4.7 Article

Immobilization of Rhodococcus qingshengii strain FF on the surface of polyethylene and its adsorption and biodegradation of mimic produced water

期刊

JOURNAL OF HAZARDOUS MATERIALS
卷 403, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.jhazmat.2020.124075

关键词

R. qingshengii strain FF; Immobilization; Response surface methodology; Degradation; Produced water

资金

  1. Key Industrial Chain Project of Shaanxi Province [2019ZDLSF05-04]
  2. Natural Science Research Plan - Department of Science and Technology of Shaanxi Province [2019JQ-759]
  3. Natural Science Foundation of Xi'an University of Architecture and Technology [ZR18029]

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The study optimized the immobilization of R. qingshengii strain FF on PEF surface and demonstrated its high efficiency in degrading TPH in mimic PW, showing the potential of using immobilized R. qingshengii strain FF in treating real PW.
Low pH and high salinity characteristic of produced water (PW) posed a big challenge for the direct biological treatment. The immobilization of R. qingshengii strain FF, which degraded petroleum effectively under low pH, and application of immobilized R. qingshengii strain FF in treating mimic PW was studied in this work. The immobilization of R. qingshengii strain FF on the surface of polyethylene foam (PEF), one type of waste packaging materials, was optimized using the response surface methodology. Under optimum conditions, cell density of R. qingshengii strain FF immobilized on the surface of PEF reached 388 mg (cells)/g(PEF). In addition, a few factors, including hydraulic retention time (HRT), pH and salinity, were studied for treating mimic PW using immobilized R. qingshengii strain FF. The result of this study demonstrated that TPH degradation efficiency of PW by immobilized R. qingshengii strain FF reached above 90% when HRT was longer than 8 h. Weak acid and high salinity conditions only moderately decreased TPH. Asphalt, alkanes and aromatic hydrocarbon contained in petroleum can be degraded to some extent. These results indicated that immobilized R. qingshengii strain FF can be used as a highly efficient strain which could be used in biological treatment of real PW.

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