사람과 어류에게 감염증을 유발하는 Edwardsiella sp., Streptococcus sp. 및 Vibrio sp. 의 해양 유해세균에 대한 해조류 추출물의 항균 활성을 조사하였다. 연구에 사용된 4종의 식용 해조류 중에서 감태 MeOH 추출물이 본 연구에서 사용 된 6종의 모든 해양 유해세균에 대해 넓은 범위의 항균 활성을 나타내었다. 감태의 MeOH 추출물의 유기용매 분획 추출물들 중에서, EtOAc 분획 추출물이 가장 높은 항균활성을 나타내었으며 6종의 해양 유해세균에 대하여 128 μg/mL에서 256 μg/mL의 MIC 값을 나타내었다. 또한, HPLC 분석에 의해 감태 EtOAc 분획 추출물에 phlorotannin 화합물인 dieckol이 다량 존재하고 있는 것이 확인 되었다. 결론적으로, 감태 추출물의 phlorotannin 화합물이 여러 유해세균에 대한 강한 항균활성을 나타내는 것처럼, 해양 유해세균에 대해서도 강한 항균활성을 나타내는 것으로 판단된다.
The PP-g-Vim-CH3I adsorbent, which possesses antibacterial and ion-exchange functions, was synthesized by photoinduced grafting of 1-vinyl imidazole (Vim) onto polypropylene, non-woven fabric and subsequent quaternization using methyl iodide (CH3I). The adsorption properties of PP-g-Vim-CH3I for nitrate ion were studied in batch mode and fixed-bed columns. The adsorption equilibria of NO3-N on PP-g-Vim-CH3I were well described by the Langmuir isotherm model, and the adsorption energy was 9.03 kJ/mol, which indicates an ion-exchange process. Adsorption-kinetic data were fitted with a pseudo-second-order kinetic model. The Bohart-Adams model was found to be suitable for simulating the breakthrough curves obtained from the fixed-bed columns. The fixed-bed sorption capacity of nitrate ion from the model was in the range 100.8 ~ 108.6 mg/g without the presence of competing anions but decreased to the range 55.7 ~ 96.2 mg/ g in groundwater due to adsorption competition with the coexisting anions, especially SO4 2− ion. The PP-g-Vim-CH3I adsorbent could be regenerated by washing with 1.0 N NaCl without serious lowering the adsorption capacity.
In recent years, the demand for advanced treatments in the water-treatment industry has increased, and physicochemicalseparation technologies have come into wide use. However, biofouling is a major problem for the separation processes in water and wastewater treatment. One anti-biofouling strategy is to construct antibacterial surfaces. In this work, polypropylene (PP) fiber was endowed with antibacterial/adsorption property by photoinduced graft polymerization of 1- vinyl imidazole (Vim) followed by quaternization with alkyl iodides. A concentration of Vim equal to 5 vol.% in 10-20 vol.% methanol, a photoirradiation time of 5 h and a reaction temperature of 80oC proved to be optimal for the grafting of Vim onto PP. The modified PP fibers were characterized by means of FT-IR, SEM, antibacterial and adsorption tests. We found that the quaternized PP-g-Vim fiber with methyl iodide exhibited high adsorption capacity for NO3-N and excellent antibacterial activities against both E. coli and S. aureus.