Biodegradation of 4-chlorophenol in batch and continuous packed bed reactor by isolated Bacillus subtilis

In present work, biodegradation of 4-Chlorophenol (4-CP) has been successfully achieved using bacteria i.e. Bacillus subtilis (MF447841.1), which was isolated from the wastewater of a nearby drain of Hyundai Motor Company service centre, Agartala, Tripura (India). Geonomic identification was carried...

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Veröffentlicht in:Journal of environmental management 2022-01, Vol.301, p.113851-113851, Article 113851
Hauptverfasser: Patel, Naveen, Shahane, Shraddha, Bhunia, Biswanath, Mishra, Umesh, Chaudhary, Vinod Kumar, Srivastav, Arun Lal
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Sprache:eng
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Zusammenfassung:In present work, biodegradation of 4-Chlorophenol (4-CP) has been successfully achieved using bacteria i.e. Bacillus subtilis (MF447841.1), which was isolated from the wastewater of a nearby drain of Hyundai Motor Company service centre, Agartala, Tripura (India). Geonomic identification was carried out by 16 S rDNA technique and phylogenetic processes. Both, batch and column mode of experiments were performed to optimize various parameters (initial concentration, contact time, dosages etc.) involved in the significant biodegradation of 4-CP. Based on R2 value (0.9789), the Levenspiel's model was found to be best fit than others. The kinetic parameters; specific growth rate (μ), yield of cell mass (YX/S), and saturation constant (KS), were obtained as 0.6383 (h−1), 0.35 (g/g), and 0.006884 (g/L), respectively. The isolated strain has shown the ability of degrading 4-CP up to 1000 mg/L initial concentration within 40 h. Bacterial strain was immobilized via developing calcium alginate beads along by optimizing weight proportion of calcium chloride and sodium alginate and size of the bead for further experiments. Various process parameters i.e. initial feed concentration, bed height, rate of flow of were optimized during packed bed reactor (PBR) study. Maximum biodegradation efficiency of 4-CP was observed as 45.39% at initial concentration of 500 mg/L within 105 min, using 2 mm size of immobilized beads which were formed using 3.5% w/v of both calcium chloride and sodium alginate within. Thus, Bacillus subtilis (MF447841.1) could be used for biological remediation of 4-CP pollutant present in wastewater. Moreover, because of affordable and eco-friendly nature of water treatment, relatively it has the better scope of commercialization. •Phenolic compounds are commonly present in the wastewaters of the industries.•Biodegradation of 4-Chlorophenol is achieved using Bacillus subtilis (MF447841.1).•The Levenspiel's model is found as the best fit model with kinetic studies.•The isolated strain degraded 4-Chlorophenol (Ci = 1000 mg/L) within 40 h.•Ca-alginate immobilized the B. subtilis MF447841.1 for the degradation of 4-Chlorophenol.
ISSN:0301-4797
1095-8630
DOI:10.1016/j.jenvman.2021.113851