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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 60. The condensation enhancement by EHD condensate drainage (Butrymowicz et al., 2003). Weatherley and Rooney (2008) reported the performance comparison of mechanical agitation and electrostatic spraying of the aqueous enzyme with the sunflower oil. The results of the study indicated that the reaction rate significantly increased and the dispersed phase hold-up in the recycle reactor was reduced by increasing the applied electric field (to 40 kV). 7.5 Electrochemical and photochemical processes Electrochemical process is a chemical process reaction that causes (or is caused by) the movement of electrical current. If the electrical energy is converted to chemical energy, the process is one of electrolysis. A reverse reaction that the electrical energy is generated can be made use of in accumulation or storage cells. Photochemical processes are chemical processes involving the absorption of light energy. Photochemical processes are usually initiated by visible, ultraviolet (UV), or infrared light. In such light-activated processes, an atom or molecule first absorbs the light energy and transits into an excited (activated) state before undergoing the chemical process. Electrochemical and photochemical processes have been widely applied to intensify water treatment process. They overcome the disadvantages of the traditional membrane-based processes, such as the high cost of the membrane, brine disposal, and post-treatment of water, which make them more economical for water treatment. Vasudevan et al. (2010) and Vasudevan et al. (2009) presented similar outcomes with an efficiency above 98% of the water treatment with electrochemical processes using aluminium alloy and stainless steel as the anode and cathode. They indicated the process could be scaled up to higher capacity. Krystynik et al. (2015) combined electrochemical and photochemical processes in the water treatment. Combining electrochemical and photochemical processes led to an increase of reductions of inorganic (Fe) loading to full organic decontamination in the water (98% using electrochemical processes only). 61

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