Pollution prevention and waste treatment in chemical synthesis processes for pharmaceutical industry

I. Kabdaşh*, M. Gürel, O. Tünay

*Corresponding author for this work

Research output: Contribution to journalConference articlepeer-review

20 Citations (Scopus)

Abstract

Chemical synthesis processes of the pharmaceuticals industry produce wastewaters which are variable in character and highly strong. In-plant controls are important and highly effective in determining the final wastewater quality. At any rate several stages of treatment comprised of physical, chemical and biological are required to obtain a reasonable degree of treatment. The problem is further complicated in small-scale plants due to low volume of wastewaters and dilution requirements. In this study, a small-scale pharmaceuticals plant producing three common active materials was experimentally evaluated to assess the waste management alternatives. The processes were evaluated and a source-based pollution profile was prepared. Paracetamol wastewaters were found to be readily biodegradable. Omeprazole wastewaters could be biologically treated only after significant chemical treatment. Mephenoxalone wastewaters were in no case biologically degradable. Paracetamol and pretreated Omeprazole wastewaters could be biologically treated down to several hundreds of ppm COD at as high as 0.5 g COD/g VSS day F/M ratio after several fold dilution. Results of the study were evaluated and discussed.

Original languageEnglish
Pages (from-to)265-271
Number of pages7
JournalWater Science and Technology
Volume39
Issue number10-11
DOIs
Publication statusPublished - 1999
EventProceedings of the 1997 International Specialised Conference on Chemical Process Industries and Envrionmental Management - Cape Town, S Afr
Duration: 8 Sept 199710 Sept 1997

Keywords

  • Biological treatability
  • Chemical oxidation
  • Chemical synthesis wastewaters
  • Mephenoxalone wastewaters
  • Omeprazole wastewaters
  • Paracetamol wastewaters
  • Pharmaceuticals industry

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