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  2. Great Lakes Chemical Corporation - Wikipedia

    en.wikipedia.org/wiki/Great_Lakes_Chemical...

    Great Lakes Chemical Company was founded in Michigan in 1936 to extract bromine from underground salt water brine deposits. It was acquired by McClanahan Oil in 1948 and rechristened Great Lakes Oil and Chemical Company, but by 1960 the company had moved away from oil and gas, instead focusing on the research and production of bromine-based chemicals.

  3. Bromine production in the United States - Wikipedia

    en.wikipedia.org/wiki/Bromine_production_in_the...

    Chemtura, a Philadelphia-based corporation, operates four plants through its subsidiary, Great Lakes Solutions. Three plants are in the vicinity of El Dorado, and all in Union County, Arkansas. In 2007, Chemtura had the capacity to produce 130,000 tonnes of bromine per year. Since 1969, all US bromine has been produced from subsurface brine.

  4. Tribromine octoxide - Wikipedia

    en.wikipedia.org/wiki/Tribromine_octoxide

    Tribromine octoxide is a binary inorganic compound of bromine and oxygen with the chemical formula Br 3 O 8. [ 1 ] [ 2 ] This is a free radical and one of the most complex bromine oxides . Synthesis

  5. Oxidizing agent - Wikipedia

    en.wikipedia.org/wiki/Oxidizing_agent

    The international pictogram for oxidizing chemicals. Dangerous goods label for oxidizing agents. An oxidizing agent (also known as an oxidant, oxidizer, electron recipient, or electron acceptor) is a substance in a redox chemical reaction that gains or "accepts"/"receives" an electron from a reducing agent (called the reductant, reducer, or electron donor).

  6. Bromine compounds - Wikipedia

    en.wikipedia.org/wiki/Bromine_compounds

    Industrially, it is mainly produced by the reaction of hydrogen gas with bromine gas at 200–400 °C with a platinum catalyst. However, reduction of bromine with red phosphorus is a more practical way to produce hydrogen bromide in the laboratory: [2] 2 P + 6 H 2 O + 3 Br 2 → 6 HBr + 2 H 3 PO 3 H 3 PO 3 + H 2 O + Br 2 → 2 HBr + H 3 PO 4

  7. World’s lakes are losing oxygen faster than oceans, climate ...

    www.aol.com/world-lakes-losing-oxygen-faster...

    It’s not just oceans that are in trouble from climate change. Oxygen levels in temperate freshwater lakes are plummeting worldwide, a new study suggests. The climate-change-driven trend ...

  8. Bromine - Wikipedia

    en.wikipedia.org/wiki/Bromine

    Bond energies to bromine tend to be lower than those to chlorine but higher than those to iodine, and bromine is a weaker oxidising agent than chlorine but a stronger one than iodine. This can be seen from the standard electrode potentials of the X 2 /X − couples (F, +2.866 V; Cl, +1.395 V; Br, +1.087 V; I, +0.615 V; At, approximately +0.3 V).

  9. Fact check: Yale library's fire system protects rare books ...

    www.aol.com/news/fact-check-yale-librarys-fire...

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