TY - JOUR
T1 - Selective recovery of micrometer particles from mixtures using a combination of selective aggregation and dissolved-air flotation
AU - Van Hee, P.
AU - Lin, W. K.
AU - Benac-Vegas, L.
AU - Van der Lans, R. G.J.M.
AU - Koper, G. J.M.
AU - Van der Wielen, L. A.M.
PY - 2006/6/1
Y1 - 2006/6/1
N2 - Particle-particle separation in biotechnology has gained interest over the years due to the large number of processes that yield particle mixtures. Direct isolation of the product-containing particles is a logical and efficient downstream processing route in these processes. Dissolved-air flotation is applicable for these separations when the particles that require separation have different interactions with the air bubbles and/or differ in aggregation behaviour. In this work, model particles consisting of micrometer-sized protein-coated polystyrene particles were used to investigate the requirements for the application of dissolved-air flotation for particle-particle separation in biotechnology. These model particles have heterogeneous surfaces with surface groups (brushes) that extend out into the solution. Therefore, steric (or brush) repulsion and so-called hydrophobic interactions between the particles need to be taken into account. The flotation behaviour of the protein-coated particles was related to the size of the aggregates and the foaming behaviour of the proteins. Prediction of their aggregation behaviour was performed on the basis of calculations of the Van der Waals, electrostatic, hydrophobic and brush interactions. The brush interaction force proves to be essential for the prediction of the aggregation behaviour of the particles.
AB - Particle-particle separation in biotechnology has gained interest over the years due to the large number of processes that yield particle mixtures. Direct isolation of the product-containing particles is a logical and efficient downstream processing route in these processes. Dissolved-air flotation is applicable for these separations when the particles that require separation have different interactions with the air bubbles and/or differ in aggregation behaviour. In this work, model particles consisting of micrometer-sized protein-coated polystyrene particles were used to investigate the requirements for the application of dissolved-air flotation for particle-particle separation in biotechnology. These model particles have heterogeneous surfaces with surface groups (brushes) that extend out into the solution. Therefore, steric (or brush) repulsion and so-called hydrophobic interactions between the particles need to be taken into account. The flotation behaviour of the protein-coated particles was related to the size of the aggregates and the foaming behaviour of the proteins. Prediction of their aggregation behaviour was performed on the basis of calculations of the Van der Waals, electrostatic, hydrophobic and brush interactions. The brush interaction force proves to be essential for the prediction of the aggregation behaviour of the particles.
KW - Dissolved-air flotation
KW - Heteroaggregation
KW - Particle-particle separation
KW - Selective aggregation
KW - Steric/brush repulsion
UR - http://www.scopus.com/inward/record.url?scp=33747875857&partnerID=8YFLogxK
U2 - 10.1016/j.colsurfa.2006.02.003
DO - 10.1016/j.colsurfa.2006.02.003
M3 - Article
AN - SCOPUS:33747875857
SN - 0927-7757
VL - 280
SP - 216
EP - 231
JO - Colloids and Surfaces A: Physicochemical and Engineering Aspects
JF - Colloids and Surfaces A: Physicochemical and Engineering Aspects
IS - 1-3
ER -