Our investigation aims to apply Deterministic Lateral Displacement (DLD) to separate (deformable) particles or droplets from dispersions on industrial scale. DLD is a promising technique because it can separate particles smaller than the pores. Previous work shows how to manipulate the critical particle diameter in a sieve-based lateral displacement system by modifying the hydrodynamics. In this study, we apply this fundamental understanding of the DLD separation principle to deterministically displace particles in a cross-flow microsieve module. First, two-dimensional simulations of the fluid dynamics in this cross-flow module were performed to investigate the hydrodynamic conditions required for particle displacement. Next, these simulati...
Particle separation in microfluidic devices is a common problematic for sample preparation in biolog...
Deterministic lateral displacement (DLD) microsystems are suitable for the size fractionation of par...
Deterministic Lateral Displacement (DLD) is a relatively recent microfluidics-assisted technique whi...
Deterministic lateral displacement (DLD), a hydrodynamic, microfluidic technology, was first reporte...
Large industries such as for food and chemicals production, and for wastewater treatment always stri...
The advent of microfluidics in the 1990s promised a revolution in multiple industries from healthcar...
thesisUtilization of ultrafine particles becomes a major concern in the mineral processing industry ...
Deterministic Lateral Displacement (DLD) exploits the experimental observation that in microfluidics...
Deterministic lateral displacement technology was originally developed in the realm of microfluidics...
Deterministic lateral displacement (DLD) systems structure suspension flow in so called flow lanes.T...
Deterministic lateral displacement (DLD) is a high-resolution passive microfluidic separation method...
Deterministic lateral displacement (DLD) has been recently proposed as a simple and efficient method...
Deterministic lateral displacement devices have been proved to be an efficient way to perform contin...
Continuous separation of particles of different sizes and shapes is important in both clinical diagn...
Deterministic lateral displacement (DLD) is a size-based separation technique in microfluidic device...
Particle separation in microfluidic devices is a common problematic for sample preparation in biolog...
Deterministic lateral displacement (DLD) microsystems are suitable for the size fractionation of par...
Deterministic Lateral Displacement (DLD) is a relatively recent microfluidics-assisted technique whi...
Deterministic lateral displacement (DLD), a hydrodynamic, microfluidic technology, was first reporte...
Large industries such as for food and chemicals production, and for wastewater treatment always stri...
The advent of microfluidics in the 1990s promised a revolution in multiple industries from healthcar...
thesisUtilization of ultrafine particles becomes a major concern in the mineral processing industry ...
Deterministic Lateral Displacement (DLD) exploits the experimental observation that in microfluidics...
Deterministic lateral displacement technology was originally developed in the realm of microfluidics...
Deterministic lateral displacement (DLD) systems structure suspension flow in so called flow lanes.T...
Deterministic lateral displacement (DLD) is a high-resolution passive microfluidic separation method...
Deterministic lateral displacement (DLD) has been recently proposed as a simple and efficient method...
Deterministic lateral displacement devices have been proved to be an efficient way to perform contin...
Continuous separation of particles of different sizes and shapes is important in both clinical diagn...
Deterministic lateral displacement (DLD) is a size-based separation technique in microfluidic device...
Particle separation in microfluidic devices is a common problematic for sample preparation in biolog...
Deterministic lateral displacement (DLD) microsystems are suitable for the size fractionation of par...
Deterministic Lateral Displacement (DLD) is a relatively recent microfluidics-assisted technique whi...