Impact of pH and removed filtrate on E. coli regrowth and microbial community during storage of electro-dewatered biosolids

Sci Total Environ. 2022 Mar 25:814:152544. doi: 10.1016/j.scitotenv.2021.152544. Epub 2021 Dec 22.

Abstract

Residual biosolids can be land applied if they meet microbiological requirements at the time of application. Electro-dewatering technology is shown to reduce biosolids bacterial counts to detection limits with little potential for bacterial regrowth during incubations. Here, we investigated the impacts on Escherichia coli regrowth and microbial communities of biosolids pH, removed nutrients via the filtrate, and inhibitory compounds produced in electro-dewatered biosolids. Findings suggest pH as the primary mechanism impacting E. coli regrowth in electro-dewatered biosolids. Propidium monoazide treatments were effective at removing DNA from dead cells, based on the removal of obligate anaerobes observed after anaerobic incubation. Analyses of high throughput sequenced data showed lower alpha-diversities associated with electro-dewatering treatment and incubation time. Moreover, biosolids pH and incubation period were the main factors contributing to the variations in microbial community compositions after incubation. Results highlight the role of electro-dewatered biosolids' low pH on inhibiting the regrowth of culturable bacteria as well as reducing the microbial community variance.

Keywords: Biosolids; E. coli regrowth; Electro-dewatering; Microbial communities; pH.

MeSH terms

  • Biosolids
  • Escherichia coli*
  • Hydrogen-Ion Concentration
  • Microbiota*
  • Sewage

Substances

  • Biosolids
  • Sewage