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  2. Potassium alum - Wikipedia

    en.wikipedia.org/wiki/Potassium_alum

    After the fall of Constantinople, alunite (the source of alum) was discovered at Tolfa in the Papal States (1461). The textile dyeing industry in Bruges, and many locations in Italy, and later in England, required alum to stabilize the dyes onto the fabric (make the dyes "fast") and also to brighten the colors. [15] [16]

  3. Hair bleaching - Wikipedia

    en.wikipedia.org/wiki/Hair_bleaching

    Bleaching the hair is a gradual process and different colors may be achieved dependent on the original hair color, application time, and strength of the product used. Applied on black hair, the hair will change its color to brown, red, orange, orange-yellow, yellow, and finally pale yellow. [19]

  4. Natural dye - Wikipedia

    en.wikipedia.org/wiki/Natural_dye

    Iron mordants "sadden" colors, while alum and tin mordants brighten colors. Iron, chrome and tin mordants contribute to fabric deterioration, referred to as "dye rot". Additional modifiers may be used during or after dying to protect fibre structure, shift pH to achieve different color results, or for any number of other desirably outcomes.

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  6. Alum - Wikipedia

    en.wikipedia.org/wiki/Alum

    Crystal of potassium alum, KAl(SO 4) 2 ·12H 2 O. An alum (/ ˈ æ l ə m /) is a type of chemical compound, usually a hydrated double sulfate salt of aluminium with the general formula X Al(SO 4) 2 ·12 H 2 O, such that X is a monovalent cation such as potassium or ammonium. [1] By itself, "alum" often refers to potassium alum, with the ...

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    It's made with commercial-grade, heavy-gauge aluminum and topped with a PFOA-free nonstick coating, so it heats up fast, distributes heat evenly and your food won't get stuck to it.

  9. Colour fastness - Wikipedia

    en.wikipedia.org/wiki/Colour_fastness

    Colour fastness is a term—used in the dyeing of textile materials—that characterizes a material's colour's resistance to fading or running.Colour fastness is the property of dyes and it is directly proportional to the binding force between photochromic dye and the fibre.