Use of immobilised bacteria for the wastewater treatment – examples from the sugar industry

Author:

Jördening H.-J.1,Hausmann K.2,Demuth B.1,Zastrutzki M.3

Affiliation:

1. Institute for Technical Chemistry, Technical University Braunschweig, Langer Kamp 5, D-38106 Braunschweig, Germany

2. Braunschweiger Maschinenbauanstalt, Am Alten Bahnhof 5, D-38122 Braunschweig, Germany

3. VW, 38440 Wolfsburg, Germany

Abstract

This work focuses on the implementation of high performance systems to the wastewater treatment of sugar factories. For this purpose, systems with immobilised bacteria were studied. For the hydrolysis of organic matter and denitrification, fluidized bed reactors were used. The nitrification was studied with an airlift reactor system. Both hydrolysis and nitrogen elimination were investigated on laboratory and pilot scales in sugar factories. Although with porous materials higher biomass concentrations are attainable for the hydrolysis (up to 55 kg/m3), for economical reasons sand was used (22.5 kg/m3) for the pilot scale-study. With a pilot-scale reactor (volume 1 m3) the maximum sucrose conversion rate achieved with sand in the first campaign was 52 kg/(m3 d). For the nitrogen elimination on the pilot scale, a system with denitrification and nitrification was combined. The highest performance for the nitrification (reactor volume: 0.68 m3) with pumice as support material was 1.2 kg NH4-N/(m3 d), limiting the whole system. The denitrification rate (reactor volume: 0.12 m3) was four times higher (3.5–5 kg NO3-N/(m3 d). Rules of the modelling of the system are discussed.

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

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1. Valorization of biomass to vitamins;Valorization of Biomass to Bioproducts;2023

2. Bacterial growth dynamics and corresponding metabolite levels in the extraction area of an Austrian sugar beet factory using antimicrobial treatment;Journal of the Science of Food and Agriculture;2020-02-11

3. Agro-based sugarcane industry wastes for production of high-value bioproducts;Biovalorisation of Wastes to Renewable Chemicals and Biofuels;2020

4. A review on pumice for water and wastewater treatment;Desalination and Water Treatment;2015-12-19

5. Nitrate removal under different ecological remediation measures in Taihu Lake: a 15 N mass-balance approach;Environmental Science and Pollution Research;2014-07-23

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