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New technology unlocks longer lifespan for all-solid-state batteries

A new manufacturing technique is helping to overcome some of the major hurdles in developing more reliable and durable all-solid-state batteries. Combining a controlled sintering step with precise passivation, researchers from Paul Scherrer Institute PSI (Villigen, Switzerland; www.psi.ch) focused on…

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Porous electrodes enable high-pressure electrolysis

Much hydrogen produced via water electrolysis (“green” hydrogen) requires downstream compression for end use or storage. A new electrolyzer concept developed by Supercritical Solutions Ltd. (London; www.supercritical.solutions) produces high-pressure hydrogen using a membraneless technology. “Supercritical’s technology outputs hydrogen at pressures…

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A faster, lower-temperature method for generating graphite with iron-oxide catalyst

Traditional methods for making graphite involve heating premium needle coke and coal-tar pitch at temperatures above 3,000ºC in a process that requires several days of heating and cooling. A new process developed by researchers at the National Energy Technology Laboratory…

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Pilot plant launched for process that makes lime sustainably from industrial waste

Calcining limestone (CaCO3) to produce lime (CaO) is a key industrial process for making cement, steel and chemicals, among other uses. Lime production is a target for CO2-abatement efforts because it generates a great deal of CO2 emissions, not only…

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Organic flow-battery electrolyte powered by a supramolecular “handshake”

Flow batteries have been widely deployed in large-scale energy-storage applications in recent years, but the low energy density and high cost of the incumbent vanadium electrolyte limit the long-term return on investment of such systems. A new organic redox flow-battery…

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Kiln-free, bio-based “sintering” makes low-carbon, ceramic-like materials

A new process called BioSintering takes advantage of plant-based bio-active molecules to fuse together particles at mild temperatures, yielding an alternative material for conventional ceramic tiles with a much lower carbon footprint. Developed by Dekiln (Manchester, U.K.; www.dekiln.com), the technology…

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Subsurface synthesis could unlock a new source of ammonia

The search for a new ammonia-synthesis method has now driven research and development work underground, literally. Addis Energy (Somerville, Mass.; www.addisenergy.com) is launching a subsurface synthesis technology that takes advantage of geologic chemistry to produce ammonia. “Addis Energy’s process uses…

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Membrane-free electrochemical water-treatment method also generates power

Electrochemical water-treatment technologies facilitate the adsorption of ions, effectively removing contaminants such as calcium, magnesium, bromine and more. Such processes, however, are often hampered by the high costs associated with electrode regeneration and the use of ion-exchange membranes. A new…

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Process achieves high yield and selectivity for converting polystyrene to toluene

Polystyrene (PS) is among the more difficult-to-recycle fractions of plastic waste, but could be a source of valuable aromatic petrochemicals, such as toluene. Prior approaches to convert PS to toluene have exhibited low yields and a range of products. Now,…

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Quantum chemistry helps uncover path to safer ozone-based water disinfection

Ozone is seen an a safer and more environmentally friendly alternative to chlorine for water disinfection, but the efficient generation of ozone on-demand and at commercially relevant scales has been hindered by catalytic degradation problems. A team of researchers from…