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Resistance and Uptake of Heavy Metals by Vorticella microstoma and Its Potential Use in Industrial Wastewater Treatment

  作者 Rehman, A; Shakoori, FR; Shakoori, AR  
  选自 期刊  ENVIRONMENTAL PROGRESS & SUSTAINABLE ENERGY;  卷期  2010年29-4;  页码  481-486  
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[摘要]The ciliate, Vorticella microstoma, showed tolerance against Cd2+ (22 mu g/mL), Cu2+ (22 mu g/mL), Ni2+ (17 mu g/mL), and Hg2+ (16 mu g/mL). The metal ions slowed down the growth of the ciliate as compared to the culture grown without metal stress. The decrease in cell population was 60% for Cd2+, 49% for Cu2+, 35% for Ni2+, and 49% for Hg2+ after 8 days of metal stress. The order of resistance to heavy metal, in terms of reduction in the cellular population, was Ni2+ < Hg2+ = Cu2+ < Cd2+. Metal-uptake capability of the ciliate was worked out for its potential use as bioremediator of wastewater V. microstoma decreased 72% of Cd2+, 82% of Cu2+, 80% of Ni2+, and 74% of Hg2+ from the medium alter 96 h of incubation. V. microstoma was also able to remove 73% of Cd2+, 80% of Cu2+, 83% of Ni2+, and 76% of Hg2+ from the industrial wastewater after 6 days of incubation at room temperature. The multiple heavy metal uptake ability of V. microstoma can be exploited for metal detoxification and environmental clean-up operations. (C) 2010 American Institute of Chemical Engineers Environ Prog, 29: 481-486, 2010

 
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