Characterization and Growth Parameters Optimization of Phenol Degrading Bacteria From Batu Tannery Wastewater
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Abstract
Phenolic compounds pose a threat to human and animal health, and the accumulation of phenol
introduces toxicity to both flora and fauna, potentially leading to fatal consequences upon high
exposure. Despite the availability of various methods for phenolic removal, biodegradation
using microorganisms stands out as an environmentally friendly approach. This study aimed at
screening, characterizing, and assessing the phenolic removal efficiency of bacteria isolated
from tannery wastewater in Addis Ababa, along with the optimization of growth parameters of
the phenol degrading isolates. Wastewater samples (500 mL) were collected from Batu Tannery
industry using sterile bottles. The screening of phenolic-degrading bacteria isolates (PDBI) was
carried out on minimal salt media supplemented with 200-2000 ppm phenol crystal and nitro phenol. The cultures were identified using biochemical and morphological characterization.
Optimization and phenolic degradation assay were performed for PDBI. Data were analyzed
using Microsoft Excel office (2008), and Origin version 2019b. The results revealed that out of
49 isolates, 8 (PDBI-7, PDBI-9, PDBI-11, PDBI-12, PDBI-15, PDBI-21, PDBI-23, and PDBI 49) isolates were found to be effective in phenols (Phenol crystal and nitrophenol)
biodegradation at the concentration of 600-2000 ppm. These isolates were identified as Bacillus
subtilis PDBI-9 and Klebsiella pneumoniae PDBI-49. Based on optimization, the maximum Cell
Dry Weight (g/l) and OD600 nm recorded for B. subtilis PDBI-9 and K. pneumoniae PDBI-49 at
pH 7and 30°C. Glucose gave the maximum Cell Dry Weight (CDW)(g/L) for PDBI-49, whereas
mannitol gave the minimum Cell Dry Weight (CDW)(g/L) for PDBI-9. The maximum (0.00867±
0.00031) and minimum (0.00113 ± 0.00021) CDW(g/L) obtained when peptone and KNO3
utilized by PDBI-49 and PDBI-9, respectively. Study showed that K. pneumoniae (PDBI-49)
(86.24%) was more effective in degrading phenolic compounds (Phenol crystal and nitrophenol)
than B. subtilis (PDBI-9) (76%). In conclusion, B. subtilis PDBI-9 and K. pneumoniae PDBI-4)
employed for the phenol biodegradation.
