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  2. Ferrochrome - Wikipedia

    en.wikipedia.org/wiki/Ferrochrome

    Ferrochrome or ferrochromium (FeCr) is a type of ferroalloy, that is, an alloy of chromium and iron, generally containing 50 to 70% chromium by weight. [ 1 ] [ 2 ] Ferrochrome is produced by electric arc carbothermic reduction of chromite .

  3. Smelting - Wikipedia

    en.wikipedia.org/wiki/Smelting

    Smelting is a process of applying heat and a chemical reducing agent to an ore to extract a desired base metal product. [1] It is a form of extractive metallurgy that is used to obtain many metals such as iron , copper , silver , tin , lead and zinc .

  4. Zinc smelting - Wikipedia

    en.wikipedia.org/wiki/Zinc_smelting

    There are two methods of smelting zinc: the pyrometallurgical process and the electrolysis process. [2] Both methods are still used. [2] [4] Both of these processes share the same first step: roasting. The top path is the pyrometallurgical process of smelting zinc and the bottom path is the electrolytic process.

  5. Chromite - Wikipedia

    en.wikipedia.org/wiki/Chromite

    The reaction between these gases and the solid chromite grains results in the reduction of the chromite and allows for the formation of iron and chromium alloys. There could also be a formation of metal carbides from the interaction with chromite and the gases. [13] Chromite is seen to form early in the crystallization process.

  6. Rate-determining step - Wikipedia

    en.wikipedia.org/wiki/Rate-determining_step

    As an example, consider the gas-phase reaction NO 2 + CO → NO + CO 2.If this reaction occurred in a single step, its reaction rate (r) would be proportional to the rate of collisions between NO 2 and CO molecules: r = k[NO 2][CO], where k is the reaction rate constant, and square brackets indicate a molar concentration.

  7. Reaction rate constant - Wikipedia

    en.wikipedia.org/wiki/Reaction_rate_constant

    where A and B are reactants C is a product a, b, and c are stoichiometric coefficients,. the reaction rate is often found to have the form: = [] [] Here ⁠ ⁠ is the reaction rate constant that depends on temperature, and [A] and [B] are the molar concentrations of substances A and B in moles per unit volume of solution, assuming the reaction is taking place throughout the volume of the ...

  8. Solid-state reaction route - Wikipedia

    en.wikipedia.org/wiki/Solid-state_reaction_route

    The solid-state reaction route is the most widely used method for the preparation of polycrystalline solids from a mixture of solid starting materials. Solids do not react together at room temperature over normal time scales and it is necessary to heat them to much higher temperatures, often to 1000 to 1500 °C, in order for the reaction to occur at an appreciable rate.

  9. Rate equation - Wikipedia

    en.wikipedia.org/wiki/Rate_equation

    The rate of the overall reaction depends on the slowest step, so the overall reaction will be first order when the reaction of the energized reactant is slower than the collision step. The half-life is independent of the starting concentration and is given by t 1 / 2 = ln ⁡ ( 2 ) k {\textstyle t_{1/2}={\frac {\ln {(2)}}{k}}} .