Europe’s chemical processing industry is based on unit operations that have proven their effectivity, but not necessarily their efficiency throughout history: Today’s standard batch production uses the same basic principles that have been used for many decades in Chemical Industry, often resulting in large volumetric footprint, high energy costs and limited control over product uniformity, leading to products with variable quality over time. A paradigm shift to continuous processing may be a solution to this problem provided that two main challenges that is, narrow residence time operating window and limited mixing efficiency in flow reactors are addressed. This is why continuous processing has currently limited application in Industries handling slow processes and multiphase or viscous flow streams, such as Polymer and Specialty Chemical Industries, which are of paramount importance to state and European Economies, and need to continuously pursue competitive advantages in process and product innovation.
SIMPLIFY aims at enabling transition from batch to continuous production in different Specialty Chemical Industries by electrification of different types of continuous flow reactors (Oscillatory Flow Reactors, Reactive Extruders and Tubular Reactors) while ensuring flexibility in terms of producing on-demand products with different quality attributes tailored for a range of applications. Electrification is realized by means of custom application of ultrasound (US) and microwaves (MW) technologies, which can be directly powered by renewable electricity, to the aforementioned flow reactors in order to intensify chemistry and transport phenomena (mass, heat and mixing) in a urethane additive, micro-sized zeolite and nano-sized titania processes to make them amenable to continuous operation mode. Collectively, SIMPLIFY advances the technology readiness level (TRL) of the novel US- and MW-flow technologies for multiphase streams, involving suspensions or viscous products, from TRL4 (technology validation in lab) to TRL6 (industrial demonstration).