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The control of paracetamol particle size and surface morphology through crystallisation in a spray dryer
Affiliation:Synthesis and Solid State Pharmaceutical Centre, School of Pharmacy and Pharmaceutical Sciences, Trinity College Dublin, Dublin 2, Ireland
Abstract:The parameters governing the crystallisation of paracetamol using various conventional techniques has been extensively studied, however the factors influencing the drug crystallisation using spray drying is not as well understood. The aim of this work was to investigate the crystallisation of an active pharmaceutical ingredient through evaporative crystallisation using a spray dryer to study the physicochemical properties of the drug and to use semi-empirical equations to gain insight into the morphology and particle size of the dried powder. Paracetamol solutions were spray dried at various inlet temperatures ranging from 60 °C to 120 °C and also from a series of inlet feed solvent compositions ranging from 50/50% v/v ethanol/water to 100% ethanol and solid-state characterisation was done. The size and morphology of the dried materials were altered with a change in spray drying parameters, with an increase in inlet temperature leading to an increase in particle Sauter mean diameter (from 3.0 to 4.4 µm) and a decrease in the particle size with an increase in ethanol concentration in the feed (from 4.6 to 4.4 µm) as a result of changes in particle density and atomised droplet size. The morphology of the dried particles consisted of agglomerates of individual crystallites bound together into larger semi-spherical agglomerates with a higher tendency for particles having crystalline ridges to form at higher ethanol concentrations of the feed.
Keywords:Paracetamol  Spray drying  Crystallisation  Particle size  Evaporation  Association parameter  P"}  {"#name":"keyword"  "$":{"id":"k0045"}  "$$":[{"#name":"text"  "_":"Atmospheric pressure  ATR"}  {"#name":"keyword"  "$":{"id":"k0055"}  "$$":[{"#name":"text"  "_":"Attenuated total reflectance  Boiling temperature of solvent  Constant of Thybo equation  Critical pressure of drying gas  Critical pressure of solvent  Critical temperature of drying gas  Critical temperature of solvent  Density of atomising gas  Density of drying gas  Density of solvent  Diameter on inner liquid orifice  DSC"}  {"#name":"keyword"  "$":{"id":"k0175"}  "$$":[{"#name":"text"  "_":"Differential scanning calorimetry  Diffusion coefficient of solvent in the drying gas  Diffusion coefficient of solute in the solvent  Droplet drying time  DVS"}  {"#name":"keyword"  "$":{"id":"k0215"}  "$$":[{"#name":"text"  "_":"Dynamic vapour sorption  Enthalpy of fusion  EtOH"}  {"#name":"keyword"  "$":{"id":"k0235"}  "$$":[{"#name":"text"  "_":"Ethanol  FTIR"}  {"#name":"keyword"  "$":{"id":"k0245"}  "$$":[{"#name":"text"  "_":"Fourier transform infra-red spectroscopy  HPLC"}  {"#name":"keyword"  "$":{"id":"k0255"}  "$$":[{"#name":"text"  "_":"High performance liquid chromatography  Inlet temperature  LD"}  {"#name":"keyword"  "$":{"id":"k0275"}  "$$":[{"#name":"text"  "_":"Laser diffraction  Mass flow rate of atomising gas  Mass flow rate of liquid feed  Mass fraction of solvent at droplet surface  Mass fraction of solvent away from droplet surface  Melting point peak temperature  Molar volume of solvent  Molecular weight of solvent  Molecular weight of the drying gas  Rc"}  {"#name":"keyword"  "$":{"id":"k0365"}  "$$":[{"#name":"text"  "_":"Paracetamol recrystallised from ethanol  Pe"}  {"#name":"keyword"  "$":{"id":"k0375"}  "$$":[{"#name":"text"  "_":"Peclet number  k"}  {"#name":"keyword"  "$":{"id":"k0385"}  "$$":[{"#name":"text"  "_":"Rate of droplet evaporation  Sauter Mean Diameter  Sauter Mean Diameter calculated from LD data  SEM"}  {"#name":"keyword"  "$":{"id":"k0415"}  "$$":[{"#name":"text"  "_":"Scanning electron microscopy  Solvent composition  Solvent surface tension  SD"}  {"#name":"keyword"  "$":{"id":"k0445"}  "$$":[{"#name":"text"  "_":"Spray dried  Tapped density  Temperature of the outlet drying gas  Temperature of onset of melting  Temperature of the wet bulb  Time to droplet supersaturation  Total drying chamber pressure  True density  Vapour pressure of the solvent  Velocity of atomising gas  Viscosity of the solvent  PXRD"}  {"#name":"keyword"  "$":{"id":"k0555"}  "$$":[{"#name":"text"  "_":"Powder X-ray diffraction
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