Mathematical modelling of the activated sludge process - the Erzincan case. Nuhoglu, A., Keskinler, B., & Yildiz, E. PROCESS BIOCHEMISTRY, 40(7):2467-2473, 2005. abstract bibtex In this study, simulation results for a full-scale wastewater treatment
plant (WWTP) of Erzincan city, which is located at the east of Turkey
and serving 124,000 population equivalents, are presented. The dynamic
behaviour of simultaneous carbon removal and nitrification process
carried out in an Carrousel type aerator and also the
clarification-thickening function of final settler were modelled
employing activated sludge model 1 (ASM 1) and a dynamic model,
respectively. In the first step of the study, detailed wastewater
characterization required by the process models were performed and the
variables such as readily (Ss) and slowly biodegradable (Xs) substrates
were analysed with a respirometric technique. Simulations were
performed using pre-compiled model and layout implemented in GPS-X
simulation software. Daily values of parameters such as Soluble and
Total COD, total nitrogen, suspended solids, NO3-N, NH4-N, organic-N,
soluble inert substrate (S-I), S-s and X-s were used as input data. In
model calibration, it was determined that the change in the default
values of four model parameters gave a reasonable match for
investigated variables. (c) 2004 Elsevier Ltd. All rights reserved.
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abstract = {In this study, simulation results for a full-scale wastewater treatment
plant (WWTP) of Erzincan city, which is located at the east of Turkey
and serving 124,000 population equivalents, are presented. The dynamic
behaviour of simultaneous carbon removal and nitrification process
carried out in an Carrousel type aerator and also the
clarification-thickening function of final settler were modelled
employing activated sludge model 1 (ASM 1) and a dynamic model,
respectively. In the first step of the study, detailed wastewater
characterization required by the process models were performed and the
variables such as readily (Ss) and slowly biodegradable (Xs) substrates
were analysed with a respirometric technique. Simulations were
performed using pre-compiled model and layout implemented in GPS-X
simulation software. Daily values of parameters such as Soluble and
Total COD, total nitrogen, suspended solids, NO3-N, NH4-N, organic-N,
soluble inert substrate (S-I), S-s and X-s were used as input data. In
model calibration, it was determined that the change in the default
values of four model parameters gave a reasonable match for
investigated variables. (c) 2004 Elsevier Ltd. All rights reserved.},
bibtype = {article},
author = {Nuhoglu, A and Keskinler, B and Yildiz, E},
journal = {PROCESS BIOCHEMISTRY},
number = {7}
}
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