will convert spodumene concentrate sourced principally from Piedmont’s international project investments to expand significantly the US supply of lithium hydroxide, a key component in the manufacturing of EV batteries. Planned completion and start of production is in 2025.
Olivine is a CO 2 -reactive waste product that can be returned as tailings after capture carbon from the air. Travertine will launch a transformative process that integrates strong acid treatment of mining waste or tailings with electrolytic acid recycling. Pacific Northwest National Laboratory. University of Nevada, Reno.
The thermochemical production of hydrogen and oxygen from water via a series of chemical reactions is of interest because it directly converts thermal energy into stored chemical energy (hydrogen and oxygen), and thus can take advantage of excess heat given off by other processes. NaMnO 2 at 850 °C; Na + extraction from ? —Mark Davis.
Two separate research collaborations have recently reported advances in the efficiency of thermoelectric materials in converting heat to electricity. for the materials and possibly good enough for consideration for waste heat recovery in automotive exhaust systems. The study by Yan et al. was published in the ACS journal Nano Letters.
New Zealand-based waste gas and syngas to fuels company LanzaTech ( earlier post ) has attracted US$18 million in Series B financing from investors led by China-focused venture capital firm Qiming Ventures. LanzaTech uses proprietary bacteria to convert industrial waste gases into fuels and chemicals. Gary Reischel.
Hago Energetics, Inc aims to help farms become more profitable by converting farm waste to high-value products, such as hydrogen and valuable carbons. This innovation is a sodium all solid-state battery system that offers low cost, safe and long lasting energy storage to reduce electricity bills and achieve energy self-sustainability.
Waste Heat Capture (2 projects). Eagle Picher, in partnership with the Pacific Northwest National Laboratory, will develop a new generation of high energy, low cost planar liquid sodium beta batteries for grid scale electrical power storage applications. Building Efficiency (3 projects). Conventional Energy (1 project). ENERGY STORAGE.
In an integrated system, stored hydrogen can be converted back to electricity or used as a feedstock with atmospheric or source carbon dioxide (CO 2 ) to produce a liquid fuel for heavy-duty vehicles including trucks and jet planes. Analysis of excess and/or waste hydrogen sources. Combined heat and power (CHP) fuel cell systems.
This chemically rearranges seawater molecules (hydrogen, oxygen, and sodium chloride) based on their constituent ions charge, resulting in the production of an acid (hydrochloric acid) and a base (sodium hydroxide). percent seawater flow where it reacts with the dissolved inorganic carbon in it, converting it to dissolved CO 2.
Compared to conventional electricity generation and transmission, CHP captures the otherwise wasted heat and makes it available for useful application. GENSETS project teams will develop advanced generators to produce electricity from piped-in natural gas while using the ‘waste’ heat to reduce the energy used by furnaces and water heaters.
According to Gates, founder and chairman of TerraPower, Natrium will “be the most advanced nuclear facility in the world, and it will be much safer and produce far less waste than conventional reactors.” Unlike water, the sodium doesn’t need to be pumped, because as it gets hot, it rises, and as it rises, it cools off.
Several companies are developing chemical processes, but these are still at pilot scale, and Aqua’s execs see serious challenges in delivering the required product purity and dealing with waste streams. Charged : Do different companies handle different steps of the process that converts spent battery packs to minerals?
Several companies are developing chemical processes, but these are still at pilot scale, and Aqua’s execs see serious challenges in delivering the required product purity and dealing with waste streams. Charged : Do different companies handle different steps of the process that converts spent battery packs to minerals?
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