This work presents an example of the design and manufacture capabilities that 3D printing can introduce in catalysis. A multi-purpose catalyst, with fast heat and mass transfer and low-pressure drop has been designed and manufactured by 3D printing. The novelty of the methodology is the combination of advanced techniques for accurate control on the micropore-level allied with a generic framework for the design of macropore and structural levels. The ability to design ordered macroporous should be combined with adequate and controllable implantation of surface functionalities. With this combination of advanced techniques for macro and micro-pore control, it is possible to produce catalysts that unlock traditional trade-off compromises betwee...
In recent decades, 3D printing (also known as additive manufacturing) techniques have moved beyond t...
In this work, we propose a novel methodology for the evaluation of the external mass transfer proper...
In this work, we propose a novel methodology for the evaluation of the external mass transfer proper...
This work presents an example of the design and manufacture capabilities that 3D printing can introd...
Small-scale, intensified chemical reactors (i.e., process intensification) mediated by structured ca...
Three-dimensional (3D)-printed catalysts are being increasingly studied; however, most of these stud...
This paper uses 3D printing methods to overcome mass and heat transport limitations in small-scale p...
The morphology of heterogeneous catalysts can impact their performance. However, standard manufactur...
Structured catalytic reactors are gaining considerable attention for integrated chemical synthesis b...
Structured catalytic reactors are gaining considerable attention for integrated chemical synthesis b...
Structured catalytic reactors are gaining considerable attention for integrated chemical synthesis b...
Structured catalytic reactors are gaining considerable attention for integrated chemical synthesis b...
Additive manufacturing of catalyst and sorbent materials promises to unlock large design freedom in ...
Identification of 3D printable materials is crucial to expand the breadth of physical and chemical p...
In this work, we propose a novel methodology for the evaluation of the external mass transfer proper...
In recent decades, 3D printing (also known as additive manufacturing) techniques have moved beyond t...
In this work, we propose a novel methodology for the evaluation of the external mass transfer proper...
In this work, we propose a novel methodology for the evaluation of the external mass transfer proper...
This work presents an example of the design and manufacture capabilities that 3D printing can introd...
Small-scale, intensified chemical reactors (i.e., process intensification) mediated by structured ca...
Three-dimensional (3D)-printed catalysts are being increasingly studied; however, most of these stud...
This paper uses 3D printing methods to overcome mass and heat transport limitations in small-scale p...
The morphology of heterogeneous catalysts can impact their performance. However, standard manufactur...
Structured catalytic reactors are gaining considerable attention for integrated chemical synthesis b...
Structured catalytic reactors are gaining considerable attention for integrated chemical synthesis b...
Structured catalytic reactors are gaining considerable attention for integrated chemical synthesis b...
Structured catalytic reactors are gaining considerable attention for integrated chemical synthesis b...
Additive manufacturing of catalyst and sorbent materials promises to unlock large design freedom in ...
Identification of 3D printable materials is crucial to expand the breadth of physical and chemical p...
In this work, we propose a novel methodology for the evaluation of the external mass transfer proper...
In recent decades, 3D printing (also known as additive manufacturing) techniques have moved beyond t...
In this work, we propose a novel methodology for the evaluation of the external mass transfer proper...
In this work, we propose a novel methodology for the evaluation of the external mass transfer proper...