Search bioRxiv⌕ Search

Biology subjects

Jayawardhana, B.

Publications and source records attributed to Jayawardhana, B..

2 recordsLinked to original sources

NGS-enriched activated sludge modelling of an industrial wastewater treatment plant

Metagenomics advances with the Next Generation Sequencing (NGS) technology offer detailed insights into the microbial communities and their activities in a Wastewater Treatment Plant (WWTP). Since it has been shown recently that the microbial communities can be related to process data through machine learning, we investigate in this paper the enrichment of Activated Sludge Model 1 (ASM1) using time-series NGS data. We first present a modified ASM1 (mod-ASM1) to describe the industrial wastewater treatment at North Waters WWTP facility in Delfzijl, the Netherlands. Subsequently, we identify the parameters for the ten weeks (weeks 40-50, 2014) of process data from North Water WWTP with prior parameters from the recommended ones from IWA. We further established a subset of parameters that are correlated to NGS data. Based on this relationship, a parameter-varying mod-ASM1 is obtained where the parameter variation is directly linked to the NGS data. We validate the NGS-enriched mod-ASM1 in the prediction of process data in the subsequent three weeks (weeks 50-53, 2014). While the enriched mod-ASM1 gives a good estimation of the COD effluent data, it cannot capture the production of nitrogen, which is often missed when the static model is deployed.

bioinformatics↗

The Effect of Glycerol on Microbial Community in Industrial Wastewater Treatment Plant

In this paper, we developed and analyzed lab-scale reactors that model the industrial saline wastewater treatment plant (SWWTP) used in North Water SWWTP in Delfzijl, the Netherlands. This industrial wastewater treatment plant is different from a typical municipal wastewater treatment plant, where the wastewater has some recalcitrant chemicals that are hard to degrade and contains a high COD-to-nitrogen ratio and a high concentration of NaCl. The process also differs from other standard industrial wastewater plants where the anaerobic process precedes the aerobic process. The proposed lab-scale reactors are shown to be stable and able to represent the studied industrial SWWTP where glycerol is present in abundance, and there is no similar lab-scale model that has investigated the effect of glycerol on the process. The removal of COD (glycerol) and nitrogen in the system and the changes in the microbial community in both reactors was followed over time. Based on the data, we were able to study the growth of the microbial population that is present in the sludge. The result of the experiment showed that glycerol and ammonia were completely removed, and some nitrate was left in the effluent. At the end of the experiment, we determined that the order Actinomycetales dominated the anaerobic reactor since it is known as the organisms that use glycerol as the carbon source and is quite tolerant with a high salt concentration in the influent. On the other hand, the order Flavobacteriales dominated the aerobic reactor as it is correlated with the ammonia concentration.

biochemistry↗