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  2. Blast furnace gas - Wikipedia

    en.wikipedia.org/wiki/Blast_furnace_gas

    Blast furnace gas (BFG) [1] is a by-product of blast furnaces that is generated when the iron ore is reduced with coke to metallic iron. It has a very low heating value , about 3.5 MJ/m 3 (93 BTU /cu.ft), [ 2 ] because it consists of about 51 vol% nitrogen and 22 vol% carbon dioxide , which are not flammable.

  3. BFGoodrich - Wikipedia

    en.wikipedia.org/wiki/BFGoodrich

    The former BFGoodrich smoke stacks at the old tire plant, and headquarters in Akron, Ohio. Founded by Dr. Benjamin Franklin Goodrich in 1870, the B.F. Goodrich Company, later known as BFGoodrich, was among the first rubber tire manufacturers to be located west of the Appalachian mountain range. In the previous year, Goodrich had purchased the ...

  4. Benjamin Goodrich - Wikipedia

    en.wikipedia.org/wiki/Benjamin_Goodrich

    Benjamin Franklin Goodrich (November 4, 1841 – August 3, 1888) was an American industrialist in the rubber industry and founder of B.F. Goodrich Company. [ 1 ] Early life

  5. Goodrich Corporation - Wikipedia

    en.wikipedia.org/wiki/Goodrich_Corporation

    The Goodrich Corporation, formerly the B.F. Goodrich Company, was an American manufacturing company based in Charlotte, North Carolina.Founded in Akron, Ohio in 1870 as Goodrich, Tew & Co. by Dr. Benjamin Franklin Goodrich, the company name was changed to the "B.F. Goodrich Company" in 1880, to BFGoodrich in the 1980s, and to "Goodrich Corporation" in 2001.

  6. Infrared spectroscopy correlation table - Wikipedia

    en.wikipedia.org/wiki/Infrared_spectroscopy...

    weak to strong (usually 3 or 4) 1500 1580 1600 C≡C terminal alkynes 2100–2140 weak disubst. alkynes 2190–2260 very weak (often indistinguishable) C=O aldehyde/ketone saturated aliph./cyclic 6-membered 1720 α,β-unsaturated 1685 aromatic ketones 1685 cyclic 5-membered 1750 cyclic 4-membered 1775 aldehydes 1725

  7. Potassium superoxide - Wikipedia

    en.wikipedia.org/wiki/Potassium_superoxide

    4 KO 2 + 2 H 2 O → 4 KOH + 3 O 2 2 KO 2 + 2 H 2 O → 2 KOH + H 2 O 2 + O 2 [9] It reacts with carbon dioxide, releasing oxygen: 4 KO 2 + 2 CO 2 → 2 K 2 CO 3 + 3 O 2 4 KO 2 + 4 CO 2 + 2 H 2 O → 4 KHCO 3 + 3 O 2. Theoretically, 1 kg of KO 2 absorbs 0.310 kg of CO 2 while releasing 0.338 kg of O 2. One mole of KO 2 absorbs 0.5 moles of CO 2 ...

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