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Researchers devise seawater-resilient bipolar membrane electrolyzer for turning seawater into hydrogen

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Researchers at the Department of Energy’s SLAC National Accelerator Laboratory and Stanford University with collaborators at the University of Oregon and Manchester Metropolitan University have developed a seawater-resilient bipolar membrane electrolyzer.

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Process for Hydrogen Production from Sodium Sulfite Solutions Resulting from Capture of SO2 from Coal Flue Gas

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A number of technologies have been employed for the capture and disposal of SO 2 from a flue gas stream. A typical example is the use of a dilute aqueous sodium hydroxide (NaOH) solution to absorb SO 2 from flue gas, forming an aqueous Na 2 SO 3 solution. Huang et al. under illumination from a low pressure mercury lamp.

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Sparc Technologies, QUT partner to develop a hard carbon anode material from bio-waste for Na-ion batteries

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Australia-based Sparc Technologies has entered into a strategic partnership agreement with the Queensland University of Technology (QUT). We will be targeting the production of materials for the high growth market of sodium-ion batteries which is displaying significant promise as an alternative to lithium-ion batteries.

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Researchers Develop New Lower-Cost, Efficient Catalyst for Water Gas Shift Reaction for Hydrogen Production

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A team of researchers from Tufts University, the University of Wisconsin-Madison and Harvard University report that alkali ions (sodium or potassium) added in small amounts activate platinum adsorbed on alumina or silica for the low-temperature water-gas shift (WGS) reaction (H 2 O+CO→ H 2 +CO 2 ) used for producing hydrogen.

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Self-propelled catalytic microparticles boost hydrogen release from liquid storage media

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Researchers at the University of California San Diego (UCSD) have developed catalytically active micromotors that significantly increase the release of hydrogen from liquid storage media. In a paper in the journal Angewandte Chemie , they introduce their new concept with a model vehicle powered by a hydrogen–oxygen fuel cell.

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New 3-step process for conversion of kraft lignin from black liquor into green diesel

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The process produces a toxic byproduct referred to as black liquor—a primarily liquid mixture of pulping residues (such as lignin and hemicellulose) and inorganic chemicals from the Kraft process (sodium hydroxide and sodium sulfide, for example). tons of black liquor dry solids. Vakkilainnen, from. Globally over 1.3 Löfstedt, J.,

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Porous Metal-Organic Frameworks Made from Food-Grade Natural Products; Edible MOFs for Gas Storage and Other Applications

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A team of researchers from Northwestern University, UCLA and the University of St. Within their pores, the MOFs can store gases such as hydrogen or carbon dioxide. Suitable candidates include ordinary table salt (sodium chloride), the common salt substitute potassium chloride, or potassium benzoate, an approved preservative.