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Enhanced production of polysaccharides and protein content in cyanobacterium, Oscillatoria limnetica as a defense mechanism against low pH and Pb2+

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Living biomass has better ability to remove Pb2+from wastewaters as compare to dead biomass. But, living biomass also have some practical limitations, such as, they are not efficient at low pH, and at high concentrations of metal ions. In the present study living biomass of Os cilia tori a Uni tie tic a was assessed for its metal sorption capacity. O. Bmnetica considerably sorbed a laige amount of Pb2+within pH range 3-7. The maximum Pb2+sorption capacity of 0. Unmetica was 434.78 mg/g. As photochemical efficiency data depicted, Pb2+exerted inhibitory effects on photosynthesis of the test cyanobacterium. However, the test cyanobacterium showed considerable tolerance to Pb2+exposure as concentration increased from 0 to 5 mg /L. Defense mechanisms of 0. Bmnetica under Pb2+enriched condition is probably associated with greater accumulation of intracellular polysaccharides (IPS) and protein. Nonetheless, since Pb2+binding capacity of 0. limnetica is significantly high than that of several other biosorbents, it can be considered as a promising biomaterial for removal of Pb2+from wastewaters.

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Adsorption Capacity, Chlorophyll Fluorescence, Detoxification, Living biosorbent, Pb2+Precipitation

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Chiang Mai Journal of Science, 42(1), 34-43, 2015

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