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Control of bio-regenerated granular activated carbon by spreadsheet modelling

✍ Scribed by Miklas Scholz; Robert J. Martin


Publisher
Wiley (John Wiley & Sons)
Year
1998
Tongue
English
Weight
260 KB
Volume
71
Category
Article
ISSN
0268-2575

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✦ Synopsis


The optimisation of water puriÐcation with biological activated carbon (BAC) is described. Procedures are suggested to control bioÐlm growth and to use bio-indicators to predict TOC (total organic carbon) and COD (chemical oxygen demand) removal efficiencies. Empty bed contact time (EBCT) was a major physical control parameter. Dissolved oxygen (DO), pH and nutrients of the inÑuent were controlled according to the abundance of bacteria, protozoa and rotifers. Numbers of micro-organisms in BAC beds were determined. Certain genera of ciliated protozoa, representing healthy environmental conditions, were employed as biological indicators for system performance during biological regeneration of exhausted granular activated carbon (GAC). There was a strong positive correlation between the abundance of some protozoa in the liquid phase of the BAC bed and COD concentration in the effluent. Mathematical spreadsheet models were constructed to estimate COD removal efficiency of BAC Ðlters with di †erent loading rates, DO, pH, nutrient requirements and populations of micro-organisms. 1998