Elephant Toothpaste Reaction I Simple Chemistry Experiment I Science Experiment Shorts | BYJU’S

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In this Experiment Shorts, we perform the world-famous Elephant Toothpaste reaction. Add some hydrogen peroxide, some dish soap, and food colours to a beaker. After stirring, add the final ingredient, Potassium Permanganate, and BOOM! Enjoy the beautiful foamy eruption from the reaction!

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Date: January 25, 2023

48 thoughts on “Elephant Toothpaste Reaction I Simple Chemistry Experiment I Science Experiment Shorts | BYJU’S

  1. It leaves no trace of chemical residues due to how the peroxide fully decomposes

    It removes odours caused by hydrogen sulphide gas

    It is biodegradable through the way it immediately disintegrates in water

    It will not pollute water, nor will it contaminate soils

    If you apply it to irrigation systems, it will clean organic deposits from them.

    Why Stabilise Hydrogen Peroxide Disinfectant?

    Although untreated hydrogen peroxide has benefits as a disinfectant, it also has certain disadvantages.

    It is unstable, making it only effective for short periods of time.

    If added to water with a hot temperature, this can compromise the effectiveness of hydrogen peroxide.

    Hydrogen peroxide will react with catalase, an enzyme that shields bacteria. Bacteria produce this enzyme as a defence mechanism, and the more they produce, the less effective hydrogen peroxide will be as a disinfectant.

    However, if you stabilise hydrogen peroxide, the stabilisation agent will react with the catalase and destroy it.

    Once this occurs, the hydrogen peroxide is then free to eliminate the bacteria, by penetrating the walls of its cells.

    Traditionally, the common method for stabilising hydrogen peroxide is by using silver.

    But while this is a well-established and effective method, there are potential pollution issues with the disposal of silver.

    A Next Generation Alternative for Stabilised Hydrogen Peroxide

    Oxyl-Pro is a next generation disinfectant with multiple applications, including water treatment.

    It uses only food-safe ingredients, instead of silver, to stabilise the aseptic grade hydrogen peroxide that is the basis for its formulation.

    This unique form of stabilisation involves encapsulated molecules, which activate only when in contact with specific biological markers.

    This creates a highly-focused disinfectant, helping to eliminate waste, while being suitable for a broad range of water treatments. Oxyl-Pro will remove and prevent biofilm, and it is effective in eliminating legionella and pseudomonas from water systems.

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