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University of Michigan receives $1.3M to improve urea production and reduce carbon dioxide emissions

The production of the fertilizer urea is one of the largest carbon dioxide emitters in the chemical industry, but it doesnโ€™t have to be that way. With $1.3 million in funding from the W. M. Keck Foundation, a new, more sustainable approach for produc
United States Nirala Singh Charles Mccrory Rohini Bala Chandran Suljo Linic Jovan Kamcev

Understanding a cerium quirk could help advance grid-scale energy storage

It turns out cerium flow batteries lose voltage when electrolyte molecules siphon off energy to form different complexes around the metal When the cerium atom is short three electrons, it is surrounded by water molecules. But when it gives up a fourth electron, some water molecules shift out of t
United States Nirala Singh Cailin Buchanan Bryan Goldsmith Dylan Herrera Goldsmith Lab
Source: umich.edu

SunHydrogen Shares Q3 Update on Progress Toward 2022 Milestones for Commercialization of its Nanoparticle-Based Green Hydrogen Technology

19.09.2022 - SANTA BARBARA, CA, Sept. 19, 2022 (GLOBE NEWSWIRE) - SunHydrogen, Inc. (OTC: HYSR), the developer of a breakthrough technology to produce renewable hydrogen using sunlight and water, today provided a Q3 update on the Companys progress toward ... Seite 1
United States Nirala Singh Singh Lab University Of Michigan Chromis Technologies

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Electron transfer discovery is a step toward viable grid-scale batteries

ย E-Mail The liquid electrolytes in flow batteries provide a bridge to help carry electrons into electrodes, and that changes how chemical engineers think about efficiency. The way to boost electron transfer in grid-scale batteries is different than researchers had believed, a new study from the University of Michigan has shown. The findings are a step toward being able to store renewable energy more efficiently. As governments and utilities around the world roll out intermittent renewable ene...
United States Nirala Singh Bryan Goldsmith Jacob Florian Argonne National Laboratory University Of Michigan Office Research

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