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  1. 1 lut 2024 · This innovative strategy harnessed the advantages of water-miscible organic/water co-solvents and polar catalysts to effectively suppress water-induced side reactions and corrosion. Additionally, G 4 's presence inhibited dendrite formation and facilitated the kinetics of sulfur conversion.

  2. 13 maj 2023 · Both metagenomics and metatranscriptomic data for microbial communities in individual hydrothermal vent sites showed elemental sulfur oxidation to be the key reaction in the sulfur cycle (Fig....

  3. figure 1. diagram illustrating where the cycling of sulfur compounds plays a prominent role in the ocean. (1) in the upper water column, metabolism of organic sulfur com-pounds is of particular relevance. dimethylsulfoniopropionate (dMSP) pro-duced by algae (e.g., Emiliana huxleyi) is utilized by a diverse assemblage of microbes

  4. 7 gru 2018 · These plankton require zinc (Zn) to grow, but the cycle of Zn in the ocean is not well understood. We combined observations and a model to determine that plankton use Zn at highly variable rates, with lowest rates in the tropical oceans and highest rates in the Southern Ocean.

  5. 22 lis 2023 · Zinc-ion batteries (ZIBs) rely on a lithium-ion-like Zn 2+-shuttle, which enables higher roundtrip efficiencies and better cycle life than zinc-air batteries. Manganese-oxide cathodes in near-neutral zinc sulfate electrolytes are the most prominent candidates for ZIBs.

  6. 15 paź 2024 · Sulfur as a cathode material is a low-cost option along with showing an exceptional specific capacity; hence aqueous zinc-sulfur batteries (AZSBs) are investigated in recent years. This review begins with a comprehensive understanding of the fundamental sulfur redox reaction mechanism in AZSBs.

  7. 27 gru 2023 · Most of the sulfide is ultimately reoxidized back to sulfate, via diverse sulfur intermediates, by geochemical or microbial reactions that involve oxygen, nitrate, manganese [Mn (IV)], iron [Fe (III)], and other potential oxidants (e.g., Rickard, 2012).