Hyppää sisältöön
    • Suomeksi
    • På svenska
    • In English
  • Suomeksi
  • In English
  • Kirjaudu
Näytä aineisto 
  •   Etusivu
  • LUTPub
  • Diplomityöt ja Pro gradu -tutkielmat
  • Näytä aineisto
  •   Etusivu
  • LUTPub
  • Diplomityöt ja Pro gradu -tutkielmat
  • Näytä aineisto
JavaScript is disabled for your browser. Some features of this site may not work without it.

Modular continuous crystallizer: operation, experimental arrangement and identification of process parameters

Ezeanowi, Nnaemeka (2016)

Katso/Avaa
Thesis_NCEzeanowi.pdf (6.157Mb)
Lataukset: 


Diplomityö

Ezeanowi, Nnaemeka
2016

Näytä kaikki kuvailutiedot
Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi-fe2016082523045

Tiivistelmä

Crystallization is employed in different industrial processes. The method and operation can differ depending on the nature of the substances involved. The aim of this study is to examine the effect of various operating conditions on the crystal properties in a chemical engineering design window with a focus on ultrasound assisted cooling crystallization. Batch to batch variations, minimal manufacturing steps and faster production times are factors which continuous crystallization seeks to resolve. Continuous processes scale-up is considered straightforward compared to batch processes owing to increase of processing time in the specific reactor. In cooling crystallization process, ultrasound can be used to control the crystal properties.

Different model compounds were used to define the suitable process parameters for the modular crystallizer using equal operating conditions in each module. A final temperature of 20oC was employed in all experiments while the operating conditions differed. The studied process parameters and configuration of the crystallizer were manipulated to achieve a continuous operation without crystal clogging along the crystallization path. The results from the continuous experiment were compared with the batch crystallization results and analysed using the Malvern Morphologi G3 instrument to determine the crystal morphology and CSD.

The modular crystallizer was operated successfully with three different residence times. At optimal process conditions, a longer residence time gives smaller crystals and narrower CSD. Based on the findings, at a constant initial solution concentration, the residence time had clear influence on crystal properties. The equal supersaturation criterion in each module offered better results compared to other cooling profiles. The combination of continuous crystallization and ultrasound has large potential to overcome clogging, obtain reproducible and narrow CSD, specific crystal morphologies and uniform particle sizes, and exclusion of milling stages in comparison to batch processes.
Kokoelmat
  • Diplomityöt ja Pro gradu -tutkielmat [14754]

Samankaltainen aineisto

Näytetään aineisto, joilla on samankaltaisia nimekkeitä, tekijöitä tai asiasanoja.

  • Purification of aqueous electrolyte solutions by air-cooled natural freezing 

    Hasan, Mehdi
    Acta Universitatis Lappeenrantaensis (Lappeenranta University of Technology, 19.10.2016)
    Freeze crystallization is a particular type of a purification method where the solvent freezes out, which constricts the volume of the solution, leaving thus behind a more concentrated solution. In the case of freezing ...
  • Jätevesien puhdistus jätevesialtaissa jäädyttämällä - Kartoitus potentiaalisista sovellutuksista Suomessa 

    Sulo, Emma (2016)
    Uusia jäteveden puhdistusprosesseja kartoitetaan Suomessakin esimerkiksi kiristyvien päästömääräyksien vuoksi sekä parempia kustannus- ja energiatehokkuuksia tavoiteltaessa. Jätevesien puhdistus on Suomessa jo nykyään ...
  • Continuous and semi-batch precipitation of calcium phosphate in a stirred tank and plug-flow crystallizer 

    Brotell, Mikko (2016)
    The objective of this thesis was to study precipitation of calcium hydrogen phosphate dihydrate (dicalcium phosphate dihydrate, DCPD) in semi-batch and continuous stirred tank crystallizers and continuous plug-flow reactor. ...
LUT-yliopisto
PL 20
53851 Lappeenranta
Ota yhteyttä | Tietosuoja | Saavutettavuusseloste
 

 

Tämä kokoelma

JulkaisuajatTekijätNimekkeetKoulutusohjelmaAvainsanatSyöttöajatYhteisöt ja kokoelmat

Omat tiedot

Kirjaudu sisäänRekisteröidy
LUT-yliopisto
PL 20
53851 Lappeenranta
Ota yhteyttä | Tietosuoja | Saavutettavuusseloste