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Enhanced biodegradation of methylhydrazine and hydrazine contaminated NASA wastewater in fixed-film bioreactor

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Abstract

The aerobic biodegradation of National Aeronautics and Space Administration (NASA) wastewater that contains mixtures of highly concentrated methylhydrazine/hydrazine, citric acid and their reaction product was studied on a laboratory-scale fixed film trickle-bed reactor. The degrading organisms, Achromobacter sp., Rhodococcus B30 and Rhodococcus J10, were immobilized on coarse sand grains used as support-media in the columns. Under continuous flow operation, Rhodococcus sp. degraded the methylhydrazine content of the wastewater from a concentration of 10 to 2.5 mg/mL within 12 days and the hydrazine from ∼0.8 to 0.1 mg/mL in 7 days. The Achromobacter sp. was equally efficient in degrading the organics present in the wastewater, reducing the concentration of the methylhydrazine from 10 to ∼5 mg/mL within 12 days and that of the hydrazine from ∼0.8 to 0.2 mg/mL in 7 days. The pseudo first-order rate constants of 0.137 day-1 and 0.232 day-1 were obtained for the removal of methylhydrazine and hydrazine, respectively, in wastewater in the reactor column. In the batch cultures, rate constants for the degradation were 0.046 and 0.079 day-1 for methylhydrazine and hydrazine respectively. These results demonstrate that the continuous flow bioreactor afford greater degradation efficiencies than those obtained when the wastewater was incubated with the microbes in growth-limited batch experiments. They also show that wastewater containing hydrazine is more amenable to microbial degradation than one that is predominant in methylhydrazine, in spite of the longer lag period observed for hydrazine containing wastewater. The influence of substrate concentration and recycle rate on the degradation efficiency is reported. The major advantages of the trickle-bed reactor over the batch system include very high substrate volumetric rate of turnover, higher rates of degradation and tolerance of the 100% concentrated NASA wastewater. The results of the present laboratory scale study will be of great importance in the design and operation of an industrial immobilized biofilm reactor for the treatment of methylhydrazine and hydrazine contaminated NASA wastewater.

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References

  • Alexander M (1985) Biodegradation of organic chemicals. Environ. Sci. Technol. 18: 106–111

    Google Scholar 

  • Cassidy MB &Trevors JT (1996) Environmental applications of immobilized microbial cells: a review. J. Ind. Microbiol. 16: 79–101

    Google Scholar 

  • Hach Company (1992) Hach UV Spectrophotomer DR/2000; Analytical Methods Procedures Manual: Hach Company, USA.

    Google Scholar 

  • IARC Monographs (1974) Evaluation of Carcinogenic Risk of Chemicals to Man, Vol 4 (p 127). International Agency for Research on Cancer. Lyon

    Google Scholar 

  • Kane DA &Williamson KJ (1983) Bacterial toxicity and metabolism of hydrazine fuels. Arch. Environ. Contam. Toxicol. 12: 447–453

    Google Scholar 

  • Karamanev D &Samson R (1998) High-rate biodegradation of pentachlorophenol by biofilm developed in the immobilized soil reactor. Eviron. Sci. Technol. 32: 994–999

    Google Scholar 

  • Nwankwoala AU,Egiebor NO,Gilbert C &Nyavor K (1999) Batch culture biodegradation of methylhydrazine contaminated NASA wastewater. Biodegradation 10: 105–112

    PubMed  Google Scholar 

  • Schmidt EW (1984) Hydrazine and its Derivatives. JohnWiley, New York

    Google Scholar 

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Nwankwoala, A.U., Egiebor, N.O. & Nyavor, K. Enhanced biodegradation of methylhydrazine and hydrazine contaminated NASA wastewater in fixed-film bioreactor. Biodegradation 12, 1–10 (2001). https://doi.org/10.1023/A:1011946114017

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  • DOI: https://doi.org/10.1023/A:1011946114017

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