Solids handling for intensified process technology

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Solids handling for intensified process technology ( solids-handling-intensified-process-technology )

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IbD PU Deliverable 3.1 Figure 54. The continuous TNO Helix reactor (TNO, 2015). Figure 55. The precipitation of CaCO3 in a straight tube (left) and in a TNO Helix tube (right) (TNO, 2015). 7 Electromagnetic fields 7.1 Microwaves The microwave region of electromagnetic radiation corresponds to the frequencies between 300 MHz and 300 GHz. In order not to compromise the use of microwaves in other technologies, such as radar and telecommunication, microwaves that correspond to wavelengths of 1 mm to 1 m and frequency from 1-30 GHz are typically assigned to industrial and scientific microwave heating and drying, which are an example of the use of electric fields for process intensification that have found widespread application in industry. Compounds with dielectric elements, such as water, can be heated easily by microwave irradiation. The penetration depth of microwave highly depends on the material property. Microwaves have been shown to give improvement in mass and heat transfer behaviour of chemical reactors (Feng et al., 2012). However, there are also disadvantages of microwaves, such as the selection of reactant (since compounds with no net dipole moment (i.e. carbon dioxide), do not easily absorb microwave) and the high investment costs. 54

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