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Comparison of degradation kinetics of tannery wastewater treatment using a nonlinear model by salt-tolerant Nitrosomonas sp. and Nitrobacter sp.

  • Bao Trong Dang
  • , Duyen P.H. Tran
  • , Ngoc-Kim-Qui Nguyen
  • , Huong T.N. Cao
  • , Itayama Tomoaki
  • , Ky-Phuong-Ha Huynh
  • , Tan-Thi Pham
  • , Sunita Varjani
  • , Huu Hao Ngo
  • , Ya-Fen Wang
  • , Sheng-Jie You
  • , Xuan-Thanh Bui*
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Conventional biological treatment has been reported to be ineffective for pollutant removal in tannery wastewater due to high salinity. To overcome it, this work used salt-tolerant bacteria (STB) isolated from a membrane bioreactor to evaluate the organic and nutrient removal through a series of batch experiments. Compared with the control, the STB reactor enhanced the reduction of persistent organics by 11% based on the double exponential decay model. Besides, the removal of NH4+-N is 26% higher, satisfying the first-order decay model. The nitrification was inhibited entirely in control during 48 h, whilst the assimilation process involved 55% of total nitrogen removal. In the STB reactor, nitrification occurred after 12 h, resulting in significantly increased NO2-N and NO3-N concentrations according to the logistic function. Although nitrification was successfully activated, C/N ratios and free ammonia were identified as limiting factors for STB activity, requiring mitigation strategies in further studies. © 2022 Elsevier Ltd.
Original languageEnglish
Article number127000
JournalBioresource Technology
Volume351
Online published12 Mar 2022
DOIs
Publication statusPublished - May 2022
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 6 - Clean Water and Sanitation
    SDG 6 Clean Water and Sanitation

Research Keywords

  • Double exponential decay model
  • First-order decay model
  • Logistic regression
  • Membrane bioreactor
  • Nitrification
  • Salt-tolerant bacteria

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