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University of Pécs Institute of Pharmaceutical Technology and Biopharmacy 2019.10.03. 12:02 1
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Page 1: University of Pécs Institute of Pharmaceutical Technology ...

University of Pécs

Institute of Pharmaceutical Technology and Biopharmacy

2019.10.03. 12:02 1

Page 2: University of Pécs Institute of Pharmaceutical Technology ...

Mixing may be defined as a unit operation that aims

to homogenize two or more components.

During mixing two or more substances get into

homogeneous distribution in each other.

Definition of mixing

10/3/2019 12:02 PM 2

Page 3: University of Pécs Institute of Pharmaceutical Technology ...

Theory of Mixing

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• Self-mixing materials (mixing occurs due to heat movements of molecules, generally a slow process. Such materials are gases and liquids with low viscosity.)

• Non-self-mixing materials :

1. Structures retaining mixture state

– powders,

– liquid with high viscosity,

– stabile disperse structures.

2. Structures non-retaining mixture state

– suspension,

– emulsion, which are separating into phaseses.

In pharmaceutical practice can be:

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Aims• homogenization,• dispersion (emulsifying, suspending),• heating,• cooling,• wetting,• drying,• crystallization,• disintegration,• granulation,• preparation of ointment and suppositories,• microencapsulation,• preparation of micropellets,• preparation of nano medicines,• chemical reaction,• biochemical reaction, fermentation• biopharmacy examination (e.g. dissolution, membrane permeability),• coating.

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During the operation of mixing, several processes, phenomena can be regarded:

• increase in particle size (e.g. at granulation),

• decrease in particle size (e.g. at emulsifying),

• deformation (e.g. at disintegration),

• flowing property of material.

Page 7: University of Pécs Institute of Pharmaceutical Technology ...

• At laminar flow, vector of speed of particles is parallel along flow line

(parallel with axle tube).

Particles move orderly next to each other without any mixing.

• At turbulent flow, movement of particles shows only overall the flow

line. Due to the swirling, whirling movement of the particles, the layers

next to each other are blended.

Flow of material can be laminar and turbulent:

Page 8: University of Pécs Institute of Pharmaceutical Technology ...

Flow of material can be laminar and turbulent:

Laminar flow or streamline flow in pipes (or tubes) occurs when a fluid flows in parallel layers, with no disruption between the layers.At low velocities, the fluid tends to flow without lateral mixing. There are no cross-currents perpendicular to the direction of flow, nor eddies or swirls of fluids.In laminar flow, the motion of the particles of the fluid is very orderly with all particles moving in straight lines parallel to the pipe walls.

Turbulent flow is a flow regime characterized by chaotic property changes. This includes rapid variation of pressure and flow velocity in space and time.In contrast to laminar flow the fluid no longer travels in layers and mixing across the tube is highly efficient.

Page 9: University of Pécs Institute of Pharmaceutical Technology ...

Euler number (Eu) is a specific non-dimensional number

to flow occurring at mixing:

35nd

PEu

P = performance of stirrer

d = diameter of stirrer

n = rotational speed of stirrer

ρ = density of mixed material

Page 10: University of Pécs Institute of Pharmaceutical Technology ...

Reynolds number (Re) is also a specific non-dimensional

number for mixing.

The value of Re in laminar interval is from 10 to 60, in

turbulent interval is >103

nd 2

Re

μ = dynamic viscosity of the fluid

d = diameter of stirrer

n = rotational speed of stirrer

ρ = density of mixed material

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Euler-Reynolds diagram

laminar

transitional

turbulent

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The performance required for mixing can be characterized

by the following expression:

53

e DnNP

Ne = Newton-number (resistance factor)

[number without dimension]

ρ = density of material

n = speed of stirrer

D = diameter of stirrerD

Page 13: University of Pécs Institute of Pharmaceutical Technology ...

Degree of mixing (M) can be calculated from relative

standard deviation and can be characterized by the

following first-order kinetic formula:

kt

o e)RSDRSD(RSDM

RSDo = relative standard deviation in initial stage

RSD∞ = relative standard deviation at the measured degree of mixing

k = rate constant

t = time

Page 14: University of Pécs Institute of Pharmaceutical Technology ...

Practice of mixing

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What type of mixer should be chosen?

What should be stirred?

• liquid’s mixture,

• dissolution (dissolution of solid substances),

• suspension,

• emulsion,

• ointment,

• paste

• powder

• granules

• dragée formation

liquid

semi-solid

solid

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Speed of mixing:

• slow stirring speed < 100 rpm

to avoid sedimentation, for crystallization

• medium stirring speed 100 - 1000 rpm

for viscous substances, syrups, ointments

• fast stirring speed > 1000 rpm

to dissolve of solid substances,

for preparation of liquid mixtures

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Mixing of liquids

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Propellers

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Axial flow

Four blade

oblique stirrer

Tree blade

popeller stirrer

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Radial flow

Disc turbine

stirrer

Opened turbine

stirrer

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Tangential flow

Plate stirrer

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Tangential flow

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Blade mixer

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Anchor mixer

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Kneading stirrer

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DD

h

h

1D

hk 5,1

D

hk

poor wettable

materials

h = heightD = stirrer diameter

good wettable

materials

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magnetic stirrer

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Vortex stirrer

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Ultrasonic stirrer

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Vibration stirer

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Rapid mixer

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shaker

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shaker

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industrial opened duplicator withoblique stirrer

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industrial closed duplicator withstirrer

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industrial closedduplicator with stirrer

Duplicator apparatus

with propeller stirrerUpper and lower powered industrial

duplicators with oblique stirrer

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Reractors for chemical (organic synthesis), fermentorsduplicartors crytallization and equipments for biotechnologicaloperations

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Double Shafts Paddle Mixer

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Horizontal ribbon Mixer

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Fermenters

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Biotechnology

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Mixing of

semisolids

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Planetary mixer

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Planetary mixer

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Planetary mixer

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Triple-roll-mill

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Preparation of cosmetics

Automated production line for making ointments and creams

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Preparation of suppositories

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Preparation of suppositories

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Static mixer

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Mixing of solids

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Rotating cube mixer

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same direction of axis

Drum mixer

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alternate direction of axis

Drum mixer

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Double cone mixer

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a./ b./

The horizontal layers

are mixed

by each side.

The vertical layers

are mixed

from one side to other.

V-mixer

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Z-arm mixer (Sigma blade mixer)

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High shear mixer

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Vertical screw mixer

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Conical vertical screw mixer

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Conical oblique screw mixer

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Conical oblique double screw mixer

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Conical oblique double screw mixer

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Drum mixer

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Controlling and

optimization

of mixing

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The proper number of samples are taken from different

places of the system (liquid)

• determination of API content

• mean, standard deviation, boundary value analysis

Examination of homogeneity

Controlling and optimization of mixing

samplingmixing analysis

Page 67: University of Pécs Institute of Pharmaceutical Technology ...

Over mixingHomogenisation

Examination of homogeneity

Controlling and optimization of mixing

Page 68: University of Pécs Institute of Pharmaceutical Technology ...

2019.10.03. 12:02 68

Thank youfor your attention!!!


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