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IbD PU Deliverable 3.1 Figure 2. Classification of process intensification (Moulijn and Stankiewicz, 2000). PI methods include multifunctional reactors, hybrid separations, and the usage of alternative energy sources such as microwave, light (e.g. UV), radio frequency (r.f.), and electric fields. Multifunctional reactors enhance chemical conversion and integrate reactions and downstream operations into a single unit. Examples include membrane reactors, reactive distillation, reactive crystallization, etc. (Moulijn and Stankiewicz, 2000). Multifunctional systems need not be limited to those incorporating reactors. To date, several of the discussed PI technologies have been successfully developed and commercialized such as rotating packed beds (Wang et al., 2011), reactive distillation (Harmsen, 2007), and micro reactors (Pennemann et al., 2004). Other PI technologies are still in the development/prototyping stage. Several institutions are devoted to PI research & development and commercialization such as the Process Intensification Group at Newcastle University, UK (academic), the Centre for Process Integration and Intensification – CPI2, at the University of Pannonia, headed by Professor Jiri Klemes (academic), the Energy Research Centre of the Netherlands (ECN) (private institution), and TWI Ltd. in Cambridge (industry). 2PDF Image | Solids handling for intensified process technology
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