Active Clean Energy Materials & Manufacturing

"Conceptual Design of Tribo-Plasma Fluidised Beds through Multi-Scale Multi-Physics Modelling "

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AI plain-English summary

Static electricity from colliding particles could soon power chemical reactions inside industrial reactors. For centuries, engineers have known that materials charge up when they rub together—the same effect that makes a balloon stick to a wall—but they have mostly treated it as a nuisance or a hazard. In factories that handle powders, tribocharging can trigger dangerous electrostatic discharges, igniting explosive dust. This project turns that problem on its head. The researchers plan to deliberately generate tribocharging inside gas-solid fluidised bed reactors—tall vessels where particles are suspended in a gas stream—by making particles collide frequently with the walls and each other. The resulting electrical discharges would then drive chemical reactions, effectively using static electricity as a free energy source. If successful, the work could transform manufacturing processes that rely on gas-solid reactions, from producing pharmaceuticals to processing fuels, by reducing external energy inputs and eliminating the need for separate power sources. The project is fundamental engineering science—it uses multi-scale, multi-physics computer models to design a reactor concept that has never been built. But similar fundamental work on tribocharging already underpins photocopiers and laser printers, showing how a deeper understanding of contact electrification can lead to unexpected industrial tools.

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"It has been known for centuries that materials tend to charge electrically when they come into mechanical contact and separate. This charging is known as contact electrification, or tribocharging. While tribocharging is often observed in everyday life, such as the static electricity generated when rubbing a balloon against hair, or observed naturally in dust devils and sandstorms, it also has significant industrial implications. Tribocharging can create hazards due to electrostatic discharge, which is ionization of medium through dielectric breakdown, in gas-solid flow systems, such as pneumatic conveying and silo storage of explosive powders. However, the phenomenon can also be used for beneficial applications. For instance, tribocharging is used to enable photocopying and laser printing, and more recently, it has been employed to separate powders based on size and material in devices known as triboelectric separators. This project aims to utilise tribocharging and electric discharge as an energy source for reaction in gas- solid fluidized bed reactors. By inducing triboelectric charging within the fluidized bed through frequent collisions between solid particles and walls and resulting, we aim to generate electrical discharges that can be harnessed to drive chemical reactions. "

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Researchers

ShengYan Jiang (Student)

Related Research

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Triboemission and boundary film formation

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