Steady state modeling of autotrophic membrane bioreactor – a new approach to quantify biomass

Author:

Gasmi AichaORCID,Heran Marc,Elboughdiri NoureddineORCID,Kolsi LiouaORCID,Ghernaout DjamelORCID,Hannachi Ahmed,Grasmick Alain

Abstract

PurposeThe main purpose of this study resides essentially in the development of a new tool to quantify the biomass in the bioreactor operating under steady state conditions.Design/methodology/approachModeling is the most relevant tool for understanding the functioning of some complex processes such as biological wastewater treatment. A steady state model equation of activated sludge model 1 (ASM1) was developed, especially for autotrophic biomass (XBA) and for oxygen uptake rate (OUR). Furthermore, a respirometric measurement, under steady state and endogenous conditions, was used as a new tool for quantifying the viable biomass concentration in the bioreactor.FindingsThe developed steady state equations simplified the sensitivity analysis and allowed the autotrophic biomass (XBA) quantification. Indeed, the XBA concentration was approximately 212 mg COD/L and 454 mgCOD/L for SRT, equal to 20 and 40 d, respectively. Under the steady state condition, monitoring of endogenous OUR permitted biomass quantification in the bioreactor. Comparing XBA obtained by the steady state equation and respirometric tool indicated a percentage deviation of about 3 to 13%. Modeling bioreactor using GPS-X showed an excellent agreement between simulation and experimental measurements concerning the XBA evolution.Originality/valueThese results confirmed the importance of respirometric measurements as a simple and available tool for quantifying biomass.

Publisher

Emerald

Subject

Water Science and Technology,Agronomy and Crop Science,Ecology, Evolution, Behavior and Systematics,General Biochemistry, Genetics and Molecular Biology,General Business, Management and Accounting,General Computer Science,General Medicine,General Environmental Science,Education

Reference50 articles.

1. Effects of sludge retention time on membrane fouling and microbial community structure in a membrane bioreactor;Journal of Membrane Science,2007

2. Mathematical modeling of aerobic membrane bioreactor (MBR) using activated sludge model no. 1 (ASM1);Journal of Industrial and Engineering Chemistry,2009

3. Simplifications of activated sludge model with preservation of its dynamic accuracy;IFAC Proceedings,2014

4. Wastewater nutrient removal in a mixed microalgae bacteria culture: Effect of light and temperature on the microalgae bacteria competition;Environmental Technology,2018

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