Abstract

Korea Maritime and Ocean University, Busan 49112, Republic of Korea(Received December 7, 2015; Accepted December 21, 2015)ABSTRACT: Occurrences of coastal dredged materials are ever increasing due to port construction, navigational course maintenance and dredging of polluted coastal sediments. Ocean dumping of the coastal dredged materials has become virtually prohibited as L ondon Treaty will be enacted as of the year 2012. It will be necessary to treat and recycle the dredged materials that may carry organic pollutants and heavy metals in a reasonable and effective process: collection of the dredged materials, liquid and solid separation, and treatment of organic compounds and heavy metals. In this study we have developed a continuous bioreactor system that can treat a mixture of silt and particulate organic matter using a microbial consortium (BM-S-1). The steady-state operation conditions were: pH (7.4–7.5), temperature (16°C), DO (7.5–7.9), and salt concentration (3.4–3.7%). The treatment efficiencies of SCOD, T-N and T-P of the mixture were 95–96%, 92–99%, and 79–97%. The system was also effective in removal of heavy metals such as Zn, Ni, and Cr . Levels of MLSS during three months operation period were 11,000 –19,000 mg/L. Interestingly, there was little sludge g enerated during this period of operation. The augmented microbial consortium seemed to be quite active in the removal of the organic component (30%) presen t in the dredged material in association with indigenous bacteria. The dominant phyla in the treatment processes were Proteobacteria and Bacteroidetes while dominant genii were Marinobacterium , Flaviramulus , Formosa, Alteromonadaceae_uc, Flavobacteriaceae_uc. These results will contribute to a development of a successful bioremediation technology for various coastal and river sediment s with a high content of organic matter, inorganic nutrients and heavy metals, leading to a successful reuse of the polluted dredged sediments.Key words: bioaugmentation, bioremediation, coastal dredged materials, reuse

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