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Effects of mixed nitrogen sources on biodegradation of phenol by immobilized Acinetobacter sp. strain W-17
Author(s) -
Desouky AbdElHaleem,
Beshay Usama,
O. Abdelhamid Abdou,
Hassan Moawad,
Zaki Sahar
Publication year - 2003
Publication title -
african journal of biotechnology
Language(s) - English
Resource type - Journals
ISSN - 1684-5315
DOI - 10.5897/ajb2003.000-1002
Subject(s) - biodegradation , phenol , ammonium , chemistry , microbial consortium , nitrate , nuclear chemistry , nitrogen , degradation (telecommunications) , wastewater , acinetobacter , incubation , strain (injury) , bioremediation , environmental chemistry , microbiology and biotechnology , chromatography , microorganism , organic chemistry , bacteria , contamination , environmental engineering , biochemistry , biology , ecology , telecommunications , anatomy , computer science , engineering , genetics , antibiotics
Using Ca-alginate immobilized cells of Acinetobacter sp. strain W-17, the effects of ammonium-N and nitrate-N on the biodegradation of phenol were investigated. Degradation experiments in three different culture media; minimal salts medium (MSM), simulated (SW) and modified simulated wastewater (MSW) were performed. With the freely suspended cells (cell dry weight 0.2 g/l), complete phenol (500 mg/l) degradation was achieved after incubation for 120 h. Using the immobilized cells, the time was reduced to 24 h in MSM medium, and 15 h in the MSW. The results also indicate that strain W-17 can tolerate to high concentrations of NH4+-N (63 mg/l) and NO3--N (1000 mg/l) without a significant loss in the phenol biodegradation rate. Moreover, the presence of 500 mg/l phenol in the MSW had no considerable effect on the removal of both ammonium-N and nitrate-N. Repeated use of immobilized cells revealed that they could be used as much as five times without loss of activity. Our findings could be extended to enhance biotreatment of phenol contamination in a variety of biological treatment processes. (African Journal of Biotechnology: 2003 2(1): 8-12)

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